Oculoglandular tularemia is the ocular and regional-lymph-node form of Francisella tularensis infection: conjunctival inoculation introduces the intracellular bacterium at the eye surface, macrophage phagosomal escape and cytosolic replication amplify infection, and local inflammation produces conjunctivitis with ipsilateral draining lymphadenopathy.
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name: Oculoglandular Tularemia
creation_date: "2026-09-25T15:55:42Z"
category: Infectious Disease
description: >-
Oculoglandular tularemia is the ocular and regional-lymph-node form of
Francisella tularensis infection: conjunctival inoculation introduces the
intracellular bacterium at the eye surface, macrophage phagosomal escape and
cytosolic replication amplify infection, and local inflammation produces
conjunctivitis with ipsilateral draining lymphadenopathy.
disease_term:
preferred_term: oculoglandular tularemia
term:
id: MONDO:0001665
label: oculoglandular tularemia
parents:
- Tularemia
synonyms:
- Ocular tularemia
- Parinaud oculoglandular syndrome due to tularemia
notes: >-
Lump/split decision: oculoglandular tularemia is kept as a standalone entry
because MONDO assigns it a distinct term (MONDO:0001665) and this entry curates
the conjunctival-inoculation route, Parinaud oculoglandular phenotype,
oculoglandular diagnostic workup, and suppurative-node source-control claims
that the Tularemia parent does not carry. The Tularemia entry's Oculoglandular
subtype row cross-references this entry.
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
oculoglandular 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: >-
Oculoglandular tularemia is a bacterial infectious form of tularemia.
pathophysiology:
- name: Conjunctival Francisella tularensis Exposure
description: >-
F. tularensis is inoculated across the conjunctiva, establishing the ocular
portal of entry that defines oculoglandular tularemia.
biological_scale: TISSUE
locations:
- preferred_term: conjunctiva
term:
id: UBERON:0001811
label: conjunctiva
downstream:
- target: Macrophage Phagosomal Escape and Cytosolic Replication
causal_link_type: DIRECT
description: >-
F. tularensis enters macrophages and establishes an intracellular cytosolic
niche after conjunctival 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: >-
oculo-glandular form as a result of conjunctival infection
explanation: >-
Supports conjunctival infection as the route leading to the oculoglandular
form of 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: Ocular and Regional Lymph Node Inflammation
causal_link_type: DIRECT
description: >-
Intracellular Francisella replication triggers innate inflammatory injury in
ocular tissue and the draining lymphatic basin.
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: Ocular and Regional Lymph Node Inflammation
description: >-
Cytosolic infection is sensed by macrophage inflammatory pathways, producing
conjunctival inflammation at the eye and lymphadenopathy in the draining
regional lymph nodes.
biological_scale: TISSUE
locations:
- preferred_term: conjunctiva
term:
id: UBERON:0001811
label: conjunctiva
- 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
- preferred_term: inflammasome-mediated signaling pathway
modifier: INCREASED
term:
id: GO:0141084
label: inflammasome-mediated signaling pathway
downstream:
- target: Conjunctivitis
causal_link_type: DIRECT
description: >-
Local ocular Francisella infection manifests clinically as conjunctivitis.
- target: Lymphadenopathy
causal_link_type: DIRECT
description: >-
Inflammation in the regional draining basin produces enlarged lymph nodes.
- target: Granulomatous conjunctival inflammation
causal_link_type: DIRECT
description: >-
Ocular Francisella infection can produce granulomatous conjunctivitis.
- target: Suppurative lymphadenitis
causal_link_type: INDIRECT_KNOWN_INTERMEDIATES
description: >-
Regional tularemia lymphadenitis can progress to node suppuration.
- target: Fever
causal_link_type: INDIRECT_UNKNOWN_INTERMEDIATES
description: >-
The systemic inflammatory response to acute tularemia produces fever.
evidence:
- reference: PMID:19863554
reference_title: "Cell biology and molecular ecology of Francisella tularensis."
supports: SUPPORT
evidence_source: OTHER
quote_role: REVIEW_SYNTHESIS
snippet: >-
activation of the inflammasome mediated by caspase-1, and a pro-inflammatory
response
explanation: >-
Supports inflammasome activation and pro-inflammatory signaling downstream of
cytosolic Francisella infection.
phenotypes:
- name: Conjunctivitis
category: Ophthalmologic
diagnostic: true
phenotype_term:
preferred_term: Conjunctivitis
term:
id: HP:0000509
label: Conjunctivitis
evidence:
- reference: PMID:37916743
reference_title: "Tularemia - a re-emerging disease with growing concern."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
oculo-glandular form as a result of conjunctival infection
explanation: >-
Oculoglandular tularemia is the conjunctival clinical form of tularemia.
- reference: PMID:38941282
reference_title: "Francisella tularensis Infection Causing Parinaud Oculoglandular Syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
CASE REPORT We present the case of a 66-year-old man with granulomatous
conjunctivitis and ipsilateral preauricular, submandibular, and upper
cervical lymphadenopathies following a superficial corneal injury.
explanation: >-
Documents granulomatous conjunctivitis in a confirmed oculoglandular
tularemia case, matching the ocular half of the Parinaud oculoglandular
presentation.
- name: Lymphadenopathy
category: Immune
diagnostic: true
phenotype_term:
preferred_term: Lymphadenopathy
term:
id: HP:0002716
label: Lymphadenopathy
evidence:
- reference: PMID:38941282
reference_title: "Francisella tularensis Infection Causing Parinaud Oculoglandular Syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
CASE REPORT We present the case of a 66-year-old man with granulomatous
conjunctivitis and ipsilateral preauricular, submandibular, and upper
cervical lymphadenopathies following a superficial corneal injury.
explanation: >-
Documents ipsilateral regional lymphadenopathy in a confirmed
oculoglandular tularemia case.
- name: Granulomatous conjunctival inflammation
category: Ophthalmologic
phenotype_term:
preferred_term: Granuloma
term:
id: HP:0032252
label: Granuloma
description: >-
The conjunctival inflammation in Parinaud oculoglandular syndrome can be
granulomatous.
evidence:
- reference: PMID:38941282
reference_title: "Francisella tularensis Infection Causing Parinaud Oculoglandular Syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
CASE REPORT We present the case of a 66-year-old man with granulomatous
conjunctivitis and ipsilateral preauricular, submandibular, and upper
cervical lymphadenopathies following a superficial corneal injury.
explanation: >-
Documents granulomatous conjunctival inflammation in confirmed
oculoglandular tularemia.
- name: Suppurative lymphadenitis
category: Complication
phenotype_term:
preferred_term: Suppurative lymphadenitis
term:
id: HP:0002840
label: Lymphadenitis
description: >-
Regional lymph nodes can suppurate after delayed or ineffective therapy and
require procedural drainage.
evidence:
- reference: PMID:38941282
reference_title: "Francisella tularensis Infection Causing Parinaud Oculoglandular Syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Although the systematic amoxicillin/clavulanic acid and metronidazole
antibiotic therapy started immediately at admission, the suppuration of the
lymph nodes required surgical drainage.
explanation: >-
Documents suppurating regional nodes requiring drainage in a confirmed
oculoglandular tularemia case.
- 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 oculoglandular
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_modality: SMALL_MOLECULE
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:38294116
reference_title: "Antimicrobial Susceptibility of Francisella tularensis Isolates in the United States, 2009-2018."
supports: SUPPORT
evidence_source: IN_VITRO
snippet: >-
We tested the susceptibility of 278 F. tularensis isolates from the United
States received during 2009-2018 to 8 antimicrobial drugs (ciprofloxacin,
levofloxacin, doxycycline, tetracycline, gentamicin, streptomycin,
chloramphenicol, and erythromycin). All isolates were susceptible to all
tested drugs.
explanation: >-
Antimicrobial susceptibility testing supports activity of first-line
tularemia antibiotics against F. tularensis isolates.
- reference: PMID:38941282
reference_title: "Francisella tularensis Infection Causing Parinaud Oculoglandular Syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Empiric fluoroquinolone (ciprofloxacin) or aminoglycoside (gentamicin or
streptomycin) antibiotic therapy should be started immediately at the
slightest suspicion of oculoglandular tularemia.
explanation: >-
Supports prompt fluoroquinolone or aminoglycoside therapy for the
oculoglandular form specifically.
- name: Lymph-node incision and drainage
description: >-
Procedural drainage provides source control when oculoglandular tularemia
progresses to suppurating regional lymphadenitis.
therapeutic_modality: SURGERY
treatment_term:
preferred_term: Incision and Drainage
term:
id: NCIT:C38067
label: Incision and Drainage
evidence:
- reference: PMID:38941282
reference_title: "Francisella tularensis Infection Causing Parinaud Oculoglandular Syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Although the systematic amoxicillin/clavulanic acid and metronidazole
antibiotic therapy started immediately at admission, the suppuration of the
lymph nodes required surgical drainage.
explanation: >-
Documents surgical drainage as source control for oculoglandular tularemia
with suppurative regional lymphadenitis.
transmission:
- name: Conjunctival Exposure
description: >-
Ocular inoculation of Francisella through conjunctival exposure produces the
oculoglandular form of tularemia.
evidence:
- reference: PMID:37916743
reference_title: "Tularemia - a re-emerging disease with growing concern."
supports: SUPPORT
evidence_source: OTHER
quote_role: REVIEW_SYNTHESIS
snippet: >-
oculo-glandular form as a result of conjunctival infection
explanation: >-
Supports conjunctival infection as the defining exposure route for
oculoglandular tularemia.
prevalence:
- population: Missouri reported tularemia cases, 2000-2007
measure_type: CASES_IN_LITERATURE
prevalence_class: UNKNOWN
notes: >-
Oculoglandular tularemia accounted for 3% of 121 reviewed Missouri tularemia
cases reported from 2000 through 2007.
evidence:
- reference: PMID:22911645
reference_title: "Clinical recognition and management of tularemia in Missouri: a retrospective records review of 121 cases."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Most patients presented with ulceroglandular (37%) and glandular (25%)
forms of tularemia, followed by pneumonic (12%), typhoidal (10%),
oculoglandular (3%), and oropharyngeal (2%) forms.
explanation: >-
Quantifies the oculoglandular form among reviewed reported tularemia cases
in Missouri.
progression:
- phase: Incubation after Francisella tularensis exposure
incubation_days: 1-9
notes: >-
A Missouri tularemia case series reported median incubation of 3 days, with a
range from 1 to 9 days.
evidence:
- reference: PMID:22911645
reference_title: "Clinical recognition and management of tularemia in Missouri: a retrospective records review of 121 cases."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Median incubation period was 3 days (range, 1-9 days), and patients sought
care after a median of 3 days of illness (range, 0-44 days).
explanation: >-
Supports an acute tularemia incubation interval from a human case series
that included oculoglandular tularemia.
diagnosis:
- name: Francisella microagglutination serology
description: >-
Microagglutination serology confirms oculoglandular tularemia when titers
reach a diagnostic threshold or rise fourfold across paired acute and
convalescent sera.
diagnosis_term:
preferred_term: Diagnostic Serology Testing
term:
id: NCIT:C217458
label: Diagnostic Serology Testing
evidence:
- reference: PMID:38941282
reference_title: "Francisella tularensis Infection Causing Parinaud Oculoglandular Syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
quote_role: BACKGROUND
snippet: >-
Titers of ≥1: 160 within 2–3 weeks after the onset of symptoms or a 4-fold
increase in microagglutination test titers over a 2-week interval (between
acute and convalescent sera) are considered diagnostic of tularemia [12].
explanation: >-
States the microagglutination threshold and paired-serum rule used to
confirm oculoglandular tularemia.
- name: Francisella PCR on ocular, node, or tissue specimens
description: >-
Francisella-specific PCR on conjunctival swabs, lymph-node aspirates, or
biopsy tissue can confirm oculoglandular tularemia earlier than serology.
diagnosis_term:
preferred_term: Polymerase Chain Reaction
term:
id: NCIT:C17003
label: Polymerase Chain Reaction
evidence:
- reference: PMID:38941282
reference_title: "Francisella tularensis Infection Causing Parinaud Oculoglandular Syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
quote_role: BACKGROUND
snippet: >-
As an alternative or a supplement to serology, polymerase chain reaction
(PCR) specific to the 16S rRNA or the tul4 and fopA bacterial genes is
suggested.
explanation: >-
Identifies PCR for Francisella targets as a molecular confirmation route
for oculoglandular tularemia.
animal_models:
- name: Francisella novicida zebrafish embryo infection
species: Zebrafish
genotype: Wild-type zebrafish embryo
publication: PMID:24614659
description: >-
F. tularensis subsp. novicida infection in zebrafish embryos models
macrophage uptake and granuloma-like aggregate formation by a Francisella
strain rather than conjunctival inoculation by F. tularensis.
evidence:
- &zebrafish_francisella
reference: PMID:24614659
reference_title: Establishment of three Francisella infections in zebrafish embryos at different temperatures.
supports: SUPPORT
evidence_source: MODEL_ORGANISM
snippet: >-
All three strains entered preferentially into macrophages, which eventually
assembled into granuloma-like structures.
explanation: >-
Supports zebrafish embryos as an in vivo Francisella infection model that
recapitulates macrophage entry and granuloma-like structures.
modeled_mechanisms:
- target: Macrophage Phagosomal Escape and Cytosolic Replication
relationship: PARTIALLY_RECAPITULATES
model_scale: ORGANISM
description: >-
The zebrafish embryo assay follows Francisella infection in macrophages
within a living vertebrate host.
limitations: >-
The experiment uses F. tularensis subsp. novicida and does not model
conjunctival entry or oculoglandular regional lymphadenitis.
evidence:
- *zebrafish_francisella
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.
Disease: Oculoglandular Tularemia MONDO ID: MONDO:0001665 Category: Infectious Disease (bacterial zoonosis) Causative agent: Francisella tularensis (NCBI Taxon: 263) Evidence base: Aggregated disease-level literature (case reports, case series, systematic reviews, and mechanistic model-organism/in-vitro studies). No individual EHR-level or omics data files were provided; this is a literature-synthesis report.
Oculoglandular tularemia is the conjunctival-entry form of tularemia, an acute zoonotic infection caused by the Gram-negative, facultatively intracellular bacterium Francisella tularensis. It is one of the six classic clinical forms of tularemia and accounts for approximately 1–3% of all tularemia cases. Clinically it presents as unilateral granulomatous follicular conjunctivitis accompanied by painful ipsilateral preauricular, submandibular and cervical lymphadenopathy — the constellation known as Parinaud oculoglandular syndrome (POGS). Among causes of POGS, oculoglandular tularemia ranks second only to cat scratch disease (Bartonella henselae), which is the single most important differential diagnosis. Infection follows conjunctival inoculation by contaminated fingers, aerosol splashes, or ocular trauma involving infected animal material.
The pathophysiology is that of an intracellular bacterial infection rather than a heritable disorder — there is no host causal gene, inheritance pattern, or germline variant. After conjunctival inoculation, F. tularensis is phagocytosed by macrophages, escapes the phagosome using a non-canonical Type VI secretion system (T6SS) encoded on the Francisella Pathogenicity Island (FPI; effectors PdpC/PdpD), replicates in the cytosol, and triggers the AIM2 inflammasome with caspase-1 activation, IL-1β/IL-18 release, and pyroptotic cell death. This drives granulomatous conjunctival inflammation and regional suppurative lymphadenitis. F. tularensis is one of the most infectious bacteria known, requiring as few as ~10–15 organisms to cause disease, which underlies its classification as a Tier 1 select agent and potential bioterrorism threat.
Diagnosis relies on serology (microagglutination titer ≥1/160 or four-fold rise) and PCR (targets tul4, ISFtu2, fopA, 23-kDa), because culture is insensitive (~10% positive) and hazardous (requires BSL-3 containment). The disease is highly curable: contemporary isolates remain uniformly susceptible to aminoglycosides, fluoroquinolones, and tetracyclines, while β-lactams reliably fail. Case-fatality among appropriately treated patients is under 2%, and F. tularensis subsp. holarctica (the European/Asian type B) infections are essentially non-fatal. Suppurative lymph nodes occasionally require surgical drainage. Prevention is behavioral/environmental (personal protective equipment, avoiding sick/dead lagomorphs and rodents, tick-bite avoidance, hand and eye hygiene) plus antibiotic post-exposure prophylaxis; no licensed human vaccine exists.
Oculoglandular tularemia is a rare clinical form of tularemia and the second commonest cause of Parinaud oculoglandular syndrome (POGS). POGS is defined as unilateral granulomatous palpebral conjunctivitis with ipsilateral preauricular, submandibular, and cervical lymphadenopathy, frequently accompanied by fever and malaise. Reviews of POGS etiology consistently identify cat scratch disease (Bartonella henselae) as the most common cause, with oculoglandular tularemia second. Entry is via conjunctival inoculation — contaminated fingers after handling infected animals, aerosol splashes, or ocular trauma from infected animal material.
"The most common underlying pathology is cat scratch disease, followed by the oculoglandular form of tularemia." — PMID: 38941282
"Parinaud's oculoglandular syndrome should be considered in the differential diagnosis of a patient presenting with unilateral granulomatous conjunctivitis, painful preauricular, and submandibular lymphadenopathy combined with systemic symptoms of general malaise and fever. Tularemia is one etiology of Parinaud's oculoglandular syndrome." — PMID: 11228320
Francisella tularensis isolates remain uniformly susceptible to first-line tularemia antibiotics. Antimicrobial susceptibility testing of 278 U.S. isolates (2009–2018) against 8 drugs (ciprofloxacin, levofloxacin, doxycycline, tetracycline, gentamicin, streptomycin, chloramphenicol, erythromycin) found all isolates susceptible to all drugs tested. German subsp. holarctica isolates (n=128) showed low MIC90 values: gentamicin 1 mg/L, streptomycin 4.0 mg/L, tetracycline 0.5 mg/L, doxycycline 1.5 mg/L, and ciprofloxacin 0.064 mg/L. One important exception: subsp. holarctica biovar II (genotype B.12) is intrinsically erythromycin-resistant. Streptomycin (intramuscular) is the historical drug of choice; ciprofloxacin was used successfully in a confirmed oculoglandular case after β-lactam failure.
"We tested the susceptibility of 278 F. tularensis isolates from the United States received during 2009-2018 to 8 antimicrobial drugs... All isolates were susceptible to all tested drugs." — PMID: 38294116
"empiric ciprofloxacin therapy was administered, and the patient recovered without sequelae" — PMID: 38941282
Oculoglandular tularemia is an uncommon form (~1–3% of cases), and F. tularensis is extraordinarily infectious with low fatality when treated. A systematic review of 870 human tularemia cases (1993–2023, 35 countries) noted that the organism "requires as few as 10 organisms to cause disease," and reported case-fatality among treated patients of 0.7% (aminoglycosides), 0.9% (fluoroquinolones), and 1.2% (tetracyclines). In a Missouri series of 121 cases (2000–2007), the oculoglandular form comprised 3% of cases (vs. ulceroglandular 37%, glandular 25%, pneumonic 12%, typhoidal 10%, oropharyngeal 2%); median incubation was 3 days (range 1–9), 65% of patients were male, median age was 37, and 69% of cases were attributed to tick bites, with systemic disease more common in older patients.
| Clinical form | Frequency (Missouri, n=121) |
|---|---|
| Ulceroglandular | 37% |
| Glandular | 25% |
| Pneumonic | 12% |
| Typhoidal | 10% |
| Oculoglandular | 3% |
| Oropharyngeal | 2% |
"requires as few as 10 organisms to cause disease, making this potential bioterrorism agent one of the most infectious bacterial pathogens known" — PMID: 38294108
"the fatality rate was 0.7%, 0.9%, and 1.2%, respectively" — PMID: 38294108
"Most patients presented with ulceroglandular (37%) and glandular (25%) forms of tularemia, followed by pneumonic (12%), typhoidal (10%), oculoglandular (3%), and oropharyngeal (2%) forms." — PMID: 22911645
The pathogenesis proceeds from conjunctival inoculation to clinical disease through a well-characterized intracellular mechanism. F. tularensis is a facultative intracellular pathogen that survives within phagocytic cells "through phagosomal escape and replication in the cytosol, ultimately causing inflammasome activation and host cell death." Phagosomal escape requires a non-canonical T6SS encoded on the 33-kb Francisella Pathogenicity Island (FPI); effectors PdpC and PdpD are required for phagosome rupture, and strains lacking them cannot escape the phagosome, activate the AIM2 inflammasome, or cause disease in mice. Cytosolic bacterial DNA activates the AIM2 inflammasome, leading to autocatalytic caspase-1 cleavage, IL-1β and IL-18 secretion, and pyroptotic cell death. Host NLRP3 increases susceptibility to tularemia in the mouse. Histopathology of oculoglandular lesions shows granulomatous inflammation with necrosis.
"strains lacking pdpC and pdpD are unable to escape from phagosome, activate AIM2 inflammasome or cause disease in mice. This suggests that PdpC and PdpD are T6SS effectors involved in phagosome rupture." — PMID: 28621333
"Its life cycle is characterized by an ability to survive within phagocytic cells through phagosomal escape and replication in the cytosol, ultimately causing inflammasome activation and host cell death." — PMID: 27830989
"Escape of F. tularensis from the phagosome into the cytosol of the macrophage triggers the activation of the AIM2 inflammasome" — PMID: 23115038
Diagnosis relies on serology (microagglutination) and PCR; culture is insensitive (~10%) and biohazardous. A microagglutination titer ≥1/160 in a single serum, or a ≥4-fold rise/seroconversion between paired sera, is diagnostic — in one Turkish outbreak, 68% were positive on first serum and all initially negative patients seroconverted. PCR on lymph-node aspirate targeting tul4, ISFtu2, fopA and 23-kDa genes detects and subspeciates the organism (91% PCR-positive on node aspirates in one series); a multitarget TaqMan assay (ISFtu2, 23-kDa, tul4) reached a 1-organism detection limit and outperformed culture. Culture is positive in only ~10% of cases and requires BSL-3 containment; MALDI-TOF and 16S rRNA sequencing identify isolates. Failure to respond to β-lactams is a key diagnostic clue. The chief differential is cat scratch disease (Bartonella henselae).
"in 17 (68%) of them microagglutination test yielded positive result (≥ 1/160) in their first serum samples. All of the 8 patients who had negative results in their first samples (< 1/160), revealed seroconversion in their second samples. In 10 (91%) of the 11 patients from whom lymph node aspirates were obtained, PCR performed with species specific (tul4) primers yielded positivity" — PMID: 22090310
"the TaqMan PCR assay was significantly more sensitive than culturing" — PMID: 14662930
"positive cultures are typically obtained in only 10% of tularemia cases" — PMID: 37209668
"The primary inoculation complex causing regional lymphadenopathy is represented in the eye by Parinaud's oculoglandular syndrome; B. henselae is the most common cause." — PMID: 10537781
No licensed human tularemia vaccine exists. The only prophylactic ever developed is a >50-year-old live-attenuated vaccine (LVS) derived from the less virulent subsp. holarctica, which "has not been approved for use in humans or animals"; killed and subunit candidates remain experimental (animal models only). In the absence of a vaccine, post-exposure prophylaxis after proven F. tularensis exposure relies on antibiotics (doxycycline or ciprofloxacin for 14 days). Primary prevention is behavioral/environmental: avoiding bare-handed handling of sick/dead animals (especially lagomorphs and rodents), using gloves when skinning game, tick/insect-bite avoidance and prompt removal, hand and eye hygiene, protective eyewear, avoiding contaminated water, and not mowing over animal carcasses (aerosol risk).
"A live-attenuated vaccine that was designed over 50 years ago using the less virulent F. tularensis subspecies holarctica is the only prophylactic currently available, but it has not been approved for use in humans or animals." — PMID: 38564047
"Because no effective and safe vaccine is currently available, tularaemia prophylaxis following proven exposure to F. tularensis also relies on administration of antibiotics." — PMID: 24734221
Tularemia is a zoonosis with a broad host range. F. tularensis "is transmitted to humans by handling infected animals, ingestion of contaminated food or water, inhalation of infective aerosols, and arthropod bites." Principal reservoirs and amplifying hosts are lagomorphs (rabbits, hares) and rodents; ticks (Dermacentor, Amblyomma, Ixodes) and deerflies are key vectors. The oculoglandular route specifically follows conjunctival inoculation. In a pediatric case series/review (94 cases, age 6 weeks–17 years), infection was zoonotic in 86.7% and waterborne in 13.3%, with ulceroglandular (46.7%), glandular (17%) and oropharyngeal (18.1%) forms predominating; fever was universal and serology the commonest diagnostic (60.6%). A confirmed oculoglandular case arose in a sheep breeder after a twig scratched the eye; another followed contact with a wild baby rabbit. Congenital transmission has been documented. Cats can transmit F. tularensis to humans via scratch or bite, overlapping clinically with cat scratch disease.
"F tularensis is transmitted to humans by handling infected animals, ingestion of contaminated food or water, inhalation of infective aerosols, and arthropod bites." — PMID: 22734313
"multiple sources of infection, including diverse zoonotic transmission (86.7%) and contact with contaminated water (13.3%)" — PMID: 39312633
"Based on his anamnesis (sheep breeding; a twig scratching his eye 2 days before the initial attendance) and symptoms, a zoonosis, namely the oculoglandular form of tularemia, was suspected" — PMID: 38941282
Oculoglandular tularemia presents acutely (incubation ~3 days, range 1–9) as unilateral granulomatous follicular conjunctivitis with conjunctival follicles, small yellowish ulcers/nodules, chemosis, lid edema, epiphora, mucopurulent discharge and marked injection, accompanied by fever, malaise, and painful ipsilateral preauricular (Parinaud node), submandibular, and cervical lymphadenopathy. Regional nodes frequently suppurate: in a confirmed case, node suppuration required surgical drainage before the patient recovered without sequelae on ciprofloxacin. Delayed diagnosis (often weeks) predisposes to suppurative lymphadenitis requiring fine-needle aspiration, drainage, or excision. Systemic constitutional symptoms are common (fever ~97%, lymphadenopathy ~94% in pediatric series). Prognosis with timely appropriate antibiotics is excellent (case-fatality <2%; subsp. holarctica infections essentially non-fatal); untreated or β-lactam-treated disease is protracted, with node suppuration and relapse.
"the suppuration of the lymph nodes required surgical drainage" — PMID: 38941282
"Major clinical manifestations included fever (97%) and swelling of lymph glands (94%)" — PMID: 36099382
"delayed diagnosis may be associated with suppurative lymphadenitis and need for invasive intervention" — PMID: 42749847
The mouse is the principal in vivo model; the attenuated Live Vaccine Strain (LVS, subsp. holarctica) is widely used at BSL-2 as a surrogate for virulent F. tularensis, which requires BSL-3. F. tularensis "is, in part, attributed to the ability of this microorganism to evade, disrupt, and modulate host immune responses" and can "cause lethal disease following inoculation of as few as 15 organisms." Mechanistic mutant studies (ΔpdpC/pdpD, ΔiglE, ΔvgrG, ΔdotU) in J774/THP-1 macrophages and mice link the FPI-encoded T6SS to phagosomal escape, inflammasome activation, and virulence. A zebrafish embryo model of F. tularensis subsp. novicida (and F. noatunensis) reproduces macrophage uptake, granuloma-like aggregates, and TNF-α/IL-1β proinflammatory responses. Protective immunity is T-cell dependent (CD4+/CD8+, IFN-γ).
"its ability to cause lethal disease following inoculation of as few as 15 organisms. This remarkable virulence is, in part, attributed to the ability of this microorganism to evade, disrupt, and modulate host immune responses" — PMID: 21687406
"All three strains entered preferentially into macrophages, which eventually assembled into granuloma-like structures." — PMID: 24614659
Integrating all findings across 54 literature items: oculoglandular tularemia is one of six tularemia forms (~1–3% of cases), caused by conjunctival inoculation of F. tularensis (subsp. tularensis type A / holarctica type B). The mechanism is T6SS/FPI (PdpC/PdpD)-mediated phagosomal escape → cytosolic replication → AIM2 inflammasome/caspase-1/IL-1β/IL-18 pyroptosis → granulomatous conjunctivitis + regional (preauricular/submandibular/cervical) lymphadenitis. It presents acutely (incubation ~3 d) as unilateral granulomatous follicular conjunctivitis with ipsilateral tender lymphadenopathy (Parinaud syndrome; second commonest cause after cat scratch disease). Diagnosis is by serology (microagglutination ≥1/160) and PCR (tul4/ISFtu2/fopA); culture ~10% sensitive, BSL-3. Treatment is with aminoglycosides/fluoroquinolones/tetracyclines (all isolates susceptible); β-lactams fail; case-fatality <2%; suppurative nodes may need drainage. Prevention is behavioral/PPE plus antibiotic post-exposure prophylaxis (no licensed vaccine). There is no host causal gene or inheritance; the disease is zoonotic (lagomorph/rodent reservoirs, tick vectors, cats). Mouse (LVS/SchuS4) and zebrafish are the main models.
Overview. Oculoglandular tularemia is the conjunctival-entry ("ocular") clinical form of tularemia, an acute febrile zoonosis caused by Francisella tularensis. It manifests as unilateral granulomatous conjunctivitis with ipsilateral regional lymphadenopathy (Parinaud oculoglandular syndrome), and constitutes roughly 1–3% of tularemia cases.
Key identifiers. - MONDO: MONDO:0001665 (oculoglandular tularemia) - MeSH: Tularemia (D014406); Francisella tularensis organism term - ICD-10: A21.1 (Oculoglandular tularemia); parent A21 (Tularemia) - ICD-11: 1B94 (Tularemia) - SNOMED CT: Oculoglandular tularemia (disorder) - OMIM / Orphanet: Not a Mendelian disorder; no OMIM phenotype entry. It is an infectious disease, not a rare genetic disease.
Synonyms / alternative names. Ocular tularemia; ophthalmic tularemia; Parinaud oculoglandular syndrome due to tularemia; "oculoglandular form of tularemia." Historical names for tularemia broadly include rabbit fever, deer-fly fever, Ohara disease, and Francis disease.
Information source type. This knowledge base entry is derived from aggregated disease-level resources (systematic reviews, case series, clinical guidelines, and mechanistic laboratory studies) rather than individual EHR-derived patient records. Individual case reports (e.g., PMID 38941282) contribute granular clinical detail.
Disease causal factor — infectious. The sole cause is infection by Francisella tularensis, a small, Gram-negative, non-motile, facultatively intracellular coccobacillus. Clinically important subspecies: subsp. tularensis (type A) — highly virulent, predominantly North America — and subsp. holarctica (type B) — less virulent, Northern Hemisphere including Europe/Asia; subsp. holarctica infections are essentially non-fatal. The oculoglandular form specifically requires conjunctival inoculation of the organism.
Risk factors (environmental / behavioral). - Occupational and recreational animal contact: hunters, trappers, farmers, sheep breeders, veterinarians, laboratory workers. - Handling infected lagomorphs (rabbits, hares) and rodents. - Tick and deerfly exposure in endemic regions. - Ocular trauma or splash while handling infected animal material (a sheep breeder was infected after a twig scratched his eye — PMID 38941282). - Touching the eye with contaminated fingers. - Male sex and older age are associated with higher rates of systemic disease in case series (65% male, PMID 22911645).
Genetic risk factors. None identified. There is no host causal gene, susceptibility locus, or modifier allele established for human oculoglandular tularemia. (Experimentally, host Nlrp3 increases murine susceptibility — PMID 34690967 — but this is not a clinically actionable human genetic risk factor.)
Protective factors. No genetic protective variants are known. Behavioral protection (gloves, eye protection, tick avoidance, hand hygiene) reduces risk. Prior infection or LVS vaccination confers T-cell–dependent immunity, but no licensed vaccine exists.
Gene–environment interactions. Not applicable to the human host in a Mendelian sense. The relevant "gene–environment" axis is bacterial: FPI/T6SS genes interact with the intracellular macrophage environment to enable virulence.
| Phenotype | Type | HPO suggestion | Frequency / characteristics |
|---|---|---|---|
| Unilateral granulomatous conjunctivitis | Clinical sign | HP:0000509 (Conjunctivitis) | Hallmark; unilateral; acute onset ~3 d |
| Conjunctival follicles/nodules/ulcers | Physical manifestation | (ocular surface lesion) | Yellowish granulomatous nodules |
| Preauricular/cervical lymphadenopathy | Clinical sign | HP:0002716 (Lymphadenopathy) | ~94% (pediatric series); ipsilateral, painful |
| Fever | Symptom | HP:0001945 (Fever) | ~97% |
| Eyelid edema / chemosis | Physical manifestation | HP:0000198 (periorbital edema analog) | Common |
| Epiphora / mucopurulent discharge | Symptom/sign | HP:0009926 (Epiphora) | Common |
| Malaise/fatigue | Symptom | HP:0012378 (Fatigue) | Common |
| Suppurative lymphadenitis | Clinical sign / complication | HP:0002840 (lymphadenitis analog) | Occurs with delayed treatment |
Characteristics. Age of onset: any age (children through adults). Severity: mild-to-moderate ocular disease that is usually self-limited to the eye/nodes but can become severe with node suppuration or, rarely, systemic spread. Progression: acute onset, then either resolution with treatment or a protracted suppurative course if untreated/β-lactam-treated. Frequency among affected individuals: fever ~97%, lymphadenopathy ~94% in pediatric tularemia series (PMID 36099382).
Quality of life impact. Generally transient with prompt treatment; significant discomfort during the acute phase (ocular pain, purulent discharge, tender nodes, fever). Suppurative lymphadenitis requiring drainage prolongs morbidity. No dedicated EQ-5D/SF-36 disease-specific data were identified.
Not applicable to the human host. Oculoglandular tularemia is an infectious disease with no causal human gene, pathogenic variant, modifier gene, epigenetic signature, or chromosomal abnormality. There is no germline or somatic variant classification (ACMG/AMP), no allele frequency data, and no ClinVar/OMIM entry for a causal locus.
Relevant bacterial genetics. Virulence is governed by the Francisella Pathogenicity Island (FPI), a ~33-kb gene cluster encoding a non-canonical Type VI secretion system (T6SS). Key genes include pdpC, pdpD, iglE, vgrG, dotU, and pdpB/icmF. Deletion mutants of these genes abolish phagosomal escape, inflammasome activation, and virulence (PMIDs 28621333, 22514651, 27830989).
Environmental factors. F. tularensis persists in the environment (water, soil, animal carcasses, mud) and can be aerosolized (e.g., during mowing over carcasses). Contaminated water is a documented outbreak source (waterborne tularemia outbreaks in Turkey).
Lifestyle factors. Hunting, trapping, farming, animal husbandry, and outdoor recreation in endemic areas increase exposure.
Infectious agent. Francisella tularensis (NCBI Taxon: 263). Subspecies: tularensis (type A), holarctica (type B), mediasiatica, and novicida (used in models). Note: the lipopolysaccharide (LPS) of F. tularensis is atypically non-stimulatory to TLR4, contributing to immune evasion.
Ordered causal chain (initiating event → clinical manifestation):
Steps 1–2 and 7–8 in the ocular tissue specifically are inferred by analogy from systemic/macrophage models; steps 3–6 are directly demonstrated in macrophage and mouse systems.
Molecular pathways / cellular processes. Inflammasome signaling (AIM2 primary; NLRP3 modulatory — host NLRP3 increases susceptibility, PMID 34690967), caspase-1 activation, IL-1β/IL-18 (pyroptosis), and NF-κB (IKKβ in myeloid cells controls host response — PMID 23349802).
Cell types involved (CL suggestions). Macrophages (CL:0000235), monocytes (CL:0000576), neutrophils (CL:0000775), dendritic cells (CL:0000451), and conjunctival epithelial cells (CL:0000066). Protective adaptive immunity is CD4+/CD8+ T-cell and IFN-γ dependent (PMID 21687406).
GO term suggestions. Modulation of host immune response (GO:0052167), AIM2 inflammasome complex (GO:0097169), positive regulation of interleukin-1 beta production (GO:0032731), pyroptosis (GO:0070269), defense response to bacterium (GO:0042742).
Subcellular compartments (GO Cellular Component). Phagosome (GO:0045335), cytosol (GO:0005829), AIM2 inflammasome complex (GO:0097169).
Tissue damage mechanisms. Granulomatous inflammation with caseous/suppurative necrosis of regional lymph nodes; local conjunctival ulceration.
Organ level. - Primary: Conjunctiva and ocular surface (UBERON:0001811 conjunctiva; UBERON:0000970 eye). - Regional: Preauricular, submandibular, and cervical lymph nodes (UBERON:0000029 lymph node). - Secondary/rare: Systemic organs (lung, liver, spleen) if dissemination occurs. - Body systems: Visual/ocular system and immune/lymphatic system.
Tissue and cell level. Conjunctival epithelium (epithelial tissue); lymphoid tissue of draining nodes. Target cell populations: macrophages (CL:0000235), monocytes (CL:0000576), neutrophils (CL:0000775).
Subcellular level. Phagosome (GO:0045335) and cytosol (GO:0005829) of infected macrophages.
Localization / lateralization. Characteristically unilateral (the inoculated eye) with ipsilateral regional lymphadenopathy.
Epidemiology. Oculoglandular tularemia comprises ~1–3% of tularemia cases. Tularemia overall is a reportable, sporadic-to-outbreak zoonosis across the Northern Hemisphere; a nationwide Danish seroprevalence study found 2.2% seropositivity, suggesting underdiagnosis. Incidence varies geographically and seasonally (tick-season peaks).
Inheritance. Not applicable — infectious, non-heritable. No inheritance pattern, penetrance, expressivity, anticipation, mosaicism, founder effect, consanguinity role, or carrier frequency.
Population demographics. In case series, ~65% male; median age ~37 (adults) but all ages affected including neonates (congenital transmission documented — PMID 41385785). Geographic distribution: North America (subsp. tularensis and holarctica), Europe and Asia (subsp. holarctica); endemic foci in Turkey, Scandinavia, Central Europe, and parts of the U.S. (e.g., Missouri, Arkansas). Climate modeling suggests potential range expansion.
Serology (mainstay). Microagglutination test titer ≥1/160 in a single serum, or ≥4-fold rise/seroconversion between paired sera, is diagnostic (PMID 22090310). ELISA and immunochromatographic rapid tests (sensitivity ~98%, specificity ~96% on human sera) are also available (PMID 20220165). Cross-reactivity with Brucella should be excluded.
Molecular (PCR). Targets tul4, ISFtu2, fopA, and the 23-kDa gene on lymph-node aspirates or ocular swabs; a multitarget TaqMan assay reached a ~1-organism detection limit and outperformed culture (PMID 14662930). PCR yield on node aspirates ~91% in one series.
Culture. Positive in only ~10% of cases; requires cysteine-enriched media and BSL-3 containment because of aerosol hazard (PMID 37209668). MALDI-TOF and 16S rRNA sequencing identify isolates.
Biopsy/pathology. Granulomatous inflammation with necrosis; immunohistochemistry and 16S rRNA PCR can identify Francisella in tissue.
Clinical clue. Failure to respond to β-lactam antibiotics in a patient with unilateral granulomatous conjunctivitis and regional lymphadenopathy should prompt consideration of tularemia.
Differential diagnosis. Cat scratch disease (Bartonella henselae, the most common POGS cause), adenoviral/chlamydial conjunctivitis, sporotrichosis, tuberculosis, syphilis, lymphogranuloma venereum, sarcoidosis, and (as in one report) flea-borne typhus (PMID 32751142).
Screening. No population screening applies (acute infectious disease, no carrier state).
First-line pharmacotherapy (all F. tularensis isolates uniformly susceptible — PMID 38294116):
| Drug class | Agents | NCIT suggestion | Notes |
|---|---|---|---|
| Aminoglycosides | Streptomycin (IM), gentamicin | NCIT:C312 (Streptomycin), NCIT:C516 (Gentamicin) | Historical drug of choice; lowest treated fatality (0.7%) |
| Fluoroquinolones | Ciprofloxacin, levofloxacin | NCIT:C405 (Ciprofloxacin) | Effective; used successfully in a confirmed oculoglandular case (PMID 38941282) |
| Tetracyclines | Doxycycline, tetracycline | NCIT:C562 (Doxycycline) | Bacteriostatic; higher relapse risk; longer courses |
Agents that fail: β-lactams (penicillins, most cephalosporins) — reliably ineffective; clinical non-response is a diagnostic clue.
Duration: ~10 days for aminoglycosides/fluoroquinolones; ~14–21 days for tetracyclines. Chloramphenicol is reserved for CNS involvement (meningitis).
Surgical/interventional: Incision and drainage or excision of suppurative lymph nodes when they fail to resolve (PMIDs 38941282, 22090310).
Pharmacogenomics / advanced therapeutics: Not applicable — no gene therapy, cell therapy, RNA-based, targeted, or immunotherapy is used for this infection.
Experimental: Inhaled liposomal ciprofloxacin has shown protection against lethal (pneumonic) tularemia in a marmoset model (PMID 41416830) — relevant to respiratory rather than oculoglandular disease.
Conjunctival inoculation of F. tularensis
(contaminated finger / splash / ocular trauma)
│
▼
Phagocytosis by macrophages
│
▼
FPI-encoded T6SS (PdpC, PdpD) ──► PHAGOSOMAL ESCAPE
│ (ΔpdpC/pdpD → no escape,
▼ no disease — PMID 28621333)
Cytosolic bacterial replication
(immune subversion; low ID ~10–15 organisms)
│
▼
Cytosolic DNA sensed → AIM2 INFLAMMASOME
│
▼
Caspase-1 activation
│
┌─────────┴─────────┐
▼ ▼
IL-1β / IL-18 PYROPTOSIS
secretion (host-cell death)
└─────────┬─────────┘
▼
Neutrophil/monocyte recruitment → GRANULOMATOUS INFLAMMATION
│
┌─────────┴──────────────┐
▼ ▼
Granulomatous Lymphatic spread →
CONJUNCTIVITIS regional (preauricular/
(unilateral) submandibular/cervical)
LYMPHADENITIS → suppuration
│
▼
PARINAUD OCULOGLANDULAR SYNDROME
(2nd commonest cause after cat scratch disease)
Upstream vs downstream. The upstream, rate-limiting virulence step is T6SS-mediated phagosomal escape (bacterial); the downstream pathology (granuloma, lymphadenitis, pyroptosis) is host inflammasome-driven. Therapeutically, intracellular-active antibiotics (aminoglycosides, fluoroquinolones, tetracyclines) interrupt the replication step; β-lactams fail because they poorly access the cytosolic niche and the organism's cell-wall biology.
| PMID | Title (abbrev.) | Supports |
|---|---|---|
| 38941282 | F. tularensis causing Parinaud OGS | Disease definition, POGS rank, transmission, ciprofloxacin cure, node drainage |
| 11228320 | Parinaud's OGS from a wild rabbit | Clinical presentation; tularemia as POGS etiology |
| 38294116 | Antimicrobial susceptibility, US 2009–2018 | Uniform susceptibility to first-line drugs |
| 28605439 | Susceptibility, German holarctica | MIC90 values; biovar II erythromycin resistance |
| 38294108 | Systematic review 1993–2023 | Infective dose ~10 organisms; treated fatality 0.7–1.2% |
| 22911645 | Missouri 121 cases | Oculoglandular ~3%; incubation; demographics |
| 28621333 | T6SS/ClpB effector delivery | PdpC/PdpD required for escape, AIM2, virulence |
| 27830989 | IglE T6SS secretion | Intracellular life cycle; phagosomal escape |
| 23115038 | LVS caspase-1 activation | Cytosolic escape → AIM2 inflammasome |
| 22514651 | DotU/VgrG essential | T6SS core components required for pathogenicity |
| 22090310 | Central Anatolia cases | Microagglutination ≥1/160; seroconversion; PCR yield |
| 14662930 | Multitarget TaqMan PCR | PCR more sensitive than culture |
| 37209668 | Prosthetic joint infection review | Culture ~10% sensitive |
| 10537781 | Ocular cat-scratch disease | B. henselae as leading POGS cause (key differential) |
| 38564047 | Tularemia vaccine review | No licensed human vaccine; LVS unapproved |
| 24734221 | New therapeutic approaches | Antibiotic post-exposure prophylaxis |
| 39669787 | Non-vaccinal prophylaxis | Prophylaxis strategy |
| 22734313 | Two glandular cases, Turkey | Zoonotic transmission routes |
| 39312633 | Pediatric case series | Zoonotic 86.7%, waterborne 13.3%; form distribution |
| 36099382 | Kosovo pediatric outbreak | Fever 97%, lymphadenopathy 94% |
| 42749847 | Invasive intervention in pediatric tularemia | Diagnostic delay → suppurative lymphadenitis |
| 21687406 | Immune subversion review | ID ~15 organisms; immune evasion; T-cell immunity |
| 24614659 | Zebrafish infection model | Macrophage tropism; granuloma-like structures |
| 34690967 | Nlrp3 and susceptibility | Host NLRP3 increases susceptibility (mouse) |
| 23349802 | Myeloid IKKβ | NF-κB control of host response to LVS |
| 20220165 | Immunochromatographic test | Rapid serodiagnosis sensitivity/specificity |
| 41385785 | Congenital tularemia, Utah | Congenital/neonatal transmission |
Consistency assessment. The evidence is internally consistent: multiple independent case series converge on oculoglandular tularemia representing ~1–3% of cases; susceptibility data across two continents agree on uniform first-line efficacy; and mechanistic studies across mouse, macrophage, and zebrafish systems converge on the T6SS→AIM2 axis. No contradictory findings were encountered.
No formal hypotheses were rejected during the investigation. The investigation confirmed 10 findings that collectively support the following propositions:
Report compiled from 54 reviewed literature items across 5 investigation iterations; 10 findings confirmed. Evidence types span human clinical case series and reviews, model-organism (mouse, zebrafish) studies, and in vitro macrophage mechanistic work.
Checked with linkml-reference-validator 0.3.0rc1.
| Outcome | Count |
|---|---|
| References checked | 29 |
| Resolved | 29 |
| Unresolved (possible confabulation) | 0 |
| Unverifiable | 0 |
| Quoted claims checked | 24 |
| Quoted claims found in source | 22 |
| Quoted claims not found in source | 2 |
| References weighed for topical relevance | 29 |
| On topic | 20 |
| Off topic | 0 |
Searched the abstract, any retrieved full text, and the title. A quote drawn from a part of the paper that was not retrieved will appear here too, so check before treating one as invented:
Every one of these was searched against an abstract alone, with no full text retrieved - marked abstract only below. Where full text can be fetched, re-running with it will settle them; where the source publishes only a summary to PubMed, as GeneReviews chapters do, it will not, and the quote has to be checked by hand against the chapter itself.
PMID:11228320 (abstract only): "Parinaud's oculoglandular syndrome should be considered in the differential diagnosis of a patient presenting with unilateral granulomatous conjunctivitis, painful preauricular, and submandibular lymphadenopathy combined with systemic symptoms of general malaise and fever. Tularemia is one etiology of Parinaud's oculoglandular syndrome."PMID:22734313 (abstract only): "F tularensis is transmitted to humans by handling infected animals, ingestion of contaminated food or water, inhalation of infective aerosols, and arthropod bites."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 | 10 |
| Terms named correctly | 6 |
| Terms named as a different term | 1 |
| Terms whose name is worth a second look | 3 |
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:0000198 (1 mention) - the report calls it "periorbital edema analog"; HP calls it Absence of Stensen ductThe 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:
HP:0002840 (1 mention) - the report calls it "lymphadenitis analog"; HP calls it LymphadenitisNCIT:C405 (1 mention) - the report calls it "Ciprofloxacin"; NCIT calls it Cyclophosphamide, and lists "Carloxan" among its other namesNCIT:C562 (1 mention) - the report calls it "Doxycycline"; NCIT calls it Idarubicin, and lists "4-Demethoxydaunomycin" among its other names