Pasteurellosis

Infectious Disease MONDO:0005901 Pathograph 17 Show in embeddings browser bacterial infectious disease

Pasteurellosis is a zoonotic bacterial infection caused by Pasteurella species, especially Pasteurella multocida, that most often follows cat or dog bites and scratches but can also cause respiratory and invasive systemic disease after non-bite animal exposure.

Ask OpenScientist

Ask a research question about Pasteurellosis. OpenScientist will conduct autonomous deep research using the Disorder Mechanisms Knowledge Base and PubMed literature (typically 10-30 minutes).

Submitting...

Do not include personal health information in your question. Questions and results are cached in your browser's local storage.

6
Pathophys.
10
Phenotypes
17
Pathograph
1
Medical Actions
1
Deep Research
⚙

Pathophysiology

6
Capsule-Mediated Innate Immune Evasion
The P. multocida polysaccharide capsule lets inoculated organisms avoid phagocytosis and resist complement killing, the innate-evasion step that permits local proliferation.
capsule-mediated evasion of host phagocytosis and complement GO:0141043 Gene Ontology (GO) Relation: this pathophysiological event involves this biological process This pathophysiological event involves increased capsule-mediated evasion of host phagocytosis and complement, annotated with symbiont-mediated evasion of host innate immune response (GO:0141043). GO:0141043 is a biological process from the Gene Ontology. ↑ INCREASED
Show evidence (1 reference)
PMID:17107417 SUPPORT REVIEW SYNTHESIS Other
"The capsule is clearly involved in bacterial avoidance of phagocytosis and resistance to complement"
The capsule evades phagocytosis and complement, the innate-evasion virulence step.
Lipopolysaccharide-Mediated Host Survival
Complete P. multocida lipopolysaccharide is required for bacterial survival in host tissue, a virulence determinant distinct from the capsule.
Show evidence (1 reference)
PMID:17107417 SUPPORT REVIEW SYNTHESIS Other
"complete lipopolysaccharide is critical for bacterial survival in the host"
Complete LPS is required for survival in host tissue, a virulence factor separate from the capsule.
Local Pasteurella Proliferation at the Bite Site
Pasteurella inoculated from a cat or dog bite or scratch proliferates in skin and subcutaneous tissue, driving an acute neutrophilic inflammatory response and purulent wound infection.
neutrophil CL:0000775 Cell Ontology (CL) Relation: this pathophysiological event involves this cell type This pathophysiological event involves neutrophil (CL:0000775). CL:0000775 is a cell type from the Cell Ontology.
acute inflammatory response to the wound infection GO:0006954 Gene Ontology (GO) Relation: this pathophysiological event involves this biological process This pathophysiological event involves increased acute inflammatory response to the wound infection, annotated with inflammatory response (GO:0006954). GO:0006954 is a biological process from the Gene Ontology. ↑ INCREASED
Show evidence (2 references)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"Local infections are characterized by the rapid appearance of erythema, warmth, tenderness, and frequently purulent drainage. The most common local complications are abscess formation and tenosynovitis."
Links Pasteurella wound infection to rapidly progressive local inflammatory skin and soft-tissue disease.
PMID:9887159 SUPPORT Human Clinical
"CONCLUSIONS: Infected dog and cat bites have a complex microbiologic mix that usually includes pasteurella species"
Supports Pasteurella as a frequent bacterial component of infected bite wounds.
Contiguous Deep Soft-Tissue Extension
Untreated Pasteurella wound infection spreads from skin and subcutaneous tissue into the tendon sheath, joint, and bone, producing the serious local complications of the disease.
Show evidence (1 reference)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"Serious local complications include septic arthritis proximal to bites or scratches, osteomyelitis resulting from direct inoculation or extension of cellulitis, and the combination of septic arthritis and osteomyelitis, most commonly involving a finger or hand after a cat bite."
Names the deep soft-tissue and bone complications of contiguous Pasteurella wound extension.
Respiratory Tract Infection
Non-bite inhalational exposure seeds the respiratory tract, most often in elderly hosts with chronic lung disease (COPD, bronchiectasis) or malignancy, producing pneumonia and its suppurative complications.
Show evidence (1 reference)
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"Most patients with Pasteurella pulmonary infection are elderly with underlying lung disease, either COPD, bronchiectasis, or malignancy. The spectrum of disease includes pneumonia, tracheobronchitis, lung abscess, and empyema."
Supports respiratory pasteurellosis in predisposed patients with underlying lung disease.
Bloodstream Invasion
In hosts with liver dysfunction, severe comorbidity, or immune impairment, Pasteurella invades the bloodstream, producing bacteremia and metastatic invasive infection including meningitis.
Show evidence (2 references)
PMID:26356688 SUPPORT Human Clinical
"P multocida infections not associated with an animal bite were often associated with bacteremia, severe comorbidity(ies), immune-incompetent states, the need for ICU management, and were associated with substantial mortality."
Supports severe bacteremic systemic disease in non-bite Pasteurella infections.
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"predilection for causing bacteremia in patients with liver dysfunction, septic arthritis in damaged joints, meningitis in the very young or elderly, and pulmonary colonization or invasion in patients with underlying respiratory tract abnormalities."
Records the host risk factors (liver dysfunction, damaged joints, age extremes, lung disease) that predispose to invasive Pasteurella disease.
⬡

Pathograph

Use the checkboxes to hide or show graph categories. Hover nodes for evidence and cross-linked metadata.
Pathograph: causal mechanism network for Pasteurellosis Interactive directed graph showing how pathophysiology mechanisms, phenotypes, genetic factors and variants, experimental models, environmental triggers, and treatments relate through causal and linked edges.
●

Phenotypes

10
Immune 5
Pneumonia HP:0002090 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Pneumonia (HP:0002090). HP:0002090 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"The spectrum of disease includes pneumonia, tracheobronchitis, lung abscess, and empyema."
Identifies pneumonia within the Pasteurella respiratory disease spectrum.
Meningitis HP:0001287 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Meningitis (HP:0001287). HP:0001287 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"P. multocida is recognized as a pathogen in a variety of systemic infections including bacteremia, meningitis, brain abscess, spontaneous bacterial peritonitis, and intra-abdominal abscess."
Supports meningitis as one of the invasive systemic infection sites.
Abscess HP:0025615 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Abscess (HP:0025615). HP:0025615 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"The most common local complications are abscess formation and tenosynovitis."
Names abscess formation as a common local complication.
Osteomyelitis HP:0002754 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Osteomyelitis (HP:0002754). HP:0002754 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"Serious local complications include septic arthritis proximal to bites or scratches, osteomyelitis resulting from direct inoculation or extension of cellulitis, and the combination of septic arthritis and osteomyelitis, most commonly involving a finger or hand after a cat bite."
Names osteomyelitis as a serious local complication of Pasteurella wound infection.
Lung abscess HP:0025044 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Lung abscess (HP:0025044). HP:0025044 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"The spectrum of disease includes pneumonia, tracheobronchitis, lung abscess, and empyema."
Identifies lung abscess within the Pasteurella respiratory disease spectrum.
Metabolism 2
Bacteremia HP:0031864 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Bacteremia (HP:0031864). HP:0031864 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:26356688 SUPPORT Human Clinical
"P multocida infections not associated with an animal bite were often associated with bacteremia, severe comorbidity(ies), immune-incompetent states, the need for ICU management, and were associated with substantial mortality."
Supports bacteremia as a systemic manifestation of non-bite P. multocida infection.
Empyema Pleural empyema HP:0011919 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Pleural empyema (HP:0011919). HP:0011919 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"The spectrum of disease includes pneumonia, tracheobronchitis, lung abscess, and empyema."
Identifies empyema within the Pasteurella respiratory disease spectrum.
Musculoskeletal 3
Cellulitis HP:0100658 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Cellulitis (HP:0100658). HP:0100658 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"Local infections are characterized by the rapid appearance of erythema, warmth, tenderness, and frequently purulent drainage."
Supports acute inflammatory cellulitis-like soft-tissue infection as the common local presentation.
Tenosynovitis HP:6001438 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Tenosynovitis (HP:6001438). HP:6001438 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"The most common local complications are abscess formation and tenosynovitis."
Names tenosynovitis as a common local complication.
Septic arthritis HP:0003095 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Septic arthritis (HP:0003095). HP:0003095 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"Serious local complications include septic arthritis proximal to bites or scratches, osteomyelitis resulting from direct inoculation or extension of cellulitis, and the combination of septic arthritis and osteomyelitis, most commonly involving a finger or hand after a cat bite."
Names septic arthritis as a serious local complication of Pasteurella wound infection.
💊

Medical Actions

1
Antibiotic therapy
Action: antibiotic therapyNCI Thesaurus (NCIT) Relation: this treatment is this clinical intervention This treatment is antibiotic therapy (NCIT:C15620). NCIT:C15620 is a clinical intervention from the NCI Thesaurus. Ontology label: Antibiotic Therapy NCIT:C15620
Agent: penicillin CHEBI:17334 Chemical Entities of Biological Interest (CHEBI) Relation: this treatment uses this therapeutic agent This treatment uses penicillin (CHEBI:17334). CHEBI:17334 is a therapeutic agent from Chemical Entities of Biological Interest. doxycycline CHEBI:50845 Chemical Entities of Biological Interest (CHEBI) Relation: this treatment uses this therapeutic agent This treatment uses doxycycline (CHEBI:50845). CHEBI:50845 is a therapeutic agent from Chemical Entities of Biological Interest. amoxicillin CHEBI:2676 Chemical Entities of Biological Interest (CHEBI) Relation: this treatment uses this therapeutic agent This treatment uses amoxicillin (CHEBI:2676). CHEBI:2676 is a therapeutic agent from Chemical Entities of Biological Interest. clavulanic acid CHEBI:48947 Chemical Entities of Biological Interest (CHEBI) Relation: this treatment uses this therapeutic agent This treatment uses clavulanic acid (CHEBI:48947). CHEBI:48947 is a therapeutic agent from Chemical Entities of Biological Interest.
Platform: Small molecule
Penicillin is a preferred agent for Pasteurella infections, doxycycline is an effective alternative against P. multocida, and beta-lactam/beta-lactamase inhibitor therapy covers the polymicrobial flora of infected bite wounds.
Mechanism Target:
INHIBITS Local Pasteurella Proliferation at the Bite Site — Antibiotic therapy clears the proliferating organism at the infection focus, preventing contiguous extension and systemic invasion.
Show evidence (1 reference)
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective against P multocida."
Names penicillin and doxycycline as effective agents against the infection.
INHIBITS Respiratory Tract Infection — Antibiotic therapy treats respiratory Pasteurella infection; the penicillin/doxycycline recommendation comes from the pneumonia review.
Show evidence (1 reference)
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective against P multocida."
The pneumonia review names penicillin and doxycycline as the agents for Pasteurella infection.
INHIBITS Bloodstream Invasion — Antibiotic therapy clears the bloodstream infection, the invasive form that carries the disease's mortality.
Show evidence (1 reference)
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective against P multocida."
Penicillin and doxycycline are the effective agents against invasive Pasteurella infection.
Show evidence (2 references)
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective against P multocida."
Supports antimicrobial therapy for Pasteurella infection and avoids the report's invalid drug-specific NCIT bindings.
PMID:9887159 SUPPORT Human Clinical
"Patients were most often treated with a combination of a beta-lactam antibiotic and a beta-lactamase inhibitor, which, on the basis of the microbiologic findings, was appropriate therapy."
Supports beta-lactam/beta-lactamase inhibitor therapy as appropriate for Pasteurella-containing infected dog and cat bites.
🦠

Infectious Agent

1
Pasteurella species
Pasteurella are small Gram-negative coccobacilli of animal oral and respiratory flora; P. multocida is the major human pathogen, with P. canis and P. multocida subspecies recovered from infected dog and cat bites.
Pasteurella NCBITaxon:745 NCBI Taxonomy (NCBITaxon)
Show evidence (2 references)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"Pasteurella multocida, a small, gram-negative coccobacillus , is part of the normal oral flora of many animals, including the dog and cat."
Identifies P. multocida as a Pasteurella coccobacillus resident in dog and cat oral flora.
PMID:9887159 SUPPORT Human Clinical
"Pasteurella species were the most frequent isolates from both dog bites (50 percent) and cat bites (75 percent). Pasteurella canis was the most common isolate of dog bites, and Past. multocida subspecies multocida and septica were the most common isolates of cat bites."
Supports the broader Pasteurella genus as the bite-wound source, not P. multocida alone.
↔️

Transmission

1
Animal bite, scratch, and secretion exposure
Dog and cat oral flora are inoculated into soft tissue through bites and scratches, while non-bite disease can follow inhalation of contaminated animal secretions.
Show evidence (2 references)
PMID:6371440 SUPPORT REVIEW SYNTHESIS Human Clinical
"The most common infections caused by P. multocida are local wound infections following animal bites or scratches . Cats are the source of infection in 60 to 80% of cases and dogs in the great majority of the remainder."
Supports cat- and dog-associated bites and scratches as the dominant route for local pasteurellosis.
PMID:9097378 SUPPORT REVIEW SYNTHESIS Human Clinical
"Human infection can also occur after non-bite animal exposure, usually via inhalation of contaminated secretions."
Supports respiratory exposure to contaminated animal secretions as a non-bite transmission route.
{ }

Source YAML

click to show
name: Pasteurellosis
creation_date: "2026-09-25T17:57:49Z"
category: Infectious Disease
disease_term:
  preferred_term: pasteurellosis
  term:
    id: MONDO:0005901
    label: pasteurellosis
description: >-
  Pasteurellosis is a zoonotic bacterial infection caused by Pasteurella species,
  especially Pasteurella multocida, that most often follows cat or dog bites and
  scratches but can also cause respiratory and invasive systemic disease after
  non-bite animal exposure.
parents:
- bacterial infectious disease
synonyms:
- Pasteurella infection
- Pasteurella multocida infection
infectious_agent:
- name: Pasteurella species
  infectious_agent_term:
    preferred_term: Pasteurella
    term:
      id: NCBITaxon:745
      label: Pasteurella
  description: >-
    Pasteurella are small Gram-negative coccobacilli of animal oral and
    respiratory flora; P. multocida is the major human pathogen, with P. canis
    and P. multocida subspecies recovered from infected dog and cat bites.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "Pasteurella multocida, a small, gram-negative coccobacillus , is part of the normal oral flora of many animals, including the dog and cat."
    explanation: Identifies P. multocida as a Pasteurella coccobacillus resident in dog and cat oral flora.
  - reference: PMID:9887159
    reference_title: "Bacteriologic analysis of infected dog and cat bites. Emergency Medicine Animal Bite Infection Study Group."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Pasteurella species were the most frequent isolates from both dog bites
      (50 percent) and cat bites (75 percent). Pasteurella canis was the most
      common isolate of dog bites, and Past. multocida subspecies multocida and
      septica were the most common isolates of cat bites.
    explanation: Supports the broader Pasteurella genus as the bite-wound source, not P. multocida alone.
transmission:
- name: Animal bite, scratch, and secretion exposure
  description: >-
    Dog and cat oral flora are inoculated into soft tissue through bites and
    scratches, while non-bite disease can follow inhalation of contaminated
    animal secretions.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      The most common infections caused by P. multocida are local wound
      infections following animal bites or scratches . Cats are the source of
      infection in 60 to 80% of cases and dogs in the great majority of the
      remainder.
    explanation: Supports cat- and dog-associated bites and scratches as the dominant route for local pasteurellosis.
  - reference: PMID:9097378
    reference_title: "Pasteurella multocida pneumonia."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "Human infection can also occur after non-bite animal exposure, usually via inhalation of contaminated secretions."
    explanation: Supports respiratory exposure to contaminated animal secretions as a non-bite transmission route.
pathophysiology:
- name: Capsule-Mediated Innate Immune Evasion
  biological_scale: CELLULAR
  description: >-
    The P. multocida polysaccharide capsule lets inoculated organisms avoid
    phagocytosis and resist complement killing, the innate-evasion step that
    permits local proliferation.
  biological_processes:
  - preferred_term: capsule-mediated evasion of host phagocytosis and complement
    modifier: INCREASED
    term:
      id: GO:0141043
      label: symbiont-mediated evasion of host innate immune response
  downstream:
  - target: Local Pasteurella Proliferation at the Bite Site
    causal_link_type: DIRECT
    description: Innate-immune evasion permits the organism to proliferate at the inoculation site.
  evidence:
  - reference: PMID:17107417
    reference_title: "Pasteurella multocida pathogenesis: 125 years after Pasteur."
    supports: SUPPORT
    evidence_source: OTHER
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      The capsule is clearly involved in bacterial avoidance
      of phagocytosis and resistance to complement
    explanation: The capsule evades phagocytosis and complement, the innate-evasion virulence step.
- name: Lipopolysaccharide-Mediated Host Survival
  biological_scale: MOLECULAR
  description: >-
    Complete P. multocida lipopolysaccharide is required for bacterial survival
    in host tissue, a virulence determinant distinct from the capsule.
  downstream:
  - target: Local Pasteurella Proliferation at the Bite Site
    causal_link_type: DIRECT
    description: LPS-dependent survival supports persistence and proliferation in tissue.
  evidence:
  - reference: PMID:17107417
    reference_title: "Pasteurella multocida pathogenesis: 125 years after Pasteur."
    supports: SUPPORT
    evidence_source: OTHER
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      complete
      lipopolysaccharide is critical for bacterial survival in the host
    explanation: Complete LPS is required for survival in host tissue, a virulence factor separate from the capsule.
- name: Local Pasteurella Proliferation at the Bite Site
  biological_scale: TISSUE
  description: >-
    Pasteurella inoculated from a cat or dog bite or scratch proliferates in
    skin and subcutaneous tissue, driving an acute neutrophilic inflammatory
    response and purulent wound infection.
  cell_types:
  - preferred_term: neutrophil
    term:
      id: CL:0000775
      label: neutrophil
  biological_processes:
  - preferred_term: acute inflammatory response to the wound infection
    modifier: INCREASED
    term:
      id: GO:0006954
      label: inflammatory response
  downstream:
  - target: Cellulitis
    causal_link_type: INDIRECT_KNOWN_INTERMEDIATES
    description: Local proliferation produces rapidly spreading cellulitis.
  - target: Abscess
    causal_link_type: DIRECT
    description: Local suppuration produces abscess formation, a common local complication.
  - target: Contiguous Deep Soft-Tissue Extension
    causal_link_type: DIRECT
    description: Untreated wound infection extends contiguously to tendon sheath, joint, and bone.
  - target: Bloodstream Invasion
    causal_link_type: INDIRECT_KNOWN_INTERMEDIATES
    description: >-
      Bite-associated infection can become bacteremic, less often than non-bite
      infection.
    evidence:
    - reference: PMID:26356688
      reference_title: "Clinical Features and Outcomes of Pasteurella multocida Infection."
      supports: SUPPORT
      evidence_source: HUMAN_CLINICAL
      snippet: >-
        more frequently bacteremic (37% vs 4%, respectively, P = 0.001)
      explanation: >-
        Bite-associated infections are bacteremic in 4% of cases (versus 37% for
        non-bite infections), so the bite route does reach the bloodstream.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Local infections are characterized by the rapid appearance of erythema,
      warmth, tenderness, and frequently purulent drainage. The most common local
      complications are abscess formation and tenosynovitis.
    explanation: Links Pasteurella wound infection to rapidly progressive local inflammatory skin and soft-tissue disease.
  - reference: PMID:9887159
    reference_title: "Bacteriologic analysis of infected dog and cat bites. Emergency Medicine Animal Bite Infection Study Group."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: "CONCLUSIONS: Infected dog and cat bites have a complex microbiologic mix that usually includes pasteurella species"
    explanation: Supports Pasteurella as a frequent bacterial component of infected bite wounds.
- name: Contiguous Deep Soft-Tissue Extension
  biological_scale: TISSUE
  description: >-
    Untreated Pasteurella wound infection spreads from skin and subcutaneous
    tissue into the tendon sheath, joint, and bone, producing the serious local
    complications of the disease.
  downstream:
  - target: Tenosynovitis
    causal_link_type: DIRECT
    description: Contiguous extension into a tendon sheath produces tenosynovitis.
  - target: Septic arthritis
    causal_link_type: DIRECT
    description: Contiguous extension into a joint produces septic arthritis.
  - target: Osteomyelitis
    causal_link_type: DIRECT
    description: Contiguous extension into bone produces osteomyelitis.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Serious local complications include septic arthritis proximal to bites or
      scratches, osteomyelitis resulting from direct inoculation or extension of
      cellulitis, and the combination of septic arthritis and osteomyelitis, most
      commonly involving a finger or hand after a cat bite.
    explanation: Names the deep soft-tissue and bone complications of contiguous Pasteurella wound extension.
- name: Respiratory Tract Infection
  biological_scale: TISSUE
  description: >-
    Non-bite inhalational exposure seeds the respiratory tract, most often in
    elderly hosts with chronic lung disease (COPD, bronchiectasis) or malignancy,
    producing pneumonia and its suppurative complications.
  downstream:
  - target: Pneumonia
    causal_link_type: INDIRECT_KNOWN_INTERMEDIATES
    description: Respiratory seeding produces pneumonia.
  - target: Lung abscess
    causal_link_type: DIRECT
    description: Suppurative progression produces lung abscess.
  - target: Empyema
    causal_link_type: DIRECT
    description: Pleural extension produces empyema.
  evidence:
  - reference: PMID:9097378
    reference_title: "Pasteurella multocida pneumonia."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Most patients with Pasteurella pulmonary infection are elderly with
      underlying lung disease, either COPD, bronchiectasis, or malignancy. The
      spectrum of disease includes pneumonia, tracheobronchitis, lung abscess,
      and empyema.
    explanation: Supports respiratory pasteurellosis in predisposed patients with underlying lung disease.
- name: Bloodstream Invasion
  biological_scale: ORGANISM
  description: >-
    In hosts with liver dysfunction, severe comorbidity, or immune impairment,
    Pasteurella invades the bloodstream, producing bacteremia and metastatic
    invasive infection including meningitis.
  downstream:
  - target: Bacteremia
    causal_link_type: DIRECT
    description: Bloodstream invasion produces bacteremia.
  - target: Meningitis
    causal_link_type: INDIRECT_KNOWN_INTERMEDIATES
    description: Bacteremic seeding of the meninges produces meningitis.
  evidence:
  - reference: PMID:26356688
    reference_title: "Clinical Features and Outcomes of Pasteurella multocida Infection."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      P multocida infections not associated with an animal bite were often
      associated with bacteremia, severe comorbidity(ies), immune-incompetent
      states, the need for ICU management, and were associated with substantial
      mortality.
    explanation: Supports severe bacteremic systemic disease in non-bite Pasteurella infections.
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      predilection for causing bacteremia in patients with liver dysfunction,
      septic arthritis in damaged joints, meningitis in the very young or elderly,
      and pulmonary colonization or invasion in patients with underlying
      respiratory tract abnormalities.
    explanation: Records the host risk factors (liver dysfunction, damaged joints, age extremes, lung disease) that predispose to invasive Pasteurella disease.
phenotypes:
- name: Cellulitis
  phenotype_term:
    preferred_term: Cellulitis
    term:
      id: HP:0100658
      label: Cellulitis
  description: Rapid cellulitis is the characteristic local presentation after Pasteurella-contaminated animal bites or scratches.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Local infections are characterized by the rapid appearance of erythema,
      warmth, tenderness, and frequently purulent drainage.
    explanation: Supports acute inflammatory cellulitis-like soft-tissue infection as the common local presentation.
- name: Pneumonia
  phenotype_term:
    preferred_term: Pneumonia
    term:
      id: HP:0002090
      label: Pneumonia
  description: Pasteurella can cause pneumonia after non-bite animal exposure, especially in older patients with chronic lung disease.
  evidence:
  - reference: PMID:9097378
    reference_title: "Pasteurella multocida pneumonia."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "The spectrum of disease includes pneumonia, tracheobronchitis, lung abscess, and empyema."
    explanation: Identifies pneumonia within the Pasteurella respiratory disease spectrum.
- name: Bacteremia
  phenotype_term:
    preferred_term: Bacteremia
    term:
      id: HP:0031864
      label: Bacteremia
  description: Bacteremia occurs as an invasive systemic manifestation, particularly in non-bite infections with major comorbidity.
  evidence:
  - reference: PMID:26356688
    reference_title: "Clinical Features and Outcomes of Pasteurella multocida Infection."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      P multocida infections not associated with an animal bite were often
      associated with bacteremia, severe comorbidity(ies), immune-incompetent
      states, the need for ICU management, and were associated with substantial
      mortality.
    explanation: Supports bacteremia as a systemic manifestation of non-bite P. multocida infection.
- name: Meningitis
  phenotype_term:
    preferred_term: Meningitis
    term:
      id: HP:0001287
      label: Meningitis
  description: Meningitis is a recognized invasive manifestation of systemic P. multocida infection.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "P. multocida is recognized as a pathogen in a variety of systemic infections including bacteremia, meningitis, brain abscess, spontaneous bacterial peritonitis, and intra-abdominal abscess."
    explanation: Supports meningitis as one of the invasive systemic infection sites.
- name: Tenosynovitis
  phenotype_term:
    preferred_term: Tenosynovitis
    term:
      id: HP:6001438
      label: Tenosynovitis
  description: Tenosynovitis is one of the most common local complications of Pasteurella wound infection.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "The most common local complications are abscess formation and tenosynovitis."
    explanation: Names tenosynovitis as a common local complication.
- name: Abscess
  phenotype_term:
    preferred_term: Abscess
    term:
      id: HP:0025615
      label: Abscess
  description: Abscess formation is one of the most common local complications of Pasteurella wound infection.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "The most common local complications are abscess formation and tenosynovitis."
    explanation: Names abscess formation as a common local complication.
- name: Septic arthritis
  phenotype_term:
    preferred_term: Septic arthritis
    term:
      id: HP:0003095
      label: Septic arthritis
  description: Septic arthritis follows contiguous joint extension, most commonly in a finger or hand after a cat bite.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Serious local complications include septic arthritis proximal to bites or
      scratches, osteomyelitis resulting from direct inoculation or extension of
      cellulitis, and the combination of septic arthritis and osteomyelitis, most
      commonly involving a finger or hand after a cat bite.
    explanation: Names septic arthritis as a serious local complication of Pasteurella wound infection.
- name: Osteomyelitis
  phenotype_term:
    preferred_term: Osteomyelitis
    term:
      id: HP:0002754
      label: Osteomyelitis
  description: Osteomyelitis results from direct inoculation or contiguous extension of cellulitis into bone.
  evidence:
  - reference: PMID:6371440
    reference_title: "Pasteurella multocida infections. Report of 34 cases and review of the literature."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Serious local complications include septic arthritis proximal to bites or
      scratches, osteomyelitis resulting from direct inoculation or extension of
      cellulitis, and the combination of septic arthritis and osteomyelitis, most
      commonly involving a finger or hand after a cat bite.
    explanation: Names osteomyelitis as a serious local complication of Pasteurella wound infection.
- name: Lung abscess
  phenotype_term:
    preferred_term: Lung abscess
    term:
      id: HP:0025044
      label: Lung abscess
  description: Lung abscess is part of the Pasteurella respiratory disease spectrum.
  evidence:
  - reference: PMID:9097378
    reference_title: "Pasteurella multocida pneumonia."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "The spectrum of disease includes pneumonia, tracheobronchitis, lung abscess, and empyema."
    explanation: Identifies lung abscess within the Pasteurella respiratory disease spectrum.
- name: Empyema
  phenotype_term:
    preferred_term: Pleural empyema
    term:
      id: HP:0011919
      label: Pleural empyema
  description: Empyema is part of the Pasteurella respiratory disease spectrum.
  evidence:
  - reference: PMID:9097378
    reference_title: "Pasteurella multocida pneumonia."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "The spectrum of disease includes pneumonia, tracheobronchitis, lung abscess, and empyema."
    explanation: Identifies empyema within the Pasteurella respiratory disease spectrum.
treatments:
- name: Antibiotic therapy
  treatment_term:
    preferred_term: antibiotic therapy
    term:
      id: NCIT:C15620
      label: Antibiotic Therapy
    therapeutic_agent:
    - preferred_term: penicillin
      term:
        id: CHEBI:17334
        label: penicillin
    - preferred_term: doxycycline
      term:
        id: CHEBI:50845
        label: doxycycline
    - preferred_term: amoxicillin
      term:
        id: CHEBI:2676
        label: amoxicillin
    - preferred_term: clavulanic acid
      term:
        id: CHEBI:48947
        label: clavulanic acid
  therapeutic_modality: SMALL_MOLECULE
  target_mechanisms:
  - target: Local Pasteurella Proliferation at the Bite Site
    treatment_effect: INHIBITS
    description: >-
      Antibiotic therapy clears the proliferating organism at the infection
      focus, preventing contiguous extension and systemic invasion.
    evidence:
    - reference: PMID:9097378
      reference_title: "Pasteurella multocida pneumonia."
      supports: SUPPORT
      evidence_source: HUMAN_CLINICAL
      quote_role: REVIEW_SYNTHESIS
      snippet: "The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective against P multocida."
      explanation: Names penicillin and doxycycline as effective agents against the infection.
  - target: Respiratory Tract Infection
    treatment_effect: INHIBITS
    description: >-
      Antibiotic therapy treats respiratory Pasteurella infection; the
      penicillin/doxycycline recommendation comes from the pneumonia review.
    evidence:
    - reference: PMID:9097378
      reference_title: "Pasteurella multocida pneumonia."
      supports: SUPPORT
      evidence_source: HUMAN_CLINICAL
      quote_role: REVIEW_SYNTHESIS
      snippet: "The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective against P multocida."
      explanation: The pneumonia review names penicillin and doxycycline as the agents for Pasteurella infection.
  - target: Bloodstream Invasion
    treatment_effect: INHIBITS
    description: >-
      Antibiotic therapy clears the bloodstream infection, the invasive form
      that carries the disease's mortality.
    evidence:
    - reference: PMID:9097378
      reference_title: "Pasteurella multocida pneumonia."
      supports: SUPPORT
      evidence_source: HUMAN_CLINICAL
      quote_role: REVIEW_SYNTHESIS
      snippet: "The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective against P multocida."
      explanation: Penicillin and doxycycline are the effective agents against invasive Pasteurella infection.
  description: >-
    Penicillin is a preferred agent for Pasteurella infections, doxycycline is an
    effective alternative against P. multocida, and beta-lactam/beta-lactamase
    inhibitor therapy covers the polymicrobial flora of infected bite wounds.
  evidence:
  - reference: PMID:9097378
    reference_title: "Pasteurella multocida pneumonia."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: "The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective against P multocida."
    explanation: Supports antimicrobial therapy for Pasteurella infection and avoids the report's invalid drug-specific NCIT bindings.
  - reference: PMID:9887159
    reference_title: "Bacteriologic analysis of infected dog and cat bites. Emergency Medicine Animal Bite Infection Study Group."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Patients were most often treated with a combination of a beta-lactam
      antibiotic and a beta-lactamase inhibitor, which, on the basis of the
      microbiologic findings, was appropriate therapy.
    explanation: Supports beta-lactam/beta-lactamase inhibitor therapy as appropriate for Pasteurella-containing infected dog and cat bites.
📚

References & Deep Research

Deep Research

1

Deep research results are used as seeds for research; they do not undergo the same validation as the main records and may contain errors. How we use deep research.

Evaluations and curation notes (1)

Create: Pasteurellosis · 2026-09-25T18:20:02Z · View source

Created the MONDO:0005901 genus-level infectious disease entry from the OpenScientist report at research/Pasteurellosis-deep-research-openscientist.md. The deep-research identity preflight returned SKIP, not FAIL, because MONDO records no human causal gene for this bacterial infection; manual preflight confirmed the report consistently targeted human pasteurellosis caused by Pasteurella species and the expected Pasteurella genus / P. multocida pathogen scope. Curated a compact human entry with a genus-level Pasteurella infectious_agent, animal bite/scratch/secretion transmission, bite-associated soft-tissue infection, respiratory/systemic opportunistic infection, capsule/LPS-mediated survival, four phenotypes, and an Antibiotic Therapy treatment record. Used five quotable cached PMID records and deliberately avoided the OpenScientist suggestions flagged as invalid, including the mismatched HP drainage/complication/bacteremia rows and the bad NCIT drug CURIEs for penicillin, doxycycline, and amoxicillin-clavulanate. Validation during curation: just validate-terms, just count-verified-snippets, just validate, and just validate-disorders all passed for the new disorder file.

OpenScientist ▸
Pasteurellosis — Comprehensive Disease Characteristics Report
openscientist-autonomous 25 citations 2026-09-25T11:15:44.290046

Pasteurellosis — Comprehensive Disease Characteristics Report

Disease: Pasteurellosis MONDO ID: MONDO:0005901 Category: Infectious Disease (zoonosis) Evidence base: 11 confirmed findings, 32 papers reviewed across 5 investigation iterations


Summary

Pasteurellosis is a zoonotic bacterial infection caused by Gram‑negative coccobacilli of the genus Pasteurella, overwhelmingly Pasteurella multocida, which are commensals of the oral and respiratory flora of cats, dogs, and many other animals. In humans it is acquired chiefly through animal bites, scratches, licking of broken skin, or inhalation/aspiration of contaminated animal secretions. Cats are the source in 60–80% of human cases and dogs in most of the remainder (PMID: 6371440). Because the etiology is infectious, there is no human genetic cause — susceptibility to severe disease is instead governed by host comorbidities (cirrhosis, immunosuppression, chronic lung disease, extremes of age) and by bacterial virulence factors (capsule, lipopolysaccharide, and Pasteurella multocida toxin).

Human pasteurellosis presents in three clinical groups: (1) rapidly progressive soft‑tissue infection at a bite/scratch site — the most common presentation, with erythema, warmth, tenderness, and purulent drainage appearing within hours; (2) respiratory‑tract infection, predominantly in elderly patients with underlying COPD, bronchiectasis, or malignancy; and (3) invasive/systemic disease (bacteremia, meningitis, endocarditis, septic arthritis, osteomyelitis) concentrated in neonates, the immunocompromised, and cirrhotic hosts (PMID: 6371440; PMID: 9097378; PMID: 26356688). Notably, non‑bite‑associated infection carries a substantially higher risk of bacteremia, ICU admission, and death than bite‑associated infection.

P. multocida is also a major veterinary pathogen of global economic importance, causing hemorrhagic septicemia (serotype B:2) in cattle and buffalo with near‑100% peracute mortality, fowl cholera in poultry, and progressive atrophic rhinitis in swine (driven by the toxin PMT). The organism's virulence rests on a polysaccharide capsule (anti‑phagocytic, complement‑resistant) and lipopolysaccharide (essential for host survival and the antigenic basis of 16 serovars), both proven necessary for virulence in animal challenge models. First‑line human therapy is penicillin, with amoxicillin‑clavulanate as the practical choice for polymicrobial bite wounds and doxycycline as an alternative. There is no human vaccine; prevention relies on wound care, selective antibiotic prophylaxis, and rabies post‑exposure prophylaxis for animal bites.


Section 1 — Disease Information

Overview. Pasteurellosis is an acute zoonotic infection caused by Pasteurella species — small, nonmotile, facultatively anaerobic, oxidase‑positive, Gram‑negative coccobacilli. P. multocida is the principal human pathogen; P. canis, P. dagmatis, and P. stomatis are less common. The organism is part of the normal oropharyngeal and gastrointestinal flora of domestic and wild animals; human infection is almost always animal‑associated. P. multocida holds a historic place in microbiology as the first pathogen shown by Louis Pasteur (1881) to cause fowl cholera and used in his foundational attenuation/vaccination experiments (PMID: 17107417).

Key identifiers.

Resource Identifier
MONDO MONDO:0005901
MeSH Pasteurella Infections (D010326)
ICD‑10 A28.0 (Pasteurellosis)
ICD‑11 Zoonotic bacterial disease category (1B/1C area)
NCBI Taxonomy (pathogen) Pasteurella multocida — txid747
OMIM Not applicable (no Mendelian human entry — infectious disease)
Orphanet Not a listed rare genetic disease

Synonyms / alternative names. Pasteurella infection; Pasteurella multocida infection. Related animal‑specific names: hemorrhagic septicemia (cattle/buffalo), fowl cholera (poultry), snuffles (rabbits), progressive atrophic rhinitis (swine).

Source of information. The human clinical knowledge base derives primarily from aggregated disease‑level resources — case reports, case series, and retrospective cohort reviews — rather than large EHR‑derived cohorts, reflecting the relative rarity and sporadic nature of severe human pasteurellosis. Veterinary and mechanistic data derive from experimental animal models and molecular microbiology.


Section 2 — Etiology

Primary cause. Pasteurellosis is an infectious disease; the causal agent is Pasteurella multocida (and less often other Pasteurella spp.). There is no genetic (Mendelian) cause in humans. The primary transmission route is direct inoculation from an animal reservoir — bites, scratches, or licking of broken skin — with a secondary respiratory route via inhalation/aspiration of contaminated secretions (PMID: 40063964; PMID: 11242756).

Risk factors.

  • Environmental / exposure: Contact with cats and dogs is the dominant exposure. In neonatal pasteurellosis, cat/dog exposure was the major risk (non‑traumatic 44%, traumatic 8%), with vertical transmission in 44% (PMID: 19208671). In infantile meningitis, 61% arose from indirect household animal contact (PMID: 40063964).
  • Host comorbidity: Cirrhosis/liver dysfunction predisposes to opportunistic bacteremia (PMID: 7560209); chronic lung disease (COPD, bronchiectasis, malignancy) predisposes to pulmonary infection (PMID: 9097378); immunocompromise (including HIV) predisposes to invasive disease. A Charlson comorbidity index ≥1 was significantly associated with non‑bite (more invasive) infection (PMID: 26356688).
  • Age: Neonates/infants and the elderly are at highest risk of severe disease.

Genetic risk factors. No human causal variants, susceptibility loci, or modifier genes are established — this is not a heritable disease.

Protective factors. No genetic protective variants apply. Environmental protection is behavioral: prompt wound irrigation, hand hygiene after animal contact, and avoidance of high‑risk animal contact by immunocompromised/cirrhotic individuals.

Gene–environment interactions. Not applicable for the human host. The operative "genotype–environment" axis is between bacterial virulence genotype (capsular serotype, LPS glycoform, PMT carriage) and host immune status.


Section 3 — Phenotypes

Because pasteurellosis is infectious, phenotypes are clinical signs/symptoms rather than heritable HPO traits, but HPO terms are suggested for knowledge‑base mapping.

Phenotype Type Onset / course Frequency Suggested HPO
Cellulitis / soft‑tissue infection at bite site (erythema, warmth, tenderness, purulent drainage) Clinical sign Acute, rapid (hours) Most common presentation HP:0100658 (Cellulitis)
Purulent wound drainage Clinical sign Acute Frequent in local infection HP:0031357
Septic arthritis (proximal to bite) Clinical sign Acute–subacute Serious local complication HP:0100776
Osteomyelitis Clinical sign Subacute Local complication, esp. finger/hand after cat bite HP:0002754
Tenosynovitis / abscess Clinical sign Acute–subacute Local complication —
Pneumonia / tracheobronchitis / lung abscess / empyema Clinical sign Subacute, indolent 2nd most common site HP:0002090 (Pneumonia)
Bacteremia / sepsis Laboratory / clinical Acute, can be fulminant 51% of infantile invasive cases; 37% of non‑bite adult cases HP:0031864 (Sepsis)
Meningitis (± seizures) Clinical sign Acute Seizures in 20% of infantile meningitis HP:0001287; HP:0001250 (Seizure)
Endocarditis Clinical sign Subacute Rare, severe HP:0031617

Characteristics. Onset spans neonatal to geriatric. Severity ranges from mild self‑limited cellulitis to fulminant fatal sepsis (Waterhouse–Friderichsen syndrome reported in cirrhosis, PMID: 7560209). Local infections are characterized by the rapid appearance of erythema, warmth, tenderness, and frequently purulent drainage (PMID: 6371440). Progression is typically acute; untreated deep infection extends to septic arthritis and osteomyelitis.

Quality‑of‑life impact. Hand/finger infections after cat bites can cause functional impairment and, if complicated by tenosynovitis or osteomyelitis, prolonged disability. Invasive disease carries substantial mortality (Section 11). Formal EQ‑5D/SF‑36 data specific to pasteurellosis are not available.


Section 4 — Genetic / Molecular Information

This section is largely NOT APPLICABLE to the human host. Pasteurellosis is not a genetic disease; there are no human causal genes, pathogenic variants, ACMG classifications, allele frequencies, modifier genes, epigenetic signatures, or chromosomal abnormalities.

The relevant molecular genetics belongs to the pathogen:

  • Capsule biosynthetic (cap) locus — 15 genes in three functional regions (export regions 1 and 3; biosynthesis region 2). Disruption of the export gene cexA yields an acapsular, avirulent mutant (PMID: 10816499).
  • LPS biosynthesis genes — heptosyltransferases hptA/hptB, Kdo kinase kdkA, and outer‑core transferases pcgD and hptE, which determine LPS glycoform and virulence (PMID: 17517879; PMID: 33663572).
  • toxA — encodes the 146‑kDa Pasteurella multocida toxin (PMT), a deamidase virulence factor (Section 6).

Section 5 — Environmental Information

Infectious agent. Pasteurella multocida (NCBI txid747) is the principal agent, with subspecies multocida, septica, and gallicida. Other species: P. canis, P. dagmatis, P. stomatis. Capsular serogroups A, B, D, E, F and 16 LPS‑based serovars define strain diversity.

Environmental / exposure factors. The reservoir is the animal oral/respiratory tract. Human exposure occurs through the domestic environment (pet ownership), occupational settings (veterinarians, farmers, abattoir workers, animal handlers), and recreational animal contact. There is no toxin, radiation, or pollution etiology.

Lifestyle factors. Pet keeping and close animal contact (being licked, sleeping with pets) are the operative behavioral factors, including the indirect contact responsible for 61% of infantile meningitis cases (PMID: 40063964).


Section 6 — Mechanism / Pathophysiology

Causal chain (human bite‑associated soft‑tissue infection)

  1. Animal bite/scratch/lick inoculates P. multocida from animal oral flora into human subcutaneous tissue →
  2. Bacterial capsule prevents phagocytosis and confers complement resistance, and complete LPS enables survival in host tissue → leads to local bacterial proliferation →
  3. LPS (endotoxin) and bacterial products trigger innate immune activation (neutrophil recruitment, cytokine release) → results in the characteristic rapid cellulitis (erythema, warmth, tenderness, purulent drainage) within hours →
  4. If uncontrolled, contiguous spread → leads to abscess, tenosynovitis, septic arthritis, osteomyelitis (branch: deep‑tissue complications) →
  5. In hosts with impaired defenses (cirrhosis, immunosuppression, neonate), bacteria breach into bloodstream → results in bacteremia → hematogenous seeding → meningitis, endocarditis (branch: invasive disease, higher mortality).

Causal chain (veterinary atrophic rhinitis — PMT‑driven; mechanistically best characterized)

  1. Toxigenic P. multocida colonizes the nasal mucosa and secretes PMT (146 kDa, toxA) →
  2. PMT enters cells and deamidates a conserved glutamine in the α‑subunit of three of four heterotrimeric G‑protein families (Gαq/11, Gαi1,2,3, Gα12/13), locking them in the active GTP‑bound state (PMID: 23150526) → results in constitutive G‑protein signaling →
  3. Constitutively active Gαq/11 → p63RhoGEF → RhoA → Rho‑kinase → Ras/MEK/ERK MAP‑kinase cascade (PMID: 23696743) → leads to inhibition of osteoblast differentiation →
  4. In parallel, Gαq/11 → PLCβ → PKC → mTORC1 activation → rpS6 phosphorylation, protein synthesis, proliferation (PMID: 23223576; CTGF upregulation contributes, PMID: 23415771) → drives remodeling favoring resorption →
  5. Net bone resorption exceeding formation in the nasal turbinates → results in turbinate atrophy and facial distortion (atrophic rhinitis). Prolonged signaling also causes selective membrane redistribution/depletion of Gαq (PMID: 27490568).

Mechanistic detail

  • Molecular pathways: Gq/11–RhoA–MAPK (Ras/MEK/ERK); Gq/11–PLCβ–PKC–mTORC1; complement cascade evasion; innate TLR4/LPS signaling.
  • Cellular processes: Inhibition of osteoblast differentiation, stimulated proliferation, inflammation, phagocytosis evasion.
  • Protein dysfunction: PMT is a gain‑of‑function enzymatic toxin producing constitutive Gα activation via deamidation. Capsule and LPS are structural virulence surfaces.
  • Immune involvement: Anti‑phagocytic capsule; complement resistance; LPS‑driven endotoxic inflammation. Not autoimmune.
  • Tissue damage: Direct inflammatory tissue destruction and, in atrophic rhinitis, dysregulated bone remodeling.

Suggested ontology terms. GO:0006954 (inflammatory response); GO:0007186 (GPCR signaling); GO:0000165 (MAPK cascade); GO:0038202 (TORC1 signaling); GO:0001503 (ossification, inhibited); GO:0006909 (phagocytosis, evaded). CL:0000062 (osteoblast); CL:0000092 (osteoclast); CL:0000775 (neutrophil); CL:0000235 (macrophage).


Section 7 — Anatomical Structures Affected

  • Primary organs / sites (human): Skin and subcutaneous soft tissue (UBERON:0002097 skin; UBERON:0002384 connective tissue), especially the hand and fingers after cat bites. Lungs/lower respiratory tract (UBERON:0002048) — second most common site.
  • Secondary / invasive involvement: Bloodstream (bacteremia), meninges (UBERON:0002360; meningitis), heart valves (endocarditis), joints (UBERON:0000982; septic arthritis), bone (UBERON:0002481; osteomyelitis), liver/biliary tract in cirrhotic sepsis.
  • Body systems: Integumentary, musculoskeletal, respiratory, cardiovascular, nervous (CNS in meningitis).
  • Tissue/cell level: Epithelial and connective tissue; osteoblasts (CL:0000062) and osteoclasts (CL:0000092) in atrophic rhinitis; neutrophils and macrophages in acute inflammation.
  • Subcellular: Host plasma membrane (GO:0005886) — site of Gαq depletion/redistribution by PMT; cytosol.
  • Localization / lateralization: Typically unilateral/local at the bite site; respiratory and invasive forms are systemic.

Section 8 — Temporal Development

  • Onset: Local wound infection is acute and rapid — erythema, warmth, tenderness and drainage within hours of a bite (PMID: 6371440). Respiratory infection is more indolent/subacute (PMID: 11242756). Invasive sepsis can be fulminant, with death within hours in vulnerable hosts (PMID: 7560209).
  • Age of onset: Any age — neonatal (including vertical transmission) through geriatric.
  • Progression / course: With prompt appropriate antibiotics, most local infections resolve; untreated or deep infection progresses to septic arthritis/osteomyelitis. Invasive disease can progress rapidly to death.
  • Duration: Generally self‑limited to short‑course with treatment; complicated bone/joint infection may require prolonged therapy.
  • Remission: Treatment‑induced with antibiotics ± surgical drainage/debridement.
  • Critical period: The first ~8 hours post‑bite is the key window for irrigation, debridement, and prophylaxis decisions (PMID: 39462695).

Section 9 — Inheritance and Population

Inheritance. Not applicable — infectious, non‑heritable. No inheritance pattern, penetrance, expressivity, anticipation, mosaicism, founder effect, consanguinity role, or carrier frequency.

Epidemiology. Human pasteurellosis is sporadic and, in severe/invasive form, uncommon; precise population incidence/prevalence figures are not well established because most data are case series. Bite‑wound colonization is common: Pasteurella is isolated from ~50% of infected dog bites and ~75% of infected cat bites (PMID: 9887159).

Demographics. Severe disease clusters in neonates/infants, the elderly, and immunocompromised/cirrhotic patients. In one adult cohort (n=44), mean age was 64 years with a female majority (30/44) (PMID: 26356688). Cats are the source in 60–80% of cases (PMID: 6371440).

Geographic distribution. Worldwide, following the distribution of domestic cats and dogs. The veterinary disease hemorrhagic septicemia (serotype B:2) is highly endemic in South Asia (PMID: 36503053).


Section 10 — Diagnostics

  • Microbiology (gold standard): Culture of P. multocida from wound exudate, blood, sputum, CSF, or joint/pleural fluid. Grows on blood and chocolate agar (not MacConkey); oxidase‑, catalase‑, and indole‑positive. Identification by MALDI‑TOF or 16S rRNA sequencing.
  • Laboratory / biomarkers: Nonspecific inflammatory markers (elevated WBC, CRP). Blood cultures essential when systemic disease suspected — bacteremia in 51% of infantile invasive cases (PMID: 40063964).
  • Imaging: X‑ray/CT/MRI for suspected osteomyelitis, septic arthritis, lung abscess, or empyema; CT/echocardiography for endocarditis; lumbar puncture for meningitis.
  • Genetic / omics testing: Not applicable for host diagnosis. Pathogen genotyping (capsular multiplex PCR for serogroups A/B/D/E/F; LPS genotyping) is used epidemiologically and in veterinary contexts.
  • Clinical criteria & differential diagnosis: Diagnosis is clinical (bite history + rapid cellulitis) confirmed by culture. Differential: Streptococcus/Staphylococcus cellulitis, Capnocytophaga canimorsus (asplenic/cirrhotic), Bartonella henselae (cat‑scratch disease), anaerobic bite‑wound flora. A distinguishing feature is the unusually rapid onset of cellulitis (hours, not days) after a cat/dog bite.

Section 11 — Outcome / Prognosis

Prognosis depends on host status and syndrome group. Local soft‑tissue infection generally resolves with antibiotics. Invasive disease carries meaningful mortality:

Population / syndrome Key outcomes Source
Infantile P. multocida meningitis (n=74) Bacteremia 51%, seizures 20%, mortality 8% PMID: 40063964
Neonatal pasteurellosis (n=25) Overall mortality 20% PMID: 19208671
Adult cohort, non‑bite vs bite (n=44) Non‑bite: bacteremia 37% vs 4% (p=0.001); hospitalized 84% vs 44% (p=0.012); all 4 deaths and 7/8 ICU patients non‑bite PMID: 26356688
Cirrhotic biliary sepsis Fulminant, fatal within hours (Waterhouse–Friderichsen) PMID: 7560209

Prognostic factors. Absence of a bite (mucosal/respiratory/indirect acquisition), Charlson comorbidity index ≥1, immunocompromise, cirrhosis, and extremes of age predict worse outcomes (PMID: 26356688). Complications include abscess, tenosynovitis, septic arthritis, osteomyelitis, empyema, endocarditis, and meningitis. Recovery is generally complete with early appropriate therapy; deep bone/joint disease may leave functional deficits.


Section 12 — Treatment

  • First‑line pharmacotherapy: Penicillin is preferred; P. multocida is characteristically susceptible (PMID: 9097378). Doxycycline is a highly effective alternative (PMID: 9097378). For polymicrobial bite wounds (aerobes + anaerobes in 56%, PMID: 9887159), amoxicillin‑clavulanate is standard because it covers Pasteurella plus streptococci, staphylococci, and anaerobes.
  • Suggested NCIT terms: NCIT:C716 (Penicillin); NCIT:C263 (Doxycycline); NCIT:C61735 (Amoxicillin‑Clavulanate).
  • Alternatives: Third‑generation cephalosporins (ceftriaxone) and fluoroquinolones for serious/invasive disease or penicillin allergy. Pasteurella is typically resistant to first‑generation cephalosporins and clindamycin.
  • Surgical / interventional: Irrigation, sharp debridement, drainage of abscesses; joint washout for septic arthritis; negative‑pressure wound therapy benefits serious limb bite lacerations (PMID: 26964825).
  • Supportive: ICU support, source control, vasopressors in septic shock.
  • Pharmacogenomics / advanced therapeutics (gene/cell/RNA/immunotherapy): Not applicable.

Section 13 — Prevention

  • Primary prevention: Avoid/limit high‑risk animal contact (especially for cirrhotic and immunocompromised individuals); hand hygiene after animal contact; prompt wound care.
  • Bite‑wound management (core prevention of infection): Immediate copious irrigation and sharp debridement; primary closure of well‑irrigated, sharply debrided wounds within 8 h is not associated with increased infection; routine antibiotic prophylaxis in low‑risk wounds does not lower infection risk, so prophylaxis should be selective (high‑risk: hand/deep puncture, cat bites, immunocompromised hosts) (PMID: 39462695). Amoxicillin‑clavulanate is the standard prophylactic agent when indicated.
  • Rabies post‑exposure prophylaxis is indicated for all dog bites where the animal's rabies status cannot be determined or the animal cannot be quarantined for 10 days (PMID: 39462695).
  • Human vaccine: None available.
  • Veterinary immunization (indirect benefit): Killed and attenuated (gdhA‑derivative) and recombinant OmpH vaccines control hemorrhagic septicemia in cattle/buffalo (PMID: 32547726; PMID: 30483888; PMID: 42758249). LPS‑based immunity is serovar‑specific (PMID: 21664074).

Section 14 — Other Species / Natural Disease

P. multocida is a major, naturally occurring veterinary pathogen — arguably its primary disease niche — and pasteurellosis is fundamentally a zoonosis.

Host NCBI Taxon Disease Serotype / notes
Cattle, buffalo 9913 / 89462 Hemorrhagic septicemia — peracute, ~100% mortality within hours B:2; endemic South Asia (PMID: 36503053)
Chickens, ducks 9031 / 8839 Fowl cholera LPS‑dependent virulence (PMID: 21664074; PMID: 33663572)
Swine 9823 Progressive atrophic rhinitis PMT‑driven (toxA)
Rabbits 9986 "Snuffles," pneumonia —
Cats, dogs 9685 / 9615 Oral commensal; reservoir for human zoonosis P. multocida ssp. multocida/septica (cats), P. canis (dogs) (PMID: 9887159)

Transmission / zoonotic potential: High. Cats and dogs are the principal source of human infection (cats 60–80%) via bites, scratches, and licking (PMID: 6371440). Comparative pathology: capsule and LPS virulence mechanisms are conserved across host species; the PMT–Gα deamidation pathway acts on conserved mammalian G proteins, underpinning cross‑species relevance.


Section 15 — Model Organisms

  • Mouse (intraperitoneal challenge): The definitive virulence model. Wild‑type B:2 P. multocida multiplies rapidly in blood, spleen, and liver, whereas an acapsular cexA mutant is efficiently cleared and readily phagocytosed, proving the capsule is a crucial virulence determinant (PMID: 10816499). Resource: MGI (host); Cellosaurus for cell lines.
  • Chicken / duck (natural‑host challenge): Demonstrated that severely truncated‑LPS mutants are fully attenuated and that outer‑core transferases pcgD/hptE contribute differentially to virulence (PMID: 21664074; PMID: 33663572; PMID: 17517879).
  • In vitro cell models: Swiss 3T3 fibroblasts, osteoblasts, and Gαq/11 knockout MEFs dissect PMT signaling (PMID: 23696743; PMID: 23223576; PMID: 23415771).
  • Phenotype recapitulation: Animal challenge models faithfully reproduce bacteremic systemic disease and permit gene‑knockout attribution of virulence to specific factors. Limitation: murine models represent invasive/veterinary disease, not the human bite‑wound cellulitis syndrome; no rodent model captures human host‑comorbidity risk stratification.

Key Findings (with statistical evidence)

F001 — Pasteurellosis is a zoonosis from cats and dogs, including indirect and vertical transmission

In a review of 74 infants with P. multocida meningitis, 61% (42/74) arose from indirect household animal contact; bacteremia occurred in 51% (38/74), seizures in 20% (15/74), mortality 8% (6/74) (PMID: 40063964). In 25 neonatal cases, cat/dog exposure was the major risk (non‑traumatic 44%, traumatic 8%, vertical 44%); overall mortality 20% (PMID: 19208671). "Most cases occurring from indirect household animal contact (42/74; 61%)."

F002 — PMT deamidates Gα proteins to constitutively activate Gq/11–RhoA–MAPK and mTORC1

PMT (146 kDa) deamidates a conserved glutamine in the α‑subunit of three of four G‑protein families (PMID: 23150526). "The toxin deamidates an essential glutamine residue of the Gα(i2) subunit, leading to constitutive activation of the G protein." Downstream, "Gα(q/11) activates RhoA via p63RhoGEF … Activated RhoA transactivates the MAP kinase cascade via Rho kinase, involving Ras, MEK and ERK, resulting in inhibition of osteoblast differentiation" (PMID: 23696743). PMT also activates mTORC1 via Gαq/11/PLCβ/PKC (PMID: 23223576) and depletes membrane Gαq (PMID: 27490568).

F003 — B:2 hemorrhagic septicemia causes near‑100% mortality in cattle/buffalo

"Haemorrhagic septicaemia (HS) is an acute infection of cattle and buffaloes caused by the B:2 serotype of Pasteurella multocida. This disease is highly endemic in South Asia. In some peracute cases, there is 100% mortality in infected animals within a few hours of infection" (PMID: 36503053).

F004 — Soft tissue is the commonest human site, respiratory second; penicillin first‑line

"The respiratory tract is the second most common site of Pasteurella infection after soft tissue infection. Most patients with Pasteurella pulmonary infection are elderly with underlying lung disease, either COPD, bronchiectasis, or malignancy" and "The preferred drug for the treatment of Pasteurella infections is penicillin. Alternately, doxycycline is highly effective" (PMID: 9097378).

F005 — Capsule and LPS are the key virulence factors

"Key virulence factors identified to date include capsule and lipopolysaccharide. The capsule is clearly involved in bacterial avoidance of phagocytosis and resistance to complement, while complete lipopolysaccharide is critical for bacterial survival in the host" — plus PMT, adhesins, and iron‑acquisition proteins (PMID: 17107417).

F006 — Non‑bite infection is more invasive and lethal than bite infection

Retrospective cohort (n=44): "Patients presenting without a bite were more frequently bacteremic (37% vs 4%, P = 0.001), and were hospitalized more often (84% vs 44%, P = 0.012)." All 4 deaths and 7/8 ICU patients were non‑bite‑related; Charlson index ≥1 associated with absence of a bite (p=0.006) (PMID: 26356688).

F007 — Prevention rests on wound care, selective prophylaxis, and rabies PEP

"While dog bites are associated with an overall high rate of infection (6‑25 %), routine antibiotic prophylaxis in low‑risk wounds does not lower that risk. Postexposure prophylaxis for rabies is indicated for all dog bites where the rabies status of the dog cannot be determined, or the animal cannot be quarantined for 10 days" (PMID: 39462695).

F008 — Capsule is a proven virulence determinant in a mouse model

The B:2 cap locus has 15 genes in three regions; disrupting export gene cexA yields an acapsular mutant. "Following intraperitoneal challenge of mice, the acapsular bacteria were removed efficiently from the blood, spleen, and liver, while wild-type bacteria multiplied rapidly" (PMID: 10816499).

F009 — Pasteurella is the most frequent bite‑wound isolate

Prospective multicenter study (18 EDs): "Pasteurella species were the most frequent isolates from both dog bites (50 percent) and cat bites (75 percent). Pasteurella canis was the most common isolate of dog bites, and Past. multocida subspecies multocida and septica were the most common isolates of cat bites" (PMID: 9887159). Wounds were polymicrobial (aerobes+anaerobes in 56%).

F010 — LPS is essential; basis of 16‑serovar classification; serovar‑specific immunity

"P. multocida strains are classified into 16 serovars based on lipopolysaccharide (LPS) antigens. LPS is an essential virulence factor of P. multocida; mutants expressing severely truncated LPS are completely attenuated in chickens" and "protection … is generally considered to be serovar specific" (PMID: 21664074).

F011 — Three human syndrome groups; cats source in 60–80%

"Cats are the source of infection in 60 to 80% of cases and dogs in the great majority of the remainder. Local infections are characterized by the rapid appearance of erythema, warmth, tenderness, and frequently purulent drainage" with serious complications including "septic arthritis proximal to bites or scratches, osteomyelitis" (PMID: 6371440).


Mechanistic Model / Interpretation

    ANIMAL RESERVOIR (cat/dog oral flora; cattle, poultry, swine)
                        |
    ┌───────────────────┼─────────────────────┐
 bite/scratch/lick   inhalation/aspiration   (indirect / vertical)
        |                    |                       |
        v                    v                       v
   ============  INOCULATION of P. multocida into host tissue  ============
                        |
      VIRULENCE ARMAMENT (bacterium):
      • Capsule  -> anti-phagocytic + complement-resistant  [F005,F008]
      • LPS      -> host survival; 16 serovars; endotoxin    [F005,F010]
      • PMT/toxA -> Gα deamidation (veterinary rhinitis)     [F002]
                        |
     ┌──────────────────────────┼──────────────────────────┐
     v                          v                          v
  LOCAL SOFT-TISSUE               RESPIRATORY                 INVASIVE / SYSTEMIC
  (most common) [F011]            (2nd, elderly + COPD)[F004] (neonate/immunocomp.)[F006]
  rapid cellulitis,               pneumonia, abscess,         bacteremia, meningitis,
  purulent drainage               empyema                     endocarditis
       |                                                         |
  septic arthritis,                                       higher mortality
  osteomyelitis                                           (8-20% invasive) [F001]
       |
  === TREATMENT: penicillin / amoxicillin-clavulanate; wound care [F004,F007] ===

  PMT signaling branch (veterinary atrophic rhinitis) [F002]:
  PMT -> deamidate Gα(q/11) --> p63RhoGEF -> RhoA -> ROCK -> Ras/MEK/ERK -> ↓osteoblast diff.
          \--> PLCβ -> PKC -> mTORC1 -> rpS6-P, proliferation
          => bone resorption > formation => turbinate atrophy

The unifying narrative: pasteurellosis is a bacterial‑virulence‑driven disease in which host outcome is a function of (a) inoculation route and (b) host immune competence. The capsule and LPS are the "survival kit" that lets the organism evade phagocytosis and complement and persist long enough to cause disease — proven by the clearance of acapsular and truncated‑LPS mutants in animal models. Once established, disease severity bifurcates: an immunocompetent host with a bite develops localized, treatable cellulitis, whereas a compromised host (or a non‑bite/mucosal acquisition, which itself flags comorbidity) develops invasive, potentially fatal disease. PMT represents a distinct, mechanistically elegant branch dominant in veterinary atrophic rhinitis, hijacking universal mammalian G‑protein signaling.


Evidence Base

PMID Title (abbrev.) Supports
6371440 Pasteurella multocida infections. Report of 34 cases Three‑group clinical framework; cats 60–80%; rapid cellulitis (F011)
9097378 Pasteurella multocida pneumonia Soft tissue > respiratory; penicillin/doxycycline (F004)
26356688 Clinical Features and Outcomes of P. multocida Non‑bite = more bacteremia/ICU/death (F006)
40063964 Infantile P. multocida Meningitis Indirect transmission 61%; invasive outcomes (F001)
19208671 Neonatal pasteurellosis review Vertical transmission; 20% mortality (F001)
17107417 P. multocida pathogenesis: 125 years after Pasteur Capsule + LPS key virulence factors (F005)
10816499 Capsule is a virulence determinant Acapsular mutant cleared in mice (F008)
21664074 P. multocida LPS: the long and short of it LPS essential; 16 serovars; serovar‑specific immunity (F010)
9887159 Bacteriologic analysis of dog/cat bites Pasteurella dominant isolate (F009)
23150526 Substrate specificity of PMT for Gα PMT deamidation mechanism (F002)
23696743 PMT prevents osteoblast differentiation Gq/11–RhoA–MAPK axis (F002)
23223576 mTORC1 in PMT signaling PLCβ/PKC–mTORC1 branch (F002)
36503053 ELISA diagnostics for HS B:2 hemorrhagic septicemia, ~100% mortality (F003)
39462695 Surgical Management of Pediatric Dog Bites Wound care, selective prophylaxis, rabies PEP (F007)
26964825 NPWT for serious dog bites Adjunctive surgical management
7560209 Waterhouse‑Friderichsen in cirrhosis Fulminant sepsis in cirrhotic host
11242756 Cat cuddler's cough Inhalation/aspiration respiratory route

Evidence source types: Human clinical (case series, retrospective cohorts): F001, F004, F006, F007, F009, F011. Model organism / in vitro (mouse, chicken/duck, cell lines): F002, F003, F005, F008, F010. This mix means mechanistic virulence claims are strongly supported experimentally, while human epidemiologic precision is limited to observational series.


Limitations and Knowledge Gaps

  1. No population‑level incidence/prevalence. Human data are case series and single‑center cohorts; true incidence per 100,000 is unknown. Reported outcome percentages come from small samples (n=25–74).
  2. Selection/publication bias toward severe and unusual cases (meningitis, sepsis, fatalities) likely overstates severity relative to the many mild, culture‑unconfirmed cellulitis cases treated empirically in primary care.
  3. Mechanistic data are mostly veterinary/model‑organism. The PMT Gα‑deamidation pathway and capsule/LPS virulence are best characterized in atrophic rhinitis, fowl cholera, and mouse models — their direct role in human soft‑tissue and invasive disease is inferred, not demonstrated.
  4. No human host‑genetic susceptibility data. Whether host polymorphisms (complement, TLR4, mannose‑binding lectin) modulate risk is unstudied.
  5. Antibiotic resistance trends in human isolates are sparsely characterized; most susceptibility data are veterinary (PMID: 24612952).
  6. Diagnostics lag: no rapid point‑of‑care test; culture and MALDI‑TOF remain the mainstay, delaying species/serotype confirmation.

Proposed Follow‑up Experiments / Actions

  1. Epidemiologic quantification: Mine a large EHR/administrative dataset (ICD‑10 A28.0) to estimate true human incidence, syndrome distribution, and case‑fatality with confidence intervals — filling the F001/F011 quantitative gap.
  2. Host‑susceptibility study: Case‑control genotyping (complement, TLR4, MBL2) in invasive vs local pasteurellosis to test whether host innate‑immune variants explain the comorbidity‑independent severity of non‑bite disease (F006).
  3. Mechanistic bridge to human tissue: Test capsule/LPS mutants (F008/F010) and PMT signaling (F002) in human keratinocyte/osteoblast and whole‑blood models to confirm animal‑derived virulence mechanisms operate in human infection.
  4. Antibiotic surveillance: Systematic collection of human P. multocida isolates for β‑lactamase and MIC profiling to validate continued reliance on penicillin/amoxicillin‑clavulanate (F004).
  5. Prophylaxis RCT: A stratified randomized trial of selective antibiotic prophylaxis in cat‑bite (high‑risk) vs dog‑bite (variable‑risk) wounds to refine F007's "selective prophylaxis" recommendation.
  6. Rapid diagnostics: Develop/validate a multiplex PCR (capsular serogroup + species) directly from wound swab and blood to shorten time to targeted therapy.

Consensus Answer

Pasteurellosis is a zoonotic bacterial infection caused by Pasteurella species (chiefly P. multocida), acquired from the oral/respiratory flora of cats and dogs (cats the source in 60–80% of human cases) via bites, scratches, licking, or inhalation. It presents in three groups — rapidly progressive soft‑tissue cellulitis at the wound (most common), respiratory infection in elderly patients with chronic lung disease, and invasive disease (bacteremia, meningitis, endocarditis) concentrated in neonates and immunocompromised/cirrhotic hosts — and has no human genetic etiology; pathogenesis is driven by bacterial virulence factors (capsule and LPS for immune evasion, and Pasteurella multocida toxin, which deamidates Gα proteins to activate Gq/11–RhoA–MAPK/mTORC1 signaling in veterinary atrophic rhinitis). It is treated first‑line with penicillin or amoxicillin‑clavulanate, and prevention rests on bite‑wound care, selective prophylaxis, rabies post‑exposure prophylaxis, and hygiene after animal contact.

Artifacts

Reference Validation

Checked with linkml-reference-validator 0.3.0rc1.

Outcome Count
References checked 25
Resolved 25
Unresolved (possible confabulation) 0
Unverifiable 0
References weighed for topical relevance 25
On topic 11
Off topic 0

All extracted references resolved successfully.

Term Validation

Checked with linkml-term-validator 0.4.5, through the ols: adapter.

Outcome Count
Terms checked 30
Resolved 29
Unresolved (possible confabulation) 1
Obsolete 0
Unverifiable 0
Terms whose name was checked 21
Terms named correctly 9
Terms named as a different term 8
Terms whose name is worth a second look 4

Terms the report names something else

These identifiers resolve, so nothing about them looks wrong, and the ontology calls them something unrelated to what the report calls them. That usually means the identifier is not the one the sentence needs:

  • MONDO:0005901 (2 mentions) - the report calls it "MONDO"; MONDO calls it pasteurellosis
  • HP:0031357 (1 mention) - the report calls it "Frequent in local infection"; HP calls it Glomeruloid hemangioma
  • HP:0100776 (1 mention) - the report calls it "Serious local complication"; HP calls it Recurrent pharyngitis
  • HP:0002754 (1 mention) - the report calls it "Local complication, esp. finger/hand after cat bite"; HP calls it Osteomyelitis
  • HP:0031864 (1 mention) - the report calls it "Sepsis"; HP calls it Bacteremia
  • NCIT:C716 (1 mention) - the report calls it "Penicillin"; NCIT calls it Omeprazole
  • NCIT:C263 (1 mention) - the report calls it "Doxycycline"; NCIT calls it Anticoagulant Agent
  • NCIT:C61735 (1 mention) - the report calls it "Amoxicillin‑Clavulanate"; NCIT calls it Dolasetron

Unresolved terms

These identifiers do not exist in an ontology that resolved other terms from the same prefix, so they were most likely invented:

  • HP:0031617 (1 mention), reported as "Rare, severe" - HP does not contain this term

Terms whose name is worth a second look

The report's name for these is recognisably related to the term's own name without being one of them. A loose paraphrase reads the same way as a citation of the wrong sibling term - and so does a related synonym, which the ontology records precisely because it names something adjacent rather than the same thing - so these are listed rather than judged:

  • GO:0007186 (1 mention) - the report calls it "GPCR signaling"; GO calls it G protein-coupled receptor signaling pathway, and lists "GPCR signaling pathway" among its other names
  • GO:0001503 (1 mention) - the report calls it "ossification, inhibited"; GO calls it ossification
  • GO:0006909 (1 mention) - the report calls it "phagocytosis, evaded"; GO calls it phagocytosis
  • GO:0005886 (1 mention) - the report calls it "plasma membrane", "Subcellular: Host plasma membrane"; GO calls it plasma membrane, and lists "cellular membrane" among its other names

Terms named inconsistently

The report gives these identifiers more than one name of its own:

  • GO:0005886 - called "plasma membrane", "Subcellular: Host plasma membrane"