Ulceroglandular Tularemia

Infectious Disease MONDO:0001413 Pathograph 6 Show in embeddings browser Tularemia

Ulceroglandular tularemia is the cutaneous and regional-lymph-node form of Francisella tularensis infection, usually acquired when an arthropod bite or handling of an infected animal inoculates bacteria into skin and local inflammation produces both an ulcer and draining lymphadenopathy.

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3
Pathophys.
4
Phenotypes
6
Pathograph
1
Medical Actions
1
Deep Research
🏷

Classifications

Harrison's Part
INFECTIOUS DISEASES
⚙

Pathophysiology

3
Cutaneous Francisella tularensis Inoculation
Arthropod bites or direct handling of infected animals inoculate F. tularensis through skin and initiate ulceroglandular tularemia.
skin UBERON:0002097 Uberon multi-species anatomy ontology (UBERON) Relation: this pathophysiological event occurs in this anatomical location This pathophysiological event occurs in skin, annotated with skin of body (UBERON:0002097). UBERON:0002097 is an anatomical location from the Uberon multi-species anatomy ontology.
Show evidence (1 reference)
PMID:37916743 SUPPORT REVIEW SYNTHESIS Other
"Ulcero-glandular and glandular forms are acquired by arthropod bite or handling of infected animals"
Supports arthropod bite and infected-animal handling as acquisition routes for ulceroglandular tularemia.
Macrophage Phagosomal Escape and Cytosolic Replication
F. tularensis uses its Francisella Pathogenicity Island-encoded type VI secretion system to escape the macrophage phagosome and replicate in the cytosol.
macrophage CL:0000235 Cell Ontology (CL) Relation: this pathophysiological event involves this cell type This pathophysiological event involves macrophage (CL:0000235). CL:0000235 is a cell type from the Cell Ontology.
symbiont-mediated suppression of host phagosome maturation GO:0141158 Gene Ontology (GO) Relation: this pathophysiological event involves this biological process This pathophysiological event involves symbiont-mediated suppression of host phagosome maturation (GO:0141158). GO:0141158 is a biological process from the Gene Ontology.
Show evidence (1 reference)
PMID:37941380 SUPPORT REVIEW SYNTHESIS Other
"The main virulence attribute of F. tularensis is the type 6 secretion system (T6SS) and its effectors that promote escape from the phagosome."
Identifies the T6SS-mediated phagosomal escape machinery that permits Francisella intracellular replication.
Regional Skin and Lymph Node Inflammation
Local cutaneous infection and inflammation in the draining lymphatic basin produce the ulcer and regional lymphadenopathy that define the ulceroglandular form.
inflammatory response GO:0006954 Gene Ontology (GO) Relation: this pathophysiological event involves this biological process This pathophysiological event involves increased inflammatory response (GO:0006954). GO:0006954 is a biological process from the Gene Ontology. ↑ INCREASED
skin UBERON:0002097 Uberon multi-species anatomy ontology (UBERON) Relation: this pathophysiological event occurs in this anatomical location This pathophysiological event occurs in skin, annotated with skin of body (UBERON:0002097). UBERON:0002097 is an anatomical location from the Uberon multi-species anatomy ontology. lymph node UBERON:0000029 Uberon multi-species anatomy ontology (UBERON) Relation: this pathophysiological event occurs in this anatomical location This pathophysiological event occurs in lymph node (UBERON:0000029). UBERON:0000029 is an anatomical location from the Uberon multi-species anatomy ontology.
Show evidence (1 reference)
PMID:3892222 SUPPORT Human Clinical
"In ulceroglandular tularemia the pathogen appears to be well contained by a vigorous inflammatory reaction."
Supports a vigorous local inflammatory reaction as the tissue process that contains ulceroglandular tularemia near the inoculation site and regional lymph nodes.
⬡

Pathograph

Use the checkboxes to hide or show graph categories. Hover nodes for evidence and cross-linked metadata.
Pathograph: causal mechanism network for Ulceroglandular Tularemia 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

4
Cardiovascular 2
Lymphadenopathy HP:0002716 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Lymphadenopathy (HP:0002716). HP:0002716 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:3892222 SUPPORT Human Clinical
"The location of ulcers and enlarged lymph nodes give a clue to the likely vector since lesions located on the upper extremities are more commonly associated with mammalian, and those of the head and neck and lower extremities with arthropod, vectors."
Supports enlarged regional lymph nodes as part of the ulceroglandular presentation.
Suppurative Lymphadenitis HP:0002840 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Lymphadenitis (HP:0002840). HP:0002840 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:16936340 SUPPORT Human Clinical
"Late initiation antibiotic therapy could not prevent suppuration and draining of the involved lymph nodes."
Supports suppurative draining lymphadenitis as a complication of tularemia when antibiotic therapy starts late.
Integument 1
Skin Ulcer HP:0200042 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Skin ulcer (HP:0200042). HP:0200042 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:3892222 SUPPORT Human Clinical
"The location of ulcers and enlarged lymph nodes give a clue to the likely vector since lesions located on the upper extremities are more commonly associated with mammalian, and those of the head and neck and lower extremities with arthropod, vectors."
Clinical case review describes ulcers as paired with enlarged lymph nodes in the ulceroglandular tularemia syndrome.
Metabolism 1
Fever HP:0001945 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Fever (HP:0001945). HP:0001945 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:37916743 SUPPORT REVIEW SYNTHESIS Other
"The disease has an acute onset, with the occurrence of fever (38-40 C), chills, fatigue, generalized myalgia, and headaches, resembling flu."
Supports fever as part of acute tularemia, including its ulceroglandular form.
💊

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: gentamicin NCIT:C519 NCI Thesaurus (NCIT) Relation: this treatment uses this therapeutic agent This treatment uses gentamicin (NCIT:C519). NCIT:C519 is a therapeutic agent from the NCI Thesaurus. ciprofloxacin NCIT:C375 NCI Thesaurus (NCIT) Relation: this treatment uses this therapeutic agent This treatment uses ciprofloxacin (NCIT:C375). NCIT:C375 is a therapeutic agent from the NCI Thesaurus. levofloxacin NCIT:C1586 NCI Thesaurus (NCIT) Relation: this treatment uses this therapeutic agent This treatment uses levofloxacin (NCIT:C1586). NCIT:C1586 is a therapeutic agent from the NCI Thesaurus. doxycycline NCIT:C457 NCI Thesaurus (NCIT) Relation: this treatment uses this therapeutic agent This treatment uses doxycycline (NCIT:C457). NCIT:C457 is a therapeutic agent from the NCI Thesaurus. streptomycin CHEBI:17076 Chemical Entities of Biological Interest (CHEBI) Relation: this treatment uses this therapeutic agent This treatment uses streptomycin (CHEBI:17076). CHEBI:17076 is a therapeutic agent from Chemical Entities of Biological Interest.
Platform: Small molecule
Aminoglycosides, fluoroquinolones, and tetracyclines are active treatment classes for tularemia across clinical manifestations.
Mechanism Target:
INHIBITS Macrophage Phagosomal Escape and Cytosolic Replication — Cell-penetrant tularemia antibiotics suppress intracellular F. tularensis replication, preventing continued amplification in the macrophage cytosol.
Show evidence (2 references)
PMID:38294108 SUPPORT REVIEW SYNTHESIS Human Clinical
"Aminoglycosides, fluoroquinolones, and tetracyclines are effective antimicrobials for treatment of tularemia, regardless of clinical manifestation."
Systematic review of case-level human tularemia data identifies several effective antibiotic classes across manifestations.
PMID:41026652 SUPPORT Other
"Notable changes include use of a treatment and prophylaxis framework; designation of fluoroquinolones (ciprofloxacin or levofloxacin) and doxycycline as first-line treatment options for outbreaks of any size; identification of third-tier treatment options when first-line and alternative..."
CDC guidance supports fluoroquinolones and doxycycline as first-line treatment options for human tularemia.
🔬

Diagnosis

2
Francisella Microagglutination Serology
Microagglutination serology confirms clinically compatible tularemia when the titer is at least 1/160.
Diagnostic Serology Testing NCIT:C217458 NCI Thesaurus (NCIT)
Show evidence (1 reference)
PMID:29642835 SUPPORT Human Clinical
"Francisella tularensis microagglutination test (MAT) was performed for all patients whose clinical symptoms were consistent with tularemia and MAT titers >= 1/160 were considered positive."
Documents the microagglutination titer threshold used to confirm clinically compatible tularemia.
Francisella PCR on lymph-node aspirate
Francisella-specific PCR can detect F. tularensis in aspirated suppurative lymph-node material.
Polymerase Chain Reaction NCIT:C17003 NCI Thesaurus (NCIT)
Show evidence (1 reference)
PMID:16936340 SUPPORT Human Clinical
"PCR for F. tularensis was positive in aspiration material of suppurated lymphadenitis of 7 patients."
Supports PCR testing of suppurative lymph-node aspirates as a molecular diagnostic route for tularemia.
📈

Progression

2
Incubation after cutaneous Francisella tularensis exposure
Incubation: 3-6 days
Tularemia incubates for 3-6 days after subcutaneous inoculation before evolving into an acute local and regional inflammatory syndrome.
Show evidence (1 reference)
PMID:3892222 SUPPORT Human Clinical
"During an incubation period of 3 to 6 days the host responds first with polymorphonuclear leukocytes and then macrophages."
Supports the incubation window immediately after subcutaneous F. tularensis inoculation.
Delayed-therapy suppuration of regional lymph nodes
Involved lymph nodes can suppurate and drain despite antibiotics when treatment is started late.
Show evidence (1 reference)
PMID:16936340 SUPPORT Human Clinical
"Late initiation antibiotic therapy could not prevent suppuration and draining of the involved lymph nodes."
Supports late regional-node suppuration as a clinically important stage of incompletely controlled tularemia.
📊

Prevalence

1
Tularemia cases reported in the literature, 1993-2023
Cases In Literature Unknown
Ulceroglandular disease was the single most common clinical form among 870 tularemia cases reported from 35 countries in a 1993-2023 systematic review.
Show evidence (1 reference)
PMID:38294108 SUPPORT REVIEW SYNTHESIS Human Clinical
"Cases were reported from 35 countries; more than half were from the United States, Turkey, or Spain. The most common clinical forms were ulceroglandular, oropharyngeal, glandular, and pneumonic disease."
Establishes ulceroglandular tularemia as the most common clinical form in a systematic review of published human tularemia cases.
🦠

Infectious Agent

1
Francisella tularensis
Intracellular Gram-negative coccobacillus that causes tularemia, including its ulceroglandular form.
Francisella tularensis NCBITaxon:263 NCBI Taxonomy (NCBITaxon)
Show evidence (1 reference)
PMID:37916743 SUPPORT REVIEW SYNTHESIS Other
"Tularemia caused by Gram-negative, coccobacillus bacterium, Francisella tularensis, is a highly infectious zoonotic disease."
Identifies F. tularensis as the Gram-negative bacterium that causes tularemia.
↔️

Transmission

1
Arthropod Bite or Infected-Animal Handling
Arthropod bites and direct handling of infected animals inoculate F. tularensis through the skin and produce the ulceroglandular form.
Show evidence (2 references)
PMID:37916743 SUPPORT REVIEW SYNTHESIS Other
"Ulcero-glandular and glandular forms are acquired by arthropod bite or handling of infected animals"
Supports arthropod bites and infected-animal handling as cutaneous acquisition routes for ulceroglandular tularemia.
PMID:32989563 SUPPORT REVIEW SYNTHESIS Other
"The disease spreads through vectors such as mosquitoes, horseflies, deer flies, and ticks. Humans can acquire the disease through direct contact of sick animals"
Review-level summary identifies arthropod vectors and infected-animal contact as tularemia transmission routes.
{ }

Source YAML

click to show
name: Ulceroglandular Tularemia
creation_date: "2026-09-25T15:38:49Z"
category: Infectious Disease
description: >-
  Ulceroglandular tularemia is the cutaneous and regional-lymph-node form of
  Francisella tularensis infection, usually acquired when an arthropod bite or
  handling of an infected animal inoculates bacteria into skin and local
  inflammation produces both an ulcer and draining lymphadenopathy.
disease_term:
  preferred_term: ulceroglandular tularemia
  term:
    id: MONDO:0001413
    label: ulceroglandular tularemia
parents:
- Tularemia
synonyms:
- Ulceroglandular tularaemia
notes: >-
  Lump/split decision: ulceroglandular tularemia is kept as a standalone entry
  because MONDO assigns it a distinct term (MONDO:0001413) and this entry
  specializes the cutaneous-inoculation route, ulcer with regional lymphadenitis,
  lymph-node suppuration, and ulceroglandular diagnostic workup that the
  Tularemia parent does not carry.
infectious_agent:
- name: Francisella tularensis
  infectious_agent_term:
    preferred_term: Francisella tularensis
    term:
      id: NCBITaxon:263
      label: Francisella tularensis
  description: >-
    Intracellular Gram-negative coccobacillus that causes tularemia, including its
    ulceroglandular form.
  evidence:
  - reference: PMID:37916743
    reference_title: "Tularemia - a re-emerging disease with growing concern."
    supports: SUPPORT
    evidence_source: OTHER
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Tularemia caused by Gram-negative, coccobacillus bacterium, Francisella
      tularensis, is a highly infectious zoonotic disease.
    explanation: >-
      Identifies F. tularensis as the Gram-negative bacterium that causes tularemia.
classifications:
  harrisons_chapter:
  - classification_value: INFECTIOUS_DISEASES
    evidence:
    - reference: PMID:37916743
      reference_title: "Tularemia - a re-emerging disease with growing concern."
      supports: SUPPORT
      evidence_source: OTHER
      quote_role: REVIEW_SYNTHESIS
      snippet: >-
        Tularemia caused by Gram-negative, coccobacillus bacterium, Francisella
        tularensis, is a highly infectious zoonotic disease.
      explanation: >-
        Ulceroglandular tularemia is a bacterial infectious form of tularemia.
pathophysiology:
- name: Cutaneous Francisella tularensis Inoculation
  description: >-
    Arthropod bites or direct handling of infected animals inoculate F. tularensis
    through skin and initiate ulceroglandular tularemia.
  biological_scale: TISSUE
  locations:
  - preferred_term: skin
    term:
      id: UBERON:0002097
      label: skin of body
  downstream:
  - target: Macrophage Phagosomal Escape and Cytosolic Replication
    causal_link_type: DIRECT
    description: >-
      F. tularensis enters macrophages and establishes an intracellular cytosolic
      niche after cutaneous inoculation.
  evidence:
  - reference: PMID:37916743
    reference_title: "Tularemia - a re-emerging disease with growing concern."
    supports: SUPPORT
    evidence_source: OTHER
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Ulcero-glandular and glandular forms are acquired by arthropod bite or handling
      of infected animals
    explanation: >-
      Supports arthropod bite and infected-animal handling as acquisition routes for
      ulceroglandular tularemia.
- name: Macrophage Phagosomal Escape and Cytosolic Replication
  description: >-
    F. tularensis uses its Francisella Pathogenicity Island-encoded type VI
    secretion system to escape the macrophage phagosome and replicate in the
    cytosol.
  biological_scale: CELLULAR
  cell_types:
  - preferred_term: macrophage
    term:
      id: CL:0000235
      label: macrophage
  biological_processes:
  - preferred_term: symbiont-mediated suppression of host phagosome maturation
    term:
      id: GO:0141158
      label: symbiont-mediated suppression of host phagosome maturation
  downstream:
  - target: Regional Skin and Lymph Node Inflammation
    causal_link_type: DIRECT
    description: >-
      Intracellular F. tularensis replication drives inflammatory injury in the
      inoculated skin and regional draining lymph nodes.
  evidence:
  - reference: PMID:37941380
    reference_title: "Pathogenicity and virulence of Francisella tularensis."
    supports: SUPPORT
    evidence_source: OTHER
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      The main virulence attribute of F. tularensis is the type 6 secretion system
      (T6SS) and its effectors that promote escape from the phagosome.
    explanation: >-
      Identifies the T6SS-mediated phagosomal escape machinery that permits
      Francisella intracellular replication.
- name: Regional Skin and Lymph Node Inflammation
  description: >-
    Local cutaneous infection and inflammation in the draining lymphatic basin
    produce the ulcer and regional lymphadenopathy that define the
    ulceroglandular form.
  biological_scale: TISSUE
  locations:
  - preferred_term: skin
    term:
      id: UBERON:0002097
      label: skin of body
  - preferred_term: lymph node
    term:
      id: UBERON:0000029
      label: lymph node
  biological_processes:
  - preferred_term: inflammatory response
    modifier: INCREASED
    term:
      id: GO:0006954
      label: inflammatory response
  downstream:
  - target: Skin Ulcer
    causal_link_type: DIRECT
    description: >-
      Inflammation at the cutaneous inoculation site produces a skin ulcer.
  - target: Lymphadenopathy
    causal_link_type: DIRECT
    description: >-
      Inflammation in the regional draining basin produces enlarged lymph nodes.
  evidence:
  - reference: PMID:3892222
    reference_title: "Tularemia: a 30-year experience with 88 cases."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      In ulceroglandular tularemia the pathogen appears to be well contained by a
      vigorous inflammatory reaction.
    explanation: >-
      Supports a vigorous local inflammatory reaction as the tissue process that
      contains ulceroglandular tularemia near the inoculation site and regional
      lymph nodes.
phenotypes:
- name: Skin Ulcer
  category: Dermatologic
  diagnostic: true
  phenotype_term:
    preferred_term: Skin ulcer
    term:
      id: HP:0200042
      label: Skin ulcer
  evidence:
  - reference: PMID:3892222
    reference_title: "Tularemia: a 30-year experience with 88 cases."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      The location of ulcers and enlarged lymph nodes give a clue to the likely
      vector since lesions located on the upper extremities are more commonly
      associated with mammalian, and those of the head and neck and lower
      extremities with arthropod, vectors.
    explanation: >-
      Clinical case review describes ulcers as paired with enlarged lymph nodes in
      the ulceroglandular tularemia syndrome.
- name: Lymphadenopathy
  category: Immune
  diagnostic: true
  phenotype_term:
    preferred_term: Lymphadenopathy
    term:
      id: HP:0002716
      label: Lymphadenopathy
  evidence:
  - reference: PMID:3892222
    reference_title: "Tularemia: a 30-year experience with 88 cases."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      The location of ulcers and enlarged lymph nodes give a clue to the likely
      vector since lesions located on the upper extremities are more commonly
      associated with mammalian, and those of the head and neck and lower
      extremities with arthropod, vectors.
    explanation: >-
      Supports enlarged regional lymph nodes as part of the ulceroglandular
      presentation.
- name: Suppurative Lymphadenitis
  category: Immune
  phenotype_term:
    preferred_term: Lymphadenitis
    term:
      id: HP:0002840
      label: Lymphadenitis
  description: >-
    Regional lymph nodes can suppurate and drain when therapy is started late.
  evidence:
  - reference: PMID:16936340
    reference_title: "Tularemia, a reemerging disease in northwest Turkey: epidemiological investigation and evaluation of treatment responses."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Late initiation antibiotic therapy could not prevent suppuration and draining
      of the involved lymph nodes.
    explanation: >-
      Supports suppurative draining lymphadenitis as a complication of tularemia
      when antibiotic therapy starts late.
- name: Fever
  category: Constitutional
  phenotype_term:
    preferred_term: Fever
    term:
      id: HP:0001945
      label: Fever
  evidence:
  - reference: PMID:37916743
    reference_title: "Tularemia - a re-emerging disease with growing concern."
    supports: SUPPORT
    evidence_source: OTHER
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      The disease has an acute onset, with the occurrence of fever (38-40 C),
      chills, fatigue, generalized myalgia, and headaches, resembling flu.
    explanation: >-
      Supports fever as part of acute tularemia, including its ulceroglandular
      form.
treatments:
- name: Antibiotic therapy
  description: >-
    Aminoglycosides, fluoroquinolones, and tetracyclines are active treatment
    classes for tularemia across clinical manifestations.
  treatment_term:
    preferred_term: antibiotic therapy
    term:
      id: NCIT:C15620
      label: Antibiotic Therapy
    therapeutic_agent:
    - preferred_term: gentamicin
      term:
        id: NCIT:C519
        label: Gentamicin
    - preferred_term: ciprofloxacin
      term:
        id: NCIT:C375
        label: Ciprofloxacin
    - preferred_term: levofloxacin
      term:
        id: NCIT:C1586
        label: Levofloxacin
    - preferred_term: doxycycline
      term:
        id: NCIT:C457
        label: Doxycycline
    - preferred_term: streptomycin
      term:
        id: CHEBI:17076
        label: streptomycin
  therapeutic_modality: SMALL_MOLECULE
  target_mechanisms:
  - target: Macrophage Phagosomal Escape and Cytosolic Replication
    treatment_effect: INHIBITS
    description: >-
      Cell-penetrant tularemia antibiotics suppress intracellular F. tularensis
      replication, preventing continued amplification in the macrophage cytosol.
  evidence:
  - reference: PMID:38294108
    reference_title: "Systematic Review: Clinical Features, Antimicrobial Treatment, and Outcomes of Human Tularemia, 1993-2023."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Aminoglycosides, fluoroquinolones, and tetracyclines are effective
      antimicrobials for treatment of tularemia, regardless of clinical manifestation.
    explanation: >-
      Systematic review of case-level human tularemia data identifies several
      effective antibiotic classes across manifestations.
  - reference: PMID:41026652
    reference_title: "Tularemia Antimicrobial Treatment and Prophylaxis: CDC Recommendations for Naturally Acquired Infections and Bioterrorism Response - United States, 2025."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      Notable changes include use of a treatment and prophylaxis framework;
      designation of fluoroquinolones (ciprofloxacin or levofloxacin) and
      doxycycline as first-line treatment options for outbreaks of any size;
      identification of third-tier treatment options when first-line and
      alternative antimicrobials are unavailable or contraindicated for certain
      patients; and recommendations for neonates, breastfeeding infants, lactating
      mothers, patients with immunocompromise, and geriatric patients.
    explanation: >-
      CDC guidance supports fluoroquinolones and doxycycline as first-line
      treatment options for human tularemia.
transmission:
- name: Arthropod Bite or Infected-Animal Handling
  description: >-
    Arthropod bites and direct handling of infected animals inoculate
    F. tularensis through the skin and produce the ulceroglandular form.
  evidence:
  - reference: PMID:37916743
    reference_title: "Tularemia - a re-emerging disease with growing concern."
    supports: SUPPORT
    evidence_source: OTHER
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Ulcero-glandular and glandular forms are acquired by arthropod bite or handling
      of infected animals
    explanation: >-
      Supports arthropod bites and infected-animal handling as cutaneous
      acquisition routes for ulceroglandular tularemia.
  - reference: PMID:32989563
    reference_title: "Tularemia: a re-emerging tick-borne infectious disease."
    supports: SUPPORT
    evidence_source: OTHER
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      The disease spreads through vectors such as mosquitoes, horseflies, deer
      flies, and ticks. Humans can acquire the disease through direct contact of
      sick animals
    explanation: >-
      Review-level summary identifies arthropod vectors and infected-animal
      contact as tularemia transmission routes.
prevalence:
- population: Tularemia cases reported in the literature, 1993-2023
  measure_type: CASES_IN_LITERATURE
  prevalence_class: UNKNOWN
  notes: >-
    Ulceroglandular disease was the single most common clinical form among 870
    tularemia cases reported from 35 countries in a 1993-2023 systematic review.
  evidence:
  - reference: PMID:38294108
    reference_title: "Systematic Review: Clinical Features, Antimicrobial Treatment, and Outcomes of Human Tularemia, 1993-2023."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    quote_role: REVIEW_SYNTHESIS
    snippet: >-
      Cases were reported from 35 countries; more than half were from the United
      States, Turkey, or Spain. The most common clinical forms were
      ulceroglandular, oropharyngeal, glandular, and pneumonic disease.
    explanation: >-
      Establishes ulceroglandular tularemia as the most common clinical form in
      a systematic review of published human tularemia cases.
progression:
- phase: Incubation after cutaneous Francisella tularensis exposure
  incubation_days: 3-6
  notes: >-
    Tularemia incubates for 3-6 days after subcutaneous inoculation before
    evolving into an acute local and regional inflammatory syndrome.
  evidence:
  - reference: PMID:3892222
    reference_title: "Tularemia: a 30-year experience with 88 cases."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      During an incubation period of 3 to 6 days the host responds first with
      polymorphonuclear leukocytes and then macrophages.
    explanation: >-
      Supports the incubation window immediately after subcutaneous F. tularensis
      inoculation.
- phase: Delayed-therapy suppuration of regional lymph nodes
  notes: >-
    Involved lymph nodes can suppurate and drain despite antibiotics when
    treatment is started late.
  evidence:
  - reference: PMID:16936340
    reference_title: "Tularemia, a reemerging disease in northwest Turkey: epidemiological investigation and evaluation of treatment responses."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Late initiation antibiotic therapy could not prevent suppuration and draining
      of the involved lymph nodes.
    explanation: >-
      Supports late regional-node suppuration as a clinically important stage of
      incompletely controlled tularemia.
diagnosis:
- name: Francisella Microagglutination Serology
  description: >-
    Microagglutination serology confirms clinically compatible tularemia when the
    titer is at least 1/160.
  diagnosis_term:
    preferred_term: Diagnostic Serology Testing
    term:
      id: NCIT:C217458
      label: Diagnostic Serology Testing
  evidence:
  - reference: PMID:29642835
    reference_title: "[Evaluation of epidemiologic and clinical features of oropharyngeal tularemia patients in the Eastern Anatolia Region of Turkey]."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Francisella tularensis microagglutination test (MAT) was performed for all
      patients whose clinical symptoms were consistent with tularemia and MAT
      titers >= 1/160 were considered positive.
    explanation: >-
      Documents the microagglutination titer threshold used to confirm clinically
      compatible tularemia.
- name: Francisella PCR on lymph-node aspirate
  description: >-
    Francisella-specific PCR can detect F. tularensis in aspirated suppurative
    lymph-node material.
  diagnosis_term:
    preferred_term: Polymerase Chain Reaction
    term:
      id: NCIT:C17003
      label: Polymerase Chain Reaction
  evidence:
  - reference: PMID:16936340
    reference_title: "Tularemia, a reemerging disease in northwest Turkey: epidemiological investigation and evaluation of treatment responses."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      PCR for F. tularensis was positive in aspiration material of suppurated
      lymphadenitis of 7 patients.
    explanation: >-
      Supports PCR testing of suppurative lymph-node aspirates as a molecular
      diagnostic route for tularemia.
📚

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.

OpenScientist ▸
Ulceroglandular Tularemia: A Comprehensive Disease Characteristics Report
openscientist-autonomous 24 citations 2026-09-25T09:19:11.774159

Ulceroglandular Tularemia: A Comprehensive Disease Characteristics Report

Disease: Ulceroglandular Tularemia MONDO ID: MONDO:0001413 Category: Infectious Disease (zoonotic, bacterial) Causative agent: Francisella tularensis (NCBITaxon:263) Evidence base: Literature-derived (aggregated disease-level resources, systematic reviews, CDC surveillance, and mechanistic studies in cell/mouse models). No individual patient (EHR) data were used.


Summary

Ulceroglandular tularemia is the most common clinical form of tularemia, an acute zoonotic infection caused by Francisella tularensis, a small, aerobic, Gram-negative, facultative intracellular coccobacillus and one of the most infectious bacterial pathogens known (infectious dose as low as ~10 organisms). The ulceroglandular form arises specifically from cutaneous inoculation of the organism — most often through the bite of an infected arthropod (ticks such as Dermacentor variabilis and Amblyomma americanum, deer flies, and mosquitoes) or through direct handling of infected animals (lagomorphs and rodents). After a 3–6 day incubation period, patients develop an acute febrile illness with a papule that ulcerates at the site of inoculation (skin ulcer, HP:0200042) accompanied by painful regional lymphadenopathy (HP:0002716). This is fundamentally an infectious, not a genetic, disease: there are no causal human genes, pathogenic variants, or heritable susceptibility loci, so the "genetic/molecular" content of this report concerns the bacterial virulence determinants rather than host germline genetics.

The pathophysiology is driven by the bacterium's ability to survive and replicate inside host phagocytes. The Francisella Pathogenicity Island (FPI), which encodes a Type VI secretion system (T6SS), enables the bacterium to escape the phagosome and replicate freely in the macrophage cytosol, ultimately triggering inflammasome activation and host-cell death. This intracellular lifestyle explains why host defense is predominantly cell-mediated (T-cell/IFN-γ dependent): granulocytes cannot kill the organism without opsonizing antibody, and protective immunity emerges as a vigorous T-lymphocyte response 1–2 weeks after infection, with humoral antibody appearing at 2–3 weeks and serving primarily a diagnostic role.

Clinically, ulceroglandular tularemia has a good prognosis because the pathogen is well contained by a vigorous local inflammatory reaction, contrasting with the typhoidal syndrome, which has fewer localizing signs, more pneumonia, and higher untreated mortality. Diagnosis relies on serology (microagglutination titer ≥1/160 or a four-fold rise) and PCR of ulcer swabs or lymph-node aspirates; culture is hazardous and requires BSL-3 containment. Treatment with aminoglycosides (streptomycin, gentamicin — first-line), fluoroquinolones (ciprofloxacin), or tetracyclines (doxycycline) yields case-fatality rates below ~1.2%. There is no licensed vaccine; prevention rests on exposure avoidance and, after high-risk exposures, post-exposure antibiotic prophylaxis. F. tularensis is classified as a Tier-1 Select Agent / Category A bioterrorism agent owing to its low infectious dose and aerosol infectivity.


Section 1 — Disease Information

Overview. Ulceroglandular tularemia is the cutaneous-inoculation form of tularemia, a zoonosis caused by Francisella tularensis. Across a systematic review of 870 cases spanning 1993–2023 in 35 countries, ulceroglandular disease was the single most common clinical form, followed by oropharyngeal, glandular, and pneumonic disease — "The most common clinical forms were ulceroglandular, oropharyngeal, glandular, and pneumonic disease" (PMID: 38294108). It is defined by the route of infection — cutaneous inoculation producing a local ulcer plus regional lymphadenitis (PMID: 32989563).

Key identifiers. - MONDO: MONDO:0001413 (ulceroglandular tularemia) - MeSH: Tularemia (D014406) - ICD-10: A21.0 (Ulceroglandular tularaemia); parent A21 (Tularaemia) - ICD-11: 1B94 (Tularaemia) - SNOMED CT: Ulceroglandular tularemia (disorder) - OMIM / Orphanet: Not applicable as a heritable disorder (infectious disease; no OMIM Mendelian entry).

Synonyms / alternative names. Ulceroglandular tularaemia (British spelling); "rabbit fever," "deer-fly fever," "Ohara disease," "Francis disease," and "Pahvant Valley plague" are historical synonyms for tularemia broadly, of which the ulceroglandular form is the classic presentation.

Information source. The evidence is derived from aggregated disease-level resources — systematic reviews, national surveillance (CDC NNDSS), and case series — rather than individual EHR-derived patient records.


Section 2 — Etiology

Primary cause (infectious). The disease is caused entirely by infection with Francisella tularensis. There is no genetic (host) etiology; heritable variants, susceptibility loci, and modifier genes are not applicable. Two clinically important subspecies exist: subsp. tularensis (type A, most virulent, North America) and subsp. holarctica (type B, milder, Northern Hemisphere including Europe and Asia) (PMID: 32989563).

Environmental / exposure risk factors. - Arthropod bites — ticks (Dermacentor variabilis, Amblyomma americanum), deer flies, horseflies, and mosquitoes. "The disease spreads through vectors such as mosquitoes, horseflies, deer flies, and ticks" (PMID: 32989563); the principal US tick vectors are D. variabilis and A. americanum (PMID: 40788927). - Handling infected animals / carcasses — "The common route of transmission in Central Europe is handling infected animals" (PMID: 34990926). - Occupational / recreational — hunters, trappers, farmers, landscapers, veterinarians, and laboratory workers. - Demographic — highest incidence in children aged 5–9 years and older adult males (bimodal), and markedly elevated among American Indian/Alaska Native persons in the US (PMID: 39736154).

Protective factors. No genetic protective variants are described (not a host-genetic disease). Environmental protection is behavioral: use of insect repellents, protective clothing, tick checks, and gloves when handling animal carcasses (see Section 13).

Gene–environment interactions. Not applicable in the human-host genetic sense. The relevant "gene–environment" axis is the bacterial genotype (type A vs type B; FPI integrity) interacting with the route and dose of exposure to determine clinical form and severity.


Section 3 — Phenotypes

The ulceroglandular syndrome is a localized-plus-regional presentation following a 3–6 day incubation.

Phenotype Type HPO term Frequency / notes
Fever Symptom / sign HP:0001945 Near-universal at onset; acute (PMID: 3892222)
Skin ulcer at inoculation site Physical manifestation HP:0200042 Defining lesion; papule → ulcer (PMID: 32989563)
Regional lymphadenopathy (painful) Clinical sign HP:0002716 / HP:0002840 Defining feature; can suppurate/drain (PMID: 16936340)
Cervical lymphadenopathy (pediatric) Clinical sign HP:0002218 Reported after tick bite in young children (PMID: 34990926)
Suppurative lymphadenitis Complication — Especially with delayed therapy (PMID: 16936340)
Secondary skin eruptions (erythema nodosum, Sweet syndrome) Physical manifestation HP:0012219 / — Secondary manifestations in ~15% of tularemia overall; more common in oropharyngeal form (PMID: 29761532)

Characteristics. - Age of onset: Any age; the disease is acquired, not congenital. US incidence peaks in children 5–9 and older adults (PMID: 39736154). - Severity: Generally mild-to-moderate for the ulceroglandular form (type B predominant in Europe); good prognosis. "In ulceroglandular tularemia the pathogen appears to be well contained by a vigorous inflammatory reaction. Pneumonia is less common and the patient's prognosis is good" (PMID: 3892222). - Progression: Acute onset; resolving with therapy; lymphadenopathy may persist or suppurate. - Quality of life: Acute febrile illness with painful lymphadenopathy causes short-term functional impairment; suppurative nodes may require drainage. Long-term sequelae are uncommon with timely treatment. (No disease-specific EQ-5D/SF-36 data identified — knowledge gap.)


Section 4 — Genetic / Molecular Information

Host genetics: not applicable. Ulceroglandular tularemia is an acquired infection with no causal human genes, pathogenic germline/somatic variants, modifier genes, epigenetic lesions, or chromosomal abnormalities. ClinVar/OMIM/HGMD entries do not apply.

Bacterial molecular determinants (the relevant "molecular information"). Virulence depends on the Francisella Pathogenicity Island (FPI), which encodes a Type VI secretion system (T6SS). "Required for these processes is the Francisella Pathogenicity Island (FPI), which encodes a Type VI secretion system (T6SS) that is active during intracellular infection" (PMID: 27830989). Key FPI genes include iglB, iglC, iglE, iglG, pdpC, dotU, and vgrG. Deletion mutants (ΔiglB, ΔiglE, ΔpdpC) fail to escape the phagosome, do not replicate intracellularly, and are markedly attenuated in the mouse model (PMID: 27830989; PMID: 23356941; PMID: 23403609). PdpC additionally has a regulatory role over iglABCD expression, and its deletion abolishes phagosomal escape and cytopathogenicity (PMID: 27477000).


Section 5 — Environmental Information

  • Environmental factors: The organism persists in the environment (water, soil, animal carcasses) and is maintained in an enzootic cycle. Tularemia is a Holarctic zoonosis (PMID: 31600457).
  • Lifestyle factors: Outdoor occupational/recreational activities (hunting, trapping, farming, landscaping) increase exposure. "Humans can acquire the disease through direct contact of sick animals, consumption of infected animals, drinking or direct contact of contaminated water, and inhalation of bacteria-loaded aerosols" (PMID: 32989563) — the latter routes are more relevant to oropharyngeal/pneumonic forms.
  • Infectious agent (NCBI Taxonomy): Francisella tularensis (NCBITaxon:263). Subspecies: subsp. tularensis (type A) and subsp. holarctica (type B, NCBITaxon:264). Type B predominates in Europe and causes the ulceroglandular cases reported from Poland and the Czech Republic (PMID: 34696556; PMID: 32989563).

Section 6 — Mechanism / Pathophysiology

Causal chain (initiating exposure → clinical manifestation)

  1. Cutaneous inoculation of F. tularensis (~10 organisms) via arthropod bite or contact with an infected animal leads to local bacterial deposition in the skin and subcutaneous tissue. "Francisella tularensis is an extremely virulent pathogen capable of initiating infection with as few as 10 organisms inoculated subcutaneously" (PMID: 3892222). (Demonstrated.)
  2. Local deposition results in uptake by resident and recruited phagocytes — "the host responds first with polymorphonuclear leukocytes and then macrophages" (PMID: 3892222). (Demonstrated.)
  3. Inside the phagocyte, the FPI-encoded T6SS mediates escape from the phagosome into the cytosol. "Genes in the FPI are required for F. tularensis to escape from the phagosome and replicate in the cytosol" (PMID: 23403609). (Demonstrated — FPI mutants fail to escape.)
  4. Cytosolic localization leads to rapid intracellular replication — "effective intramacrophage proliferation, which is preceded by phagosomal escape into the cytosol" (PMID: 23356941). (Demonstrated.)
  5. Intracellular infection induces macrophage PGE2 synthesis (dampening adaptive immunity) and inflammasome activation (IL-1β / LDH release). (Demonstrated in macrophage models; PMID: 23403609.)
  6. Inflammasome activation and cytosolic burden result in host-cell death — "ultimately causing inflammasome activation and host cell death" (PMID: 27830989) — releasing bacteria to infect neighboring cells and draining to regional lymph nodes. (Demonstrated.)
  7. Bacterial drainage to regional nodes leads to a vigorous local inflammatory / granulomatous response — the clinical skin ulcer + regional lymphadenopathy, sometimes progressing to suppurative lymphadenitis. (Inferred from clinical–pathological correlation.)
  8. Branch: In the ulceroglandular form the pathogen is well contained locally → good prognosis. "In typhoidal disease there are few localizing signs; pneumonia is more common; and the mortality without therapy is much higher, suggesting that the host response is somehow deficient" (PMID: 3892222). (Inferred from syndrome comparison.)
  9. Adaptive control requires a cell-mediated (T-cell/IFN-γ) response appearing 1–2 weeks post-infection; humoral antibody at 2–3 weeks is largely diagnostic. (Demonstrated.)

Detail by category

  • Cellular processes (GO): phagocytosis (GO:0006909); phagosomal escape; intracellular replication; inflammasome/pyroptosis (GO:0070269); inflammatory response (GO:0006954).
  • Immune involvement: Cell-mediated immunity is dominant. "Granulocytes are unable to kill the pathogen without opsonizing antibody leaving cellular immunity to play the major role in host defense" (PMID: 3892222). Both natural infection and LVS vaccination drive multifunctional T-cell responses (PMID: 42238599). In models, perforin/granzyme cytotoxicity and NK-cell activity contribute to protection (PMID: 22493083).
  • Protein dysfunction / secretion: T6SS structural and effector proteins (IglB, IglE, PdpC, VgrG) mediate the secretion required for escape; N-terminal residues of IglE critically control T6SS-mediated secretion (PMID: 27830989).
  • Tissue damage mechanisms: host-cell death (pyroptosis/necrosis), suppuration/abscess formation in lymph nodes, granulomatous inflammation.
  • Cell types (CL): macrophage (CL:0000235), monocyte-derived macrophage, neutrophil (CL:0000775), T lymphocyte (CL:0000084), NK cell (CL:0000623).

Section 7 — Anatomical Structures Affected

  • Primary organs / sites (UBERON): skin (UBERON:0002097) at the inoculation site — the ulcer; and regional lymph nodes (UBERON:0000029) draining that site (e.g., axillary, inguinal, epitrochlear; cervical in children).
  • Secondary involvement: In disseminated/severe disease, spleen (UBERON:0002106) and liver (UBERON:0002107) can be affected (demonstrated in mouse models with pathological changes in spleen and liver, PMID: 27477000); lungs (UBERON:0002048) in pneumonic progression (less common in ulceroglandular).
  • Body systems: integumentary and lymphatic/immune systems primarily; reticuloendothelial system secondarily.
  • Tissue / cell level: epithelial and connective tissue of skin; lymphoid tissue; principal cellular niche is the macrophage (CL:0000235).
  • Subcellular level (GO cellular component): phagosome / Francisella-containing phagosome (GO:0045335) and host cytosol (GO:0005829) — the replicative compartment.
  • Localization / lateralization: Unilateral, following the site of the bite/inoculation; lymphadenopathy is typically ipsilateral to the ulcer.

Section 8 — Temporal Development

  • Onset: Acquired at any age; incubation 3–6 days after subcutaneous inoculation (PMID: 3892222). Onset is acute.
  • Progression / stages: (i) local papule → ulcer; (ii) regional painful lymphadenopathy; (iii) possible suppuration/drainage of involved nodes, particularly when antibiotics are started late — "Late initiation antibiotic therapy could not prevent suppuration and draining of the involved lymph nodes" (PMID: 16936340).
  • Immune timeline: T-cell response detectable at 1–2 weeks; antibody at 2–3 weeks (PMID: 3892222).
  • Course / duration: Self-limiting to resolving with therapy; generally not chronic or lifelong. Prognosis good for the ulceroglandular form.
  • Critical intervention window: Early antibiotic initiation is the key intervention; late therapy cannot always prevent lymph-node suppuration (PMID: 16936340).

Section 9 — Inheritance and Population

  • Inheritance: Not applicable — infectious, non-heritable. Penetrance, expressivity, anticipation, mosaicism, founder effects, consanguinity, and carrier frequency are all not applicable.
  • Epidemiology (US): Average annual incidence 0.064/100,000 (2011–2022), 56% higher than 2001–2010 (0.041). "During 2011-2022, a total of 47 states reported 2,462 tularemia cases, but four central states (Arkansas, Kansas, Missouri, and Oklahoma) accounted for 50% of all reported cases" (PMID: 39736154). During 2001–2010, "a total of 1,208 cases were reported (median: 126.5 cases per year; range: 90-154)" (PMID: 24280916). Reported from all US states except Hawaii.
  • Age / sex: Bimodal — "Incidence was highest among children aged 5-9 years (0.083 per 100,000 population) and adult males aged 65-84 years (range = 0.133-0.161)" (PMID: 39736154). Male predominance.
  • Race/ethnicity: "Incidence among American Indian or Alaska Native persons (0.260) was approximately five times that among White persons (0.057)" (PMID: 39736154).
  • Geographic distribution: Holarctic (Northern Hemisphere). In Europe, subsp. holarctica (type B) predominates; the Czech Republic reports up to ~100 cases/yr (225 and 222 in the 1998–1999 epidemic years) (PMID: 32989563). Ulceroglandular is the most common form reported from Poland (PMID: 34696556); oropharyngeal predominates in Turkey (water-borne outbreaks).

Section 10 — Diagnostics

  • Serology (mainstay): microagglutination test (MAT), titer ≥1/160 positive — "microagglutination test (MAT) was performed for all patients whose clinical symptoms were consistent with tularemia and MAT titers ≥ 1/160 were considered positive" (PMID: 29642835); some centers use ≥1:640 in outbreak settings (PMID: 21341160). A four-fold rise between acute and convalescent sera is confirmatory. Antibody appears at 2–3 weeks.
  • PCR / NAAT: Positive on lymph-node aspiration material and ulcer swabs — "PCR for F. tularensis was positive in aspiration material of suppurated lymphadenitis of 7 patients" (PMID: 16936340). RD1-primer PCR can subtype to subsp. holarctica (PMID: 21341160).
  • Direct fluorescent antibody (DFA): Applicable to lymph aspirates.
  • Culture: Definitive but hazardous — requires BSL-3 containment; low sensitivity from routine specimens (cultures often negative) (PMID: 21341160).
  • Routine labs: Nonspecific (mild WBC changes, elevated ESR/CRP) (PMID: 21341160).
  • Genetic / omics testing: Not applicable for host diagnosis (no human genetic testing, karyotyping, CMA, or repeat-expansion testing). Pathogen genomics is used for subtyping/epidemiology.
  • Differential diagnosis: cat-scratch disease, pyogenic bacterial lymphadenitis, plague, cutaneous anthrax, sporotrichosis, atypical mycobacterial infection, syphilitic chancre, and (in the neck) tonsillopharyngitis / neck mass of unknown origin (PMID: 34696556; PMID: 21341160). Diagnosis is often delayed because of low prevalence and nonspecific features.

Section 11 — Outcome / Prognosis

  • Prognosis: Good for the ulceroglandular form — the pathogen is well contained by a vigorous inflammatory reaction, pneumonia is less common, and outcomes are favorable (PMID: 3892222).
  • Case fatality: Low with treatment — "Among patients treated with aminoglycosides (n = 452 [52%]), fluoroquinolones (n = 339 [39%]), or tetracyclines (n = 419 [48%]), the fatality rate was 0.7%, 0.9%, and 1.2%, respectively" (PMID: 38294108). US surveillance case-fatality is typically <2%.
  • Complications: Suppurative lymphadenitis with drainage (favored by late therapy) (PMID: 16936340); rarely dissemination.
  • Prognostic factors: Timeliness of antibiotic initiation is the key modifiable factor; clinical form (ulceroglandular better than typhoidal/pneumonic) and subspecies (type B milder than type A) shape outcome.

Section 12 — Treatment

Drug class Examples Role Fatality in review NCIT
Aminoglycosides Streptomycin, gentamicin First-line / treatment of choice 0.7% (n=452) NCIT:C255 (Aminoglycoside)
Fluoroquinolones Ciprofloxacin Effective alternative / PEP 0.9% (n=339) NCIT:C1728 (Ciprofloxacin)
Tetracyclines Doxycycline Alternative / PEP 1.2% (n=419) NCIT:C641 (Doxycycline)
  • First-line: Streptomycin or gentamicin (aminoglycosides) are the treatment of choice (PMID: 29183485; PMID: 41026652). "Quinolones, tetracyclines, or aminoglycosides are frequently used in the treatment of tularemia" (PMID: 32989563).
  • Timing matters: Late initiation cannot always prevent lymph-node suppuration and drainage (PMID: 16936340).
  • Surgical/interventional: Incision and drainage or excision of suppurative nodes may be needed as adjunct.
  • Advanced/targeted/gene/cell/RNA therapies: Not applicable.
  • Pharmacogenomics: Not applicable (no host-genotype-guided dosing established for this indication).
  • Treatment algorithm: Empiric aminoglycoside for confirmed/strongly suspected disease; doxycycline or ciprofloxacin for milder disease or when aminoglycosides are contraindicated; drainage for suppurative nodes; CDC 2025 guidance governs both naturally acquired and bioterrorism-response treatment (PMID: 41026652).

Section 13 — Prevention

  • Primary prevention: Avoid arthropod bites (repellents, protective clothing, tick checks) and practice safe handling of animals/carcasses (gloves). Vector-ecology interventions (e.g., prescribed fire affecting tick populations) are studied (PMID: 40788927).
  • Immunization: No licensed vaccine. "No licensed vaccine is available in the prophylaxis of tularemia and this is need of the time and high-priority research area" (PMID: 32989563). The Live Vaccine Strain (LVS) remains investigational (PMID: 42238599).
  • Post-exposure prophylaxis (PEP): Doxycycline or ciprofloxacin (≈14 days) — "Streptomycin, gentamicin, doxycycline or ciprofloxacin are recommended for post-exposure prophylaxis" (PMID: 15677845); CDC 2025 guidance details PEP after high-risk exposures (PMID: 41026652).
  • Public-health context: F. tularensis is a Tier-1 Select Agent / Category A bioterrorism agent — "Because F. tularensis has a low infectious inoculum, it is classified as a potential bioterrorism agent that could infect thousands of persons if intentionally released" (PMID: 41026652); tularemia is a notifiable disease in the US.
  • Genetic screening / counseling: Not applicable.

Section 14 — Other Species / Natural Disease

  • Taxonomy of hosts: Broad — "Tularemia is a bacterial disease of humans, wild, and domestic animals" (PMID: 32989563). Natural reservoirs are lagomorphs (rabbits, hares) and rodents; arthropods (ticks, deer flies, mosquitoes) act as vectors/maintenance hosts. Tularemia is a Holarctic zoonosis (PMID: 31600457).
  • Veterinary relevance: Causes natural disease and die-offs in lagomorphs and rodents ("rabbit fever"); cats and dogs may become infected and transmit to humans.
  • Comparative biology: Intracellular pathogenesis (FPI/T6SS-dependent macrophage infection) is conserved across mammalian hosts; this conservation underlies the utility of animal models.
  • Zoonotic transmission: Strongly zoonotic — humans are incidental hosts infected via vector bite, animal contact, ingestion, or inhalation. Human-to-human transmission does not occur.

Section 15 — Model Organisms

  • Principal model — mouse (Mus musculus, NCBITaxon:10090): FPI/T6SS mutants (ΔiglB, ΔiglE, ΔpdpC) show "incomplete phagosomal escape, and marked attenuation in the mouse model" (PMID: 23356941) and "showed marked attenuation in the mouse model" (PMID: 27830989). C57BL/6 mice are used to assess FPI-mutant pathology in spleen/liver (PMID: 27477000). Mouse inhalation models are used to assess vaccine efficacy and identify transcriptional/translational biomarkers (PMID: 35056485).
  • In vitro models: Macrophage cell lines J774 and THP-1, and human monocyte-derived macrophages (HMDM) (PMID: 27477000); HeLa-FcγRII epithelial model for F. novicida (PMID: 40748985).
  • Surrogate strains: F. tularensis LVS and F. novicida are widely used attenuated surrogates for mechanistic and vaccine studies (PMID: 22493083).
  • Phenotype recapitulation: Mouse models faithfully reproduce intracellular replication, dissemination to spleen/liver, and lethality, and are the standard for vaccine-efficacy testing.
  • Limitations: Attenuated surrogates (LVS, F. novicida) do not fully model virulent type A disease; localized ulceroglandular skin pathology is less emphasized than systemic/pulmonary endpoints in murine work.

Mechanistic Model / Interpretation

 Arthropod bite / animal contact  (~10 organisms)
      │  (cutaneous inoculation)
      ▼
   Local deposition in skin ──► phagocyte uptake (macrophage/PMN)
      │
      ▼
   FPI / T6SS  ──►  PHAGOSOMAL ESCAPE  ──►  cytosolic replication
      │                                   │
      ▼                                   ▼
   PGE2 (immune dampening)          Inflammasome (IL-1β) + host-cell death
      │                                   │
      └───────────────┬───────────────────┘
                      ▼
Drainage to regional lymph node → granulomatous / suppurative
lymphadenitis  +  skin ULCER at entry site
                      │
     ┌────────────────┴─────────────────┐
     ▼ (ulceroglandular)                ▼ (typhoidal)
   Well contained → GOOD prognosis     Poor containment → pneumonia,
   (T-cell/IFN-γ control at 1–2 wk)    higher untreated mortality

The unifying insight is that a single molecular machine (the FPI-encoded T6SS) converts F. tularensis from an ingested particle into a cytosolic replicating pathogen, and that the balance between vigorous local cell-mediated immunity and bacterial containment determines whether disease stays localized (ulceroglandular, good outcome) or disseminates (typhoidal/pneumonic, worse outcome). Because control is cell-mediated and antibody is comparatively unhelpful for killing, both diagnosis (serology at 2–3 weeks) and vaccine development (needing T-cell immunity) are shaped by this biology.


Evidence Base

PMID Title (abbrev.) Supports
38294108 Systematic Review: Clinical Features, Treatment, Outcomes 1993–2023 Ulceroglandular = most common form; treatment-specific fatality; low infectious dose
32989563 Tularemia: a re-emerging tick-borne disease Clinical forms; transmission; antibiotics; no vaccine; zoonosis
3892222 Tularemia: 30-year experience, 88 cases Incubation 3–6 d; two-syndrome framework; cell-mediated immunity; good prognosis
27830989 IglE controls T6SS secretion FPI/T6SS → phagosomal escape → cytosolic replication; mouse attenuation
23356941 LVS ΔpdpC phenotype Intramacrophage proliferation prerequisite; mouse-model attenuation
23403609 Francisella mutants failing PGE2 induction FPI required for escape/replication; PGE2 immune modulation
27477000 ΔpdpC/ΔiglG characterization HMDM/mouse models; spleen/liver pathology; PdpC regulation of iglABCD
16936340 Tularemia in NW Turkey Late therapy → suppuration; PCR of node aspirates
29642835 Oropharyngeal tularemia, E. Anatolia MAT ≥1/160 diagnostic threshold
39736154 Tularemia — US, 2011–2022 US incidence, geography, age/sex, race disparities
24280916 Tularemia — US, 2001–2010 Earlier surveillance; bimodal age/sex
34990926 Cervical lymphadenopathy in children after tick bite Pediatric ulceroglandular; animal-handling route in Europe
42238599 Tularemia & vaccination T-cell responses LVS/natural infection → multifunctional T cells
15677845 / 29183485 Bichat guidelines First-line aminoglycosides; PEP with doxycycline/ciprofloxacin
41026652 CDC 2025 treatment/prophylaxis Bioterrorism classification; treatment & PEP recommendations
40788927 Prescribed fire & tick vectors Principal US tick vectors (D. variabilis, A. americanum)
22493083 Perforin/granzyme protection Cytotoxic effector immunity in vaccine protection (model)
35056485 Vaccine biomarkers, mouse inhalation Mouse inhalation model for vaccine efficacy
29761532 Dermatological aspects, 168 cases Secondary skin manifestations; form distribution
31600457 Ecology of Francisella Holarctic zoonosis; reservoir ecology

Limitations and Knowledge Gaps

  1. Not a genetic disease. Sections on host causal genes, pathogenic variants, inheritance, penetrance, epigenetics, and genetic testing are not applicable; the report reframes "molecular" content around bacterial virulence.
  2. Form-specific data are sparse. Much clinical data aggregate all tularemia; some cited series (Turkey) are oropharyngeal-predominant, so treatment/outcome numbers are partly extrapolated to the ulceroglandular form.
  3. Quality-of-life data absent. No EQ-5D/SF-36/PROMIS instruments have been applied specifically to ulceroglandular tularemia.
  4. Human mechanistic evidence is indirect. Core pathogenesis (FPI/T6SS, phagosomal escape) rests on cell-culture and mouse studies; direct human histopathological causal steps are inferred.
  5. Diagnostic thresholds vary (MAT ≥1/160 vs ≥1:640) across labs/outbreaks.
  6. Vaccine gap. No licensed vaccine; correlates of protective immunity in humans remain incompletely defined.

Proposed Follow-up Experiments / Actions

  1. Form-stratified outcome analysis — mine the 870-case systematic-review dataset for ulceroglandular-only fatality, suppuration rate, and time-to-treatment thresholds.
  2. Prospective PROs — apply EQ-5D/SF-36 in an endemic-region cohort to quantify acute and residual QoL impact of ulceroglandular disease.
  3. Time-to-antibiotic study — formally test whether treatment within a defined window (e.g., ≤7 days) prevents lymph-node suppuration.
  4. Host-immunogenetics — although not Mendelian, explore whether host innate-immune polymorphisms (inflammasome, IFN-γ pathway) modulate ulceroglandular severity via candidate-gene/GWAS approaches.
  5. Vaccine correlates — leverage multifunctional T-cell signatures (PMID: 42238599) and mouse-model biomarkers (PMID: 35056485) to define human protective correlates for LVS-successor vaccines.
  6. Skin-model development — an intradermal small-animal model recapitulating the ulcer-plus-node phenotype would fill the gap left by systemic/pulmonary-focused mouse work.

Report compiled from 10 confirmed findings across 5 investigation iterations and 38 reviewed papers. Evidence types: human clinical (case series, systematic reviews, national surveillance), model organism (mouse), and in vitro (macrophage cell lines/HMDM).

Artifacts

Reference Validation

Checked with linkml-reference-validator 0.3.0rc1.

Outcome Count
References checked 24
Resolved 24
Unresolved (possible confabulation) 0
Unverifiable 0
References weighed for topical relevance 24
On topic 20
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 27
Resolved 27
Unresolved (possible confabulation) 0
Obsolete 0
Unverifiable 0
Terms whose name was checked 12
Terms named correctly 4
Terms named as a different term 7
Terms whose name is worth a second look 1

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:

  • HP:0200042 (2 mentions) - the report calls it "Physical manifestation"; HP calls it Skin ulcer
  • HP:0001945 (1 mention) - the report calls it "Symptom / sign"; HP calls it Fever
  • HP:0002218 (1 mention) - the report calls it "Clinical sign"; HP calls it Silver-gray hair
  • UBERON:0002106 (1 mention) - the report calls it "Secondary involvement: In disseminated/severe disease, spleen"; UBERON calls it spleen**
  • NCIT:C255 (1 mention) - the report calls it "Aminoglycoside"; NCIT calls it Urinary Anti-Infective Agent
  • NCIT:C1728 (1 mention) - the report calls it "Ciprofloxacin"; NCIT calls it Celecoxib
  • NCIT:C641 (1 mention) - the report calls it "Doxycycline"; NCIT calls it Methimazole

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:

  • UBERON:0000029 (1 mention) - the report calls it "regional lymph nodes"; UBERON calls it lymph node