Chancroid is a sexually acquired bacterial genital-ulcer disease caused by Haemophilus ducreyi. Local inoculation of the fastidious Gram-negative coccobacillus produces one or more soft, painful, nonindurated genital ulcers and can extend through regional lymphatics to tender inguinal lymph nodes that suppurate into buboes. The genital ulcer is an important cofactor for HIV-1 transmission and acquisition. Single-dose azithromycin or ceftriaxone and multi-day erythromycin or ciprofloxacin regimens are effective antimicrobial therapies, with needle aspiration or incision and drainage for tense fluctuant buboes.
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name: Chancroid
creation_date: '2026-09-25T00:00:00Z'
category: Infectious Disease
description: >-
Chancroid is a sexually acquired bacterial genital-ulcer disease caused by
Haemophilus ducreyi. Local inoculation of the fastidious Gram-negative
coccobacillus produces one or more soft, painful, nonindurated genital ulcers
and can extend through regional lymphatics to tender inguinal lymph nodes that
suppurate into buboes. The genital ulcer is an important cofactor for HIV-1
transmission and acquisition. Single-dose azithromycin or ceftriaxone and
multi-day erythromycin or ciprofloxacin regimens are effective antimicrobial
therapies, with needle aspiration or incision and drainage for tense fluctuant
buboes.
disease_term:
preferred_term: chancroid
term:
id: MONDO:0001797
label: chancroid
parents:
- Bacterial Infection
- Sexually transmitted infection
classifications:
harrisons_chapter:
- classification_value: INFECTIOUS_DISEASES
infectious_agent:
- name: Haemophilus ducreyi
description: >-
A human-adapted Gram-negative coccobacillus that causes chancroid after
local sexual acquisition at genital skin or mucosa.
infectious_agent_term:
preferred_term: Haemophilus ducreyi
term:
id: NCBITaxon:730
label: '[Haemophilus] ducreyi'
evidence:
- reference: PMID:28081686
reference_title: "2017 European guideline for the management of chancroid."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Chancroid is a sexually acquired infection caused by Haemophilus ducreyi.
explanation: >-
The practice guideline identifies H. ducreyi as the causative bacterium of
sexually acquired chancroid.
transmission:
- name: Sexual transmission
description: >-
H. ducreyi is acquired through sexual contact that inoculates the organism
into susceptible genital skin or mucosa.
evidence:
- reference: PMID:28081686
reference_title: "2017 European guideline for the management of chancroid."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Chancroid is a sexually acquired infection caused by Haemophilus ducreyi.
explanation: >-
Supports the sexual-acquisition route for genital chancroid.
environmental:
- name: Male circumcision
description: >-
Male circumcision is associated with a reduced risk of genital-ulcer
sexually transmitted infections, including chancroid, and is protective
against H. ducreyi acquisition.
influences_mechanisms:
- target: H. ducreyi Genital Inoculation
environmental_effect: PROTECTS_AGAINST
causal_link_type: DIRECT
description: >-
Circumcision reduces the susceptible genital epithelium and is associated
with lower risk of genital-ulcer STIs including chancroid.
evidence:
- reference: PMID:16581731
reference_title: "Male circumcision and risk of syphilis, chancroid, and genital herpes: a systematic review and meta-analysis."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: "Circumcised men were at lower risk of chancroid in six of seven studies"
explanation: Circumcised men had a lower risk of chancroid across the reviewed studies.
evidence:
- reference: PMID:16581731
reference_title: "Male circumcision and risk of syphilis, chancroid, and genital herpes: a systematic review and meta-analysis."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
quote_role: REVIEW_SYNTHESIS
snippet: >-
circumcised men are at lower risk of chancroid and syphilis
explanation: The meta-analysis concludes circumcised men are at lower risk of chancroid.
pathophysiology:
- name: H. ducreyi Genital Inoculation
description: >-
Sexual contact inoculates H. ducreyi into abraded genital epithelium or
dermis, creating a local extracellular bacterial focus that can either
resolve or progress toward a pustule and ulcer.
role: trigger
biological_processes:
- preferred_term: symbiont entry into host
modifier: INCREASED
term:
id: GO:0044409
label: symbiont entry into host
downstream:
- target: HgbA-Dependent Heme Acquisition
description: >-
The newly inoculated organism must recover heme from host hemoglobin to
establish early experimental infection.
evidence:
- reference: PMID:26374122
reference_title: >-
The Human Skin Microbiome Associates with the Outcome of and Is Influenced
by Bacterial Infection.
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
After inoculation, papules form and either spontaneously resolve or
progress to pustules.
explanation: >-
The human H. ducreyi challenge model demonstrates the local papule stage
that follows experimental inoculation and then either resolves or
progresses.
- name: HgbA-Dependent Heme Acquisition
description: >-
The surface hemoglobin receptor HgbA allows H. ducreyi to acquire heme from
host hemoglobin. Heme uptake is an obligate early nutritional step and is
vulnerable to HgbA-directed antibodies in the swine model.
role: central_effector
downstream:
- target: LspA-Dependent Phagocyte Evasion
description: >-
Nutritionally established organisms must evade killing by neutrophils and
macrophages at the inoculation site.
evidence:
- reference: PMID:21646451
reference_title: >-
Passive immunization with a polyclonal antiserum to the hemoglobin
receptor of Haemophilus ducreyi confers protection against a homologous
challenge in the experimental swine model of chancroid.
supports: SUPPORT
evidence_source: IN_VITRO
quote_role: BACKGROUND
snippet: >-
Haemophilus ducreyi, the etiologic agent of chancroid, has an obligate
requirement for heme.
explanation: >-
Supports H. ducreyi heme dependence, a bacteriological growth requirement
established in culture and the nutritional constraint captured by this node.
- reference: PMID:21646451
reference_title: >-
Passive immunization with a polyclonal antiserum to the hemoglobin
receptor of Haemophilus ducreyi confers protection against a homologous
challenge in the experimental swine model of chancroid.
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
quote_role: BACKGROUND
snippet: >-
only the hemoglobin receptor, HgbA, is required to establish infection
during the early stages of the experimental human model of chancroid
explanation: >-
Identifies HgbA as the TonB-dependent hemoglobin receptor required in the
early human challenge model.
- name: LspA-Dependent Phagocyte Evasion
description: >-
H. ducreyi LspA1 and LspA2 large supernatant proteins inhibit phagocytosis
by macrophage and myelocytic cells, enabling extracellular persistence
among recruited polymorphonuclear leukocytes and macrophages in the lesion.
role: central_effector
cell_types:
- preferred_term: neutrophil
term:
id: CL:0000775
label: neutrophil
- preferred_term: macrophage
term:
id: CL:0000235
label: macrophage
biological_processes:
- preferred_term: phagocytosis
modifier: DECREASED
term:
id: GO:0006909
label: phagocytosis
downstream:
- target: Dysregulated Cutaneous Inflammatory Pustule
description: >-
Phagocytic failure permits the host response to mature into the
hyperinflammatory pustule-forming branch.
evidence:
- reference: PMID:15271912
reference_title: >-
Expression of the LspA1 and LspA2 proteins by Haemophilus ducreyi is
required for virulence in human volunteers.
supports: SUPPORT
evidence_source: IN_VITRO
snippet: >-
an lspA1 lspA2 double mutant does not inhibit phagocytosis by macrophage
and myelocytic cell lines in vitro
explanation: >-
In vitro, the lspA1 lspA2 double mutant loses the anti-phagocytic activity,
supporting LspA1/LspA2 as the anti-phagocytic virulence proteins.
- reference: PMID:15271912
reference_title: >-
Expression of the LspA1 and LspA2 proteins by Haemophilus ducreyi is
required for virulence in human volunteers.
supports: SUPPORT
evidence_source: MODEL_ORGANISM
snippet: >-
is attenuated in an experimental rabbit model of chancroid
explanation: >-
The lspA1 lspA2 double mutant is attenuated in the rabbit chancroid model,
confirming the virulence contribution in vivo.
- reference: PMID:15271912
reference_title: >-
Expression of the LspA1 and LspA2 proteins by Haemophilus ducreyi is
required for virulence in human volunteers.
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
expression of LspA1 and LspA2 facilitates the ability of H. ducreyi to
initiate disease and to progress to pustule formation in humans
explanation: >-
The human challenge study showed that the LspA1/LspA2 double mutant formed
smaller papules and no pustules, establishing this evasion step as an
early virulence determinant.
- name: CdtB-Mediated Host DNA Damage
description: >-
Cytolethal distending toxin delivers CdtB into susceptible host cells, where
its DNase-like activity produces DNA double-strand breaks that trigger DNA
damage signaling, cell-cycle arrest, distension, and death of epithelial,
keratinocyte, and immune cells.
role: central_effector
cell_types:
- preferred_term: keratinocyte
term:
id: CL:0000312
label: keratinocyte
biological_processes:
- preferred_term: DNA damage response
modifier: INCREASED
term:
id: GO:0006974
label: DNA damage response
- preferred_term: regulation of cell cycle
modifier: INCREASED
term:
id: GO:0051726
label: regulation of cell cycle
downstream:
- target: Dysregulated Cutaneous Inflammatory Pustule
description: >-
CDT-mediated host-cell injury and the inflammatory response converge at
the local tissue-damage step.
evidence:
- reference: PMID:17123907
reference_title: "The contribution of cytolethal distending toxin to bacterial pathogenesis."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
Once inside the cell, CdtB enters the nucleus and exhibits a DNase I-like
activity that results in DNA double-strand breaks.
explanation: >-
Establishes the nuclear DNase-like mechanism of the CdtB toxin subunit.
- reference: PMID:17123907
reference_title: "The contribution of cytolethal distending toxin to bacterial pathogenesis."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
The eukaryotic cell responds to the DNA double-strand breaks by initiating
a regulatory cascade that results in cell cycle arrest, cellular
distension, and cell death.
explanation: >-
Links CDT-induced double-strand breaks to the downstream host cell-cycle
and death phenotypes.
- name: Dysregulated Cutaneous Inflammatory Pustule
description: >-
In pustule-forming hosts, neutrophils, macrophages, T cells, and myeloid
dendritic cells mount a dysregulated local response in which phagocytes fail
to clear extracellular H. ducreyi, allowing papules to progress to pustules
and then painful ulcers.
role: consequence
cell_types:
- preferred_term: neutrophil
term:
id: CL:0000775
label: neutrophil
- preferred_term: macrophage
term:
id: CL:0000235
label: macrophage
biological_processes:
- preferred_term: inflammatory response
modifier: INCREASED
term:
id: GO:0006954
label: inflammatory response
downstream:
- target: Painful genital ulcer
description: The suppurative focus breaks down into a soft, painful genital ulcer.
- target: Inguinal lymphadenopathy
description: >-
Local genital infection can drain to regional inguinal lymph nodes,
forming tender, fluctuant buboes.
- target: Enhanced HIV Transmission and Acquisition
description: >-
The genital ulcer acts as a cofactor that enhances HIV-1 transmission and
acquisition.
causal_link_type: INDIRECT_KNOWN_INTERMEDIATES
evidence:
- reference: PMID:17893130
reference_title: >-
Dysregulated immune profiles for skin and dendritic cells are associated
with increased host susceptibility to Haemophilus ducreyi infection in
human volunteers.
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
In experimentally infected human volunteers, the cutaneous immune response
to Haemophilus ducreyi is orchestrated by serum, polymorphonuclear
leukocytes, macrophages, T cells, and myeloid dendritic cells (DC).
explanation: >-
Identifies the major inflammatory cell types in the human H. ducreyi
lesion.
- reference: PMID:17893130
reference_title: >-
Dysregulated immune profiles for skin and dendritic cells are associated
with increased host susceptibility to Haemophilus ducreyi infection in
human volunteers.
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
This response either leads to spontaneous resolution of infection or
progresses to pustule formation, which is associated with the failure of
phagocytes to ingest the organism and the presence of Th1 and regulatory T
cells.
explanation: >-
Supports the host-response branch between spontaneous resolution and
pustule formation.
- name: Enhanced HIV Transmission and Acquisition
description: >-
The chancroid genital ulcer is an important cofactor in both the
transmission and the acquisition of HIV-1: the disrupted mucosal barrier and
inflammatory infiltrate increase HIV shedding and susceptibility, which is
why chancroid burden tracks HIV burden in the worst-affected regions.
role: consequence
evidence:
- reference: PMID:15918786
reference_title: "Treatment of chancroid in resource-poor countries."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
quote_role: REVIEW_SYNTHESIS
snippet: >-
Chancroid, formerly a major cause of the genital ulcer disease syndrome,
remains an important cofactor in both the transmission and acquisition of
HIV-1 infection.
explanation: Names chancroid as a cofactor in HIV-1 transmission and acquisition.
- reference: PMID:11584729
reference_title: "Eradicating chancroid."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
quote_role: REVIEW_SYNTHESIS
snippet: >-
Genital ulcers are important cofactors of HIV transmission in the countries
most severely affected by HIV/AIDS.
explanation: Genital ulcers, including chancroid, are cofactors of HIV transmission.
- name: Bacterial mRNA Translation by the Ribosome (Macrolide Target)
description: >-
H. ducreyi depends on 70S-ribosome translation. Azithromycin and
erythromycin act through the shared macrolide target on the bacterial 50S
ribosomal subunit, inhibiting bacterial protein synthesis and clearing the
organism.
role: therapeutic_vulnerability
conforms_to: "bacterial_protein_synthesis_inhibition#Bacterial mRNA Translation by the Ribosome"
biological_processes:
- preferred_term: translation
term:
id: GO:0006412
label: translation
- name: H. ducreyi Peptidoglycan Cross-Linking (Ceftriaxone Target)
description: >-
As a cephalosporin beta-lactam, ceftriaxone acts on the conserved
penicillin-binding-protein transpeptidase reaction that cross-links the
bacterial peptidoglycan cell wall.
role: therapeutic_vulnerability
conforms_to: "bacterial_cell_wall_synthesis_inhibition#Peptidoglycan Cross-Linking by Penicillin-Binding Proteins"
biological_processes:
- preferred_term: Peptidoglycan-Based Cell Wall Biogenesis
term:
id: GO:0009273
label: peptidoglycan-based cell wall biogenesis
phenotypes:
- name: Painful genital ulcer
description: >-
Soft, painful, nonindurated genital ulcers are the characteristic local
lesions of chancroid.
category: Genitourinary
frequency: VERY_FREQUENT
phenotype_term:
preferred_term: Genital ulcers
term:
id: HP:0003249
label: Genital ulcers
evidence:
- reference: PMID:28081686
reference_title: "2017 European guideline for the management of chancroid."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
The infection is characterized by one or more genital ulcers, which are
soft and painful, and regional lymphadenitis, which may develop into
buboes.
explanation: >-
Directly supports painful genital ulcers as the defining chancroid lesion.
- name: Inguinal lymphadenopathy
description: >-
Regional inguinal adenitis is a common extension of local genital infection
and can progress to fluctuant, suppurative buboes.
category: Lymphatic
frequency: FREQUENT
phenotype_term:
preferred_term: Inguinal lymphadenopathy
term:
id: HP:0034751
label: Inguinal lymphadenopathy
evidence:
- reference: PMID:6687703
reference_title: "Chancroid and granuloma inguinale."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Bubo formation is common and about half suppurate.
explanation: >-
Supports regional suppurative bubo formation as a frequent complication of
chancroid.
prevalence:
- population: Worldwide
measure_type: UNKNOWN
prevalence_class: RARE
notes: >-
Now considered rare in many parts of the world, though it persists in
regional foci such as Malawi.
evidence:
- reference: PMID:41646416
reference_title: "Clinical characteristics of Haemophilus ducreyi genital ulcer disease in Malawi."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
quote_role: BACKGROUND
snippet: >-
Chancroid, a sexually transmitted infection (STI) caused by Haemophilus
ducreyi resulting in genital ulcer disease (GUD), is now considered rare in
many parts of the world.
explanation: Establishes chancroid as now rare in many regions.
diagnosis:
- name: Multiplex nucleic acid amplification testing of ulcer swabs
description: >-
Because H. ducreyi is fastidious and hard to culture, genital-ulcer disease
is increasingly diagnosed by multiplex PCR/NAAT of ulcer swabs that
simultaneously detects H. ducreyi, Treponema pallidum, and herpes simplex
virus.
diagnosis_term:
preferred_term: multiplex nucleic acid amplification test of ulcer swabs
term:
id: NCIT:C20055
label: Nucleic Acid Amplification Test
evidence:
- reference: PMID:19066198
reference_title: "Evaluation of multiplex real-time PCR for detection of Haemophilus ducreyi, Treponema pallidum, herpes simplex virus type 1 and 2 in the diagnosis of genital ulcer disease in the Rakai District, Uganda."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Two multiplex real-time PCR reactions were used to detect H ducreyi/and
HSV-1/HSV-2 in ulcer swabs from 100 people with symptomatic genital ulcers
in rural Rakai, Uganda.
explanation: Multiplex real-time PCR of ulcer swabs detects H. ducreyi in genital-ulcer disease.
- reference: PMID:9918324
reference_title: "The etiology of genital ulcer disease by multiplex polymerase chain reaction and relationship to HIV infection among patients attending sexually transmitted disease clinics in Pune, India."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
processed in a multiplex PCR assay (M-PCR; Roche, Branchburg, NJ) for
simultaneous detection of HSV, Treponema pallidum, and Hemophilus ducreyi.
explanation: A multiplex PCR assay simultaneously detects H. ducreyi among genital-ulcer pathogens.
treatments:
- name: Azithromycin Therapy
description: >-
Single-dose oral azithromycin is a recommended macrolide regimen for
chancroid and is supported by randomized-trial evidence as a convenient
first-line option.
treatment_term:
preferred_term: Pharmacotherapy
term:
id: NCIT:C15986
label: Pharmacotherapy
therapeutic_agent:
- preferred_term: azithromycin
term:
id: CHEBI:2955
label: azithromycin
therapeutic_modality: SMALL_MOLECULE
target_mechanisms:
- target: Bacterial mRNA Translation by the Ribosome (Macrolide Target)
treatment_effect: INHIBITS
description: >-
Azithromycin acts as a macrolide ribosome-targeting antibacterial agent
that inhibits H. ducreyi protein synthesis.
evidence:
- reference: PMID:10028106
reference_title: "Treatment of chancroid, 1997."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
The recommended therapies--with azithromycin (1 g orally, once),
ceftriaxone (250 mg intramuscularly, once), or erythromycin (500 mg
orally, four times a day for 7 days)--appear highly effective in the United
States
explanation: >-
Supports azithromycin as a recommended single-dose oral regimen for
chancroid.
- reference: PMID:29226307
reference_title: Macrolides for treatment of Haemophilus ducreyi infection in sexually active adults.
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Low quality evidence suggests that azithromycin could be considered as the
first therapeutic alternative, based on their mono-dose oral
administration, with a similar safety and effectiveness profile, when it is
compared with long-term erythromycin use.
explanation: >-
Cochrane review evidence supports single-dose azithromycin as an effective
and convenient macrolide regimen compared with longer erythromycin
courses.
- name: Ceftriaxone Therapy
description: >-
Single-dose intramuscular ceftriaxone is a recommended cephalosporin
beta-lactam regimen for chancroid.
treatment_term:
preferred_term: Pharmacotherapy
term:
id: NCIT:C15986
label: Pharmacotherapy
therapeutic_agent:
- preferred_term: ceftriaxone
term:
id: CHEBI:29007
label: ceftriaxone
therapeutic_modality: SMALL_MOLECULE
target_mechanisms:
- target: H. ducreyi Peptidoglycan Cross-Linking (Ceftriaxone Target)
treatment_effect: INHIBITS
description: >-
Ceftriaxone inhibits penicillin-binding-protein cross-linking of the H.
ducreyi peptidoglycan cell wall.
evidence:
- reference: PMID:10028106
reference_title: "Treatment of chancroid, 1997."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
The recommended therapies--with azithromycin (1 g orally, once),
ceftriaxone (250 mg intramuscularly, once), or erythromycin (500 mg
orally, four times a day for 7 days)--appear highly effective in the United
States
explanation: >-
Supports single-dose intramuscular ceftriaxone as a recommended chancroid
regimen.
- name: Erythromycin Therapy
description: >-
A seven-day erythromycin course is a recommended macrolide alternative to
single-dose azithromycin or ceftriaxone.
treatment_term:
preferred_term: Pharmacotherapy
term:
id: NCIT:C15986
label: Pharmacotherapy
therapeutic_agent:
- preferred_term: erythromycin
term:
id: CHEBI:48923
label: erythromycin
therapeutic_modality: SMALL_MOLECULE
target_mechanisms:
- target: Bacterial mRNA Translation by the Ribosome (Macrolide Target)
treatment_effect: INHIBITS
description: >-
Erythromycin acts on the same bacterial 50S ribosomal target as other
macrolide antibacterials.
evidence:
- reference: PMID:10028106
reference_title: "Treatment of chancroid, 1997."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
The recommended therapies--with azithromycin (1 g orally, once),
ceftriaxone (250 mg intramuscularly, once), or erythromycin (500 mg
orally, four times a day for 7 days)--appear highly effective in the United
States
explanation: >-
Supports erythromycin as a recommended multi-day oral regimen for
chancroid.
- name: Ciprofloxacin Therapy
description: >-
Oral ciprofloxacin twice daily for three days is an effective fluoroquinolone
alternative for chancroid where local susceptibility supports its use.
treatment_term:
preferred_term: Pharmacotherapy
term:
id: NCIT:C15986
label: Pharmacotherapy
therapeutic_agent:
- preferred_term: ciprofloxacin
term:
id: CHEBI:100241
label: ciprofloxacin
therapeutic_modality: SMALL_MOLECULE
evidence:
- reference: PMID:10028106
reference_title: "Treatment of chancroid, 1997."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
The alternative regimen of ciprofloxacin proposed in 1993 (500 mg orally,
twice a day for 3 days) is as effective as the recommended therapies
explanation: >-
Supports ciprofloxacin twice daily for three days as an effective
alternative chancroid regimen.
- name: Fluctuant Bubo Drainage
description: >-
Tense or fluctuant chancroid buboes can require needle aspiration or incision
and drainage in addition to antimicrobial therapy.
therapeutic_modality: SURGERY
target_mechanisms:
- target: Inguinal lymphadenopathy
treatment_effect: INHIBITS
description: >-
Drainage decompresses the suppurative regional inguinal lymph node (bubo)
that forms downstream of the ulcerative cutaneous H. ducreyi lesion.
evidence:
- reference: PMID:41046959
reference_title: Chancroid.
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Buboes may need additional treatment with either aspiration or excision and
drainage.
explanation: >-
Supports procedural drainage as an adjunct when suppurative chancroid
buboes develop.
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.
Create Chancroid infectious disease entry · 2026-09-25T05:33:49Z · View source
Created a new Chancroid entry from OpenScientist deep research with H. ducreyi infectious-agent curation, sexual transmission, a heme acquisition and phagocyte-evasion pathophysiology chain, genital-ulcer and inguinal-lymphadenopathy phenotypes, and azithromycin/ceftriaxone/erythromycin/ciprofloxacin plus bubo-drainage treatments.
Disease: Chancroid | MONDO: MONDO:0001797 | ICD-10: A57 | ICD-11: 1A75 | MeSH: D002602 | SNOMED CT: 3419005 | DO: DOID:11165 | Category: Infectious Disease Causative agent: Haemophilus ducreyi (Gram-negative coccobacillus; NCBI Taxon 730)
Chancroid is an acute, curable, sexually transmitted bacterial infection caused by the fastidious Gram-negative coccobacillus Haemophilus ducreyi. It classically presents, after a 3–5 day incubation, as one or more soft, painful, non-indurated genital ulcers with tender regional (inguinal) lymphadenitis that progresses to suppurating buboes in roughly half of affected individuals. It is a localized infectious disease, not a heritable disorder — there are no human causal genes, pathogenic germline variants, inheritance patterns, or Mendelian genetics associated with it. Consequently, several sections of the standard disease-characteristics template (causal genes, variant classification, host genetic models, karyotyping, etc.) are not applicable; the "genetics" of chancroid resides in the pathogen genome and virulence factors, and the "host genetics" is limited to immune-response determinants of infection outcome.
The pathophysiology is driven by a defined set of H. ducreyi virulence factors — HgbA-mediated heme/hemoglobin acquisition (an obligate nutritional requirement and a protective vaccine target), DsrA serum resistance, the anti-phagocytic lipoproteins LspA1/LspA2, and the genotoxic tripartite cytolethal distending toxin (CdtA/CdtB/CdtC) — acting together with the host cutaneous and dendritic-cell immune response, which ultimately determines whether an inoculation site resolves spontaneously or progresses to a pustule/ulcer. Diagnosis is made within the genital-ulcer-disease (GUD) syndrome by multiplex nucleic acid amplification testing (NAAT/PCR), because H. ducreyi culture is insensitive and no FDA-cleared commercial assay is widely available. Treatment is highly effective: single-dose azithromycin 1 g PO or ceftriaxone 250 mg IM, or multi-day ciprofloxacin or erythromycin, with buboes sometimes requiring aspiration or drainage.
Chancroid causes no direct mortality and is fully curable, but its dominant public-health importance is as a cofactor for HIV transmission and acquisition — the countries with the greatest HIV burden historically had the highest chancroid prevalence. Male circumcision and simple topical hygiene are protective, and the infection depends on high-partner-change sexual networks (commercial sex work), giving it a "precarious epidemiological niche" that makes it locally eradicable. Chancroid has declined dramatically worldwide and is now rare in high-income countries, but persists in endemic pockets (e.g., ~22% of GUD PCR-positive in Malawi, 2019–2022). Notably, over the past two decades H. ducreyi has re-emerged as a major cause of non-sexually-transmitted chronic skin ulcers in children in yaws-endemic tropical regions, where it is the leading differential diagnosis for yaws.
Multiple authoritative reviews (2017–2026) converge on the definition of chancroid as a sexually acquired genital ulcerative disease caused by the fastidious Gram-negative coccobacillus H. ducreyi, characterized by one or more soft, painful genital ulcers and regional lymphadenitis that may develop into buboes. The 2017 European guideline states: "Chancroid is a sexually acquired infection caused by Haemophilus ducreyi. The infection is characterized by one or more genital ulcers, which are soft and painful, and regional lymphadenitis, which may develop into buboes" (PMID: 28081686). A 2026 review reaffirms: "Chancroid, caused by Haemophilus ducreyi, is a sexually transmitted genital ulcerative condition associated with inguinal bubo formation" (PMID: 41046959). Key identifiers: ICD-10 A57, MeSH D002602, MONDO:0001797. This information derives from aggregated disease-level resources (guidelines, reviews) and controlled human infection studies, not individual EHR records.
The incubation period is 3–5 days. The typical lesion is a soft, non-indurated ulcer with a dirty exudate at the base that is painful and exquisitely tender to palpation — a presentation that contrasts sharply with the painless, indurated chancre of primary syphilis. Bubo (regional lymphadenitis) formation is common, and about half of buboes suppurate: "The incubation period is 3-5 days and the typical lesion is a soft nonindurated ulcer with a dirty exudate at the base, which is painful and exquisitely tender to palpation. Bubo formation is common and about half suppurate" (PMID: 6687703). Lesions are usually obvious in males but may go undetected in women. Disease is localized rather than systemic.
Suggested ontology terms (phenotypes): genital ulcer (HPO region HP:0500089), inguinal lymphadenopathy, painful skin lesion. Anatomical (UBERON): penis (UBERON:0000989), prepuce, labia, inguinal lymph node (UBERON:0002450).
H. ducreyi cytolethal distending toxin (CDT) is a tripartite toxin (CdtA, CdtB, CdtC). CdtB possesses DNase-I-like activity that produces DNA double-strand breaks, triggering G2/M cell-cycle arrest, cellular distension, and death of epithelial cells, keratinocytes, and immune cells: "Once inside the cell, CdtB enters the nucleus and exhibits a DNase I-like activity that results in DNA double-strand breaks. The eukaryotic cell responds ... by initiating a regulatory cascade that results in cell cycle arrest, cellular distension, and cell death" (PMID: 17123907).
In the controlled human challenge model, the LspA1/LspA2 proteins (which inhibit phagocytosis) are required to initiate disease. An lspA1 lspA2 double mutant produced significantly smaller papules and no pustules: "The pustule formation rates were 44% (95% CI, 5.8 to 77.6%) at parent sites and 0% (95% CI, 0 to 39.4%) at mutant sites (P = 0.009)" (PMID: 15271912). Papule size was 24.8 vs 39.1 mm² (P=0.0002). Suggested GO terms: DNA catabolic process/deoxyribonuclease activity (CdtB), negative regulation of phagocytosis (LspA1/A2), cell cycle arrest.
H. ducreyi has an obligate requirement for heme, which it acquires from the human host via TonB-dependent transporters. Of three such receptors, only the hemoglobin receptor HgbA is required to establish infection in the early human challenge model. Active immunization with native HgbA (nHgbA) confers complete protection in the experimental swine model: "only the hemoglobin receptor, HgbA, is required to establish infection during the early stages of the experimental human model of chancroid. Active immunization with a native preparation of HgbA (nHgbA) confers complete protection in the experimental swine model of chancroid" (PMID: 21646451). Passive transfer of anti-nHgbA serum protects against homologous (but not heterologous) challenge by blocking hemoglobin binding. HgbA surface loops 4, 5, and 7 are immunogenic; loops 5 and 7 are essential for hemoglobin binding.
In experimentally infected human volunteers, the cutaneous response to H. ducreyi is orchestrated by serum, polymorphonuclear leukocytes (neutrophils), macrophages, T cells, and myeloid dendritic cells. This response either resolves spontaneously or progresses to pustule formation: "This response either leads to spontaneous resolution of infection or progresses to pustule formation, which is associated with the failure of phagocytes to ingest the organism and the presence of Th1 and regulatory T cells" (PMID: 17893130). Volunteers reproducibly segregate into pustule-formers (PP) and resolvers (RR): RR sites show transcripts of effective immune function, while PP sites show a hyperinflammatory, dysregulated response, with differential dendritic-cell polarization (DC1 vs regulatory DC). This is the closest thing to a host-immunological susceptibility determinant for chancroid. Suggested CL terms: neutrophil (CL:0000775), macrophage (CL:0000235), myeloid dendritic cell (CL:0000782), T-helper 1 cell, regulatory T cell.
Recommended first-line therapies are azithromycin 1 g PO once, ceftriaxone 250 mg IM once, or erythromycin 500 mg PO 4×/day for 7 days; ciprofloxacin 500 mg twice daily for 3 days is an effective alternative: "The recommended therapies--with azithromycin (1 g orally, once), ceftriaxone (250 mg intramuscularly, once), or erythromycin (500 mg orally, four times a day for 7 days)--appear highly effective in the United States" (PMID: 10028106). HIV-infected and uncircumcised men respond less well, and single-dose regimens may fail in HIV co-infection, requiring follow-up. Suppurative buboes may require drainage: "Buboes may need additional treatment with either aspiration or excision and drainage" (PMID: 41046959). A Cochrane review of 7 RCTs (875 participants) found no statistically significant difference between macrolides and comparators, supporting single-dose azithromycin as a convenient first-line choice (PMID: 29226307).
NCIT terms: Azithromycin (C1052), Ceftriaxone (C377), Ciprofloxacin (C376), Erythromycin (C480). CHEBI: azithromycin (CHEBI:2955), ceftriaxone (CHEBI:29007).
Chancroid remains an important cofactor in both transmission and acquisition of HIV-1, and countries with the greatest HIV burden historically had the highest chancroid prevalence: "Chancroid, formerly a major cause of the genital ulcer disease syndrome, remains an important cofactor in both the transmission and acquisition of HIV-1 infection. Those countries with the greatest burden of HIV also have some of the highest prevalence rates of chancroid worldwide" (PMID: 15918786). Quantitatively: "Chancroid is a common cause of genital ulcer in all 18 countries where adult HIV prevalence surpasses 8% and is rare in countries with low-level HIV epidemics" (PMID: 11584729). This synergy — ulcer disruption of the epithelial barrier plus recruitment of HIV-target immune cells — is the principal reason chancroid control was promoted as an HIV-prevention strategy.
A systematic review/meta-analysis found circumcised men at lower risk of chancroid in six of seven studies (individual RRs 0.12 to 1.11): "Circumcised men were at lower risk of chancroid in six of seven studies (individual study RRs: 0.12 to 1.11)" (PMID: 16581731). Both circumcision and simple topical hygiene greatly reduce infection risk: "Both simple, topical hygiene and male circumcision greatly reduce risk of infection" (PMID: 11584729). H. ducreyi depends on sexual networks with high partner-change rates (commercial sex work, male mobility); eliminating infection from these core groups causes chancroid to disappear from the wider community. Risk factors: commercial sex work, multiple/casual partners, poor genital hygiene, uncircumcised status, low socioeconomic status, and HIV co-infection.
Chancroid is diagnosed within the GUD workup alongside HSV-1/2 and Treponema pallidum. Multiplex real-time PCR reliably detects all three from ulcer swabs and outperforms culture and serology: "Real-time PCR technology can provide sensitive, rapid and reproducible evaluation of GUD aetiology in a resource-limited setting" (PMID: 19066198). H. ducreyi is fastidious and hard to culture (special media, ~75% maximum sensitivity). Etiology of GUD varies geographically; multiplex PCR in Pune, India detected H. ducreyi in 23% of GUD: "The etiology of GUD as determined by M-PCR was HSV (26%), H. ducreyi (23%), T. pallidum (10%), and multiple infections (7%)" (PMID: 9918324). CDC probable-case clinical criteria: painful genital ulcer(s); no evidence of T. pallidum by darkfield/NAAT/serology ≥7 days after onset; typical presentation with regional lymphadenopathy; negative HSV test.
Three complementary models exist: (1) the temperature-dependent rabbit model for virulence/vaccine studies (PMID: 22100216); (2) the experimental swine (pig) model, in which nHgbA vaccination confers complete protection; and (3) the human challenge model, in which volunteers are inoculated on the upper arm with H. ducreyi 35000HP: "We developed a human infection model for Haemophilus ducreyi in which human volunteers are inoculated on the upper arm. After inoculation, papules form and either spontaneously resolve or progress to pustules" (PMID: 26374122). The human model has defined which virulence factors are required (LspA1/LspA2 required; CpxR not required — PMID: 21606544) and links the skin microbiome to outcome. There is no established natural animal-reservoir disease; H. ducreyi is considered an obligate human pathogen, though Class I strains circulate in non-human primates in some regions.
Over the past two decades the recognized epidemiological spectrum of H. ducreyi expanded to include non-sexually-transmitted cutaneous ulcers in children in tropical regions (Western Pacific, sub-Saharan Africa), where it is the most common differential diagnosis for yaws: "the recognized epidemiological spectrum of H. ducreyi has expanded to include nonsexually transmitted cutaneous ulcers in children in tropical regions. Genomic and microbiological studies have clarified its population structure, revealing two major lineages with limited divergence between genital and cutaneous isolates" (PMID: 41318902). Genomics reveals two major lineages (Class I, Class II); in Papua New Guinea, "Class II HD infections were more often represented by longer-lasting ulcers than Class I HD infections" (PMID: 39146379). PCR-confirmed H. ducreyi skin-ulcer prevalence reached 4.3% in Ghana (vs 2.3% yaws) and 5.3% in Tanzanian children with skin ulcers.
Chancroid causes no direct mortality and is fully curable, so survival/life-expectancy metrics are not applicable. It declined markedly worldwide over the 20th–21st centuries — now rare in high-income countries — but persists in endemic pockets. Its causative organism "is biologically vulnerable and occupies a precarious epidemiological niche" (PMID: 11584729), explaining why targeted control of core transmission groups can eliminate it locally. Current persistence: 22% of GUD PCR-positive in Malawi — "Among 618 participants with GUD, 137 (22%) tested positive for" (PMID: 41646416) — while in Australia "No H. ducreyi has been detected ... since 1998" (PMID: 16619156). Untreated complications include phagedenic ulcers, phimosis, and suppurative/fistulizing buboes; the dominant public-health impact is increased HIV acquisition/transmission.
Chancroid is an acute, curable, sexually transmitted bacterial genital ulcer disease caused by H. ducreyi (F001). Identifiers: MONDO:0001797; ICD-10 A57 ("Chancroid"); ICD-11 1A75; MeSH D002602; SNOMED CT 3419005; DO DOID:11165. There is no OMIM entry (non-genetic disease); Orphanet does not list it as a rare genetic disorder (it is a common infectious disease). Synonyms: soft chancre, ulcus molle, soft sore, chancre mou, Haemophilus ducreyi infection. Information is derived from aggregated disease-level resources (clinical guidelines, reviews) and controlled human infection studies rather than EHR-level individual patient data.
Causal factor: infectious — the Gram-negative coccobacillus H. ducreyi (F001). This is not a genetic disease; there are no human causal variants, susceptibility loci defined by GWAS, or modifier genes. The only host-genetic dimension is immunological: individuals reproducibly differ in whether they resolve or form pustules, driven by their cutaneous/dendritic-cell immune profile (F008), but no specific human risk allele has been mapped. Environmental/behavioral risk factors: commercial sex work, multiple or casual sexual partners, poor genital hygiene, uncircumcised status, low socioeconomic status, and HIV co-infection (F006, F002). Protective factors: male circumcision (RRs 0.12–1.11 across studies) and simple topical hygiene (F006). Gene–environment interactions: not applicable in the classical (human-heritable) sense; the analogous "pathogen genotype–host environment" interaction is that Class I vs Class II H. ducreyi strains cause ulcers of differing duration (F010).
| Phenotype | Type | Characteristics | Frequency | Suggested HPO |
|---|---|---|---|---|
| Painful genital ulcer(s), soft/non-indurated | Clinical sign | Adult onset; 3–5 d incubation; moderate–severe; self-limited if treated | Defining (~100%) | HP:0500089 (genital ulcer) |
| Tender inguinal lymphadenitis (bubo) | Clinical sign | Unilateral or bilateral; can suppurate/fistulize | ~50% develop buboes; ~half suppurate | inguinal lymphadenopathy |
| Exquisite ulcer tenderness | Symptom | Pain on palpation (distinguishes from syphilis) | High | painful skin lesion |
| Phimosis / phagedenic ulceration | Complication | Untreated/advanced cases | Minority | — |
Quality-of-life impact is significant but transient given curability: pain, genital disfigurement risk, sexual dysfunction, and psychosocial distress; no chronic disability in treated disease (F005, F012). Formal EQ-5D/SF-36 data specific to chancroid are not available.
Not applicable to human host genetics — no causal genes, pathogenic germline/somatic variants, allele frequencies, modifier genes, epigenetic marks, or chromosomal abnormalities are associated with chancroid susceptibility in humans. The relevant molecular information resides in the pathogen genome: key virulence loci include hgbA (hemoglobin receptor), lspA1/lspA2 (anti-phagocytic large supernatant proteins), dsrA (serum resistance), and the cdtABC operon (cytolethal distending toxin) (F003, F007). Population genomics defines two major H. ducreyi lineages, Class I and Class II, with limited divergence between genital and cutaneous isolates (F010).
Infectious agent: Haemophilus ducreyi (NCBI Taxonomy ID 730), an obligate human pathogen. Lifestyle/behavioral factors: high-partner-change sexual networks, commercial sex work, lack of circumcision, poor hygiene (F006). No chemical toxins, radiation, or occupational exposures are implicated. In the pediatric cutaneous-ulcer setting, transmission appears to be skin-to-skin/non-sexual, possibly facilitated by insect vectors and environmental contact, though this remains under study (F010).
Ordered causal chain (initiating infection → clinical ulcer):
Upstream events: bacterial entry, heme acquisition, immune evasion. Downstream events: CDT-mediated genotoxicity, host inflammatory branch, ulceration, bubo formation, HIV facilitation.
Cell types (CL): keratinocyte (CL:0000312), epithelial cell, neutrophil (CL:0000775), macrophage (CL:0000235), myeloid dendritic cell (CL:0000782), T-helper 1 cell, regulatory T cell. Biological processes (GO): DNA double-strand break (GO:0006302), cell cycle arrest (GO:0007050), negative regulation of phagocytosis (GO:0050765), inflammatory response (GO:0006954), heme transport (GO:0015886). Subcellular: host cell nucleus (CdtB target); bacterial outer membrane (HgbA, DsrA).
Primary organs: external genitalia — penis (UBERON:0000989), prepuce/foreskin, coronal sulcus, glans; in females: labia, fourchette, vaginal introitus, cervix. Secondary: inguinal lymph nodes (UBERON:0002450) → buboes. Body system: reproductive/integumentary and lymphatic. Tissue level: stratified squamous epithelium, dermis; cells: keratinocytes and infiltrating immune cells. Localization: genital and inguinal regions; laterality of buboes is typically unilateral but may be bilateral. In the emerging pediatric syndrome, ulcers occur on the limbs (non-genital skin) (F010).
Onset: acute; incubation 3–5 days after exposure (F005). Adult-onset in the classical STI form; childhood in the cutaneous-ulcer form (F010). Progression: papule → pustule → painful ulcer over days; buboes develop subsequently. Course: self-limited to a few weeks with treatment; untreated ulcers may persist/enlarge (phagedenic) for months. Duration: short/curable — not chronic or lifelong. Remission: treatment-induced cure is the norm; spontaneous resolution occurs in a subset (the RR immunophenotype in the human model) (F008). Critical intervention window: early antibiotic treatment prevents bubo suppuration and complications.
Inheritance: none — infectious, non-heritable; penetrance, expressivity, anticipation, mosaicism, founder effects, consanguinity, and carrier frequency are all not applicable. Epidemiology: globally declined; rare in high-income countries (no H. ducreyi in Australia since 1998; ~0.9% of GUD in Amsterdam and Rakai, Uganda) but persistent in endemic pockets (22% of GUD PCR-positive in Malawi 2019–2022; 23% in Pune, India) (F011, F012). Demographics: historically concentrated in tropical, resource-limited regions and in sexual-network core groups; male predominance in clinic series (ulcers more visible/symptomatic in men). Geographic strain distribution: Class I and Class II lineages, with Class II associated with longer-lasting ulcers in Papua New Guinea (F010).
Gold-standard practical test: multiplex real-time NAAT/PCR of ulcer swabs detecting H. ducreyi, T. pallidum, and HSV-1/2 simultaneously; superior to culture and serology (F011). Culture: fastidious, requires special enriched media, ~75% maximum sensitivity, not routinely available. No FDA-cleared commercial H. ducreyi PCR in many settings. Gram stain of ulcer exudate may show "school-of-fish"/"railroad-track" coccobacilli but is insensitive/nonspecific. CDC probable-case clinical criteria: painful ulcer(s); negative T. pallidum darkfield/NAAT/serology ≥7 days; typical appearance with regional lymphadenopathy; negative HSV. Differential diagnosis: primary syphilis (painless, indurated chancre), genital herpes (grouped vesicles, recurrent), lymphogranuloma venereum, granuloma inguinale (donovanosis), and — in children in the tropics — yaws (F010, F011). Genetic/omics testing: not applicable to host diagnosis.
Excellent — chancroid is fully curable and causes no direct mortality (survival metrics not applicable) (F012). Complications (untreated): phagedenic/destructive ulceration, phimosis, suppurative and fistulizing buboes, superinfection. Recovery: complete with appropriate antibiotics; ulcers heal, though large ulcers may scar. Prognostic factors: HIV co-infection and lack of circumcision predict slower healing and possible single-dose treatment failure (F004). Dominant morbidity driver: facilitation of HIV acquisition/transmission (F002).
First-line pharmacotherapy (F004): azithromycin 1 g PO single dose (NCIT C1052; CHEBI:2955), ceftriaxone 250 mg IM single dose (NCIT C377; CHEBI:29007), erythromycin 500 mg PO QID × 7 days (NCIT C480), or ciprofloxacin 500 mg PO BID × 3 days (NCIT C376). Drug classes: macrolide, third-generation cephalosporin, fluoroquinolone. HIV-coinfected/uncircumcised patients may need multi-dose regimens and follow-up. Surgical/interventional: needle aspiration or incision and drainage of fluctuant buboes. Supportive: analgesia, local wound care, partner treatment. Response rates are high across regimens (Cochrane: no significant difference between macrolides and comparators; PMID: 29226307). No gene, cell, or RNA-based therapies apply. Pharmacogenomics: not disease-specific.
Primary prevention: condom use, reduction of partner numbers, male circumcision, genital hygiene, and treatment of sexual partners (F006). No licensed vaccine exists, but HgbA is a validated protective vaccine antigen in the swine model (F007), the leading vaccine candidate. Secondary prevention: syndromic GUD management and prompt treatment in high-prevalence settings; screening/treatment of commercial sex workers interrupts transmission (F006, F012). Public health: targeted control of sexual-network core groups can locally eradicate chancroid because of its "precarious epidemiological niche" (F012). In yaws-endemic areas, azithromycin mass drug administration also reduces H. ducreyi cutaneous ulcers (F010).
H. ducreyi (NCBI Taxon 730) is essentially an obligate human pathogen; there is no established natural companion-animal or wildlife reservoir disease (F009). Notably, Class I strains have been detected circulating in non-human primates in some African regions, raising questions of zoonotic potential in the cutaneous-ulcer setting (F009, F010). No VBO breeds, orthologous host disease genes, or OMIA entries apply. Experimental infection is achievable in rabbits and swine (models, below).
Three complementary infection models (not genetic host-disease models) (F009): | Model | Type | Use | Key result | |---|---|---|---| | Temperature-dependent rabbit | Mammalian in vivo | Virulence, vaccine testing | Oral HgbA-Salmonella vaccine; LspA attenuation (PMID: 22100216) | | Experimental swine (pig) | Mammalian in vivo | Vaccine efficacy | nHgbA vaccination = complete protection (PMID: 21646451) | | Human challenge (35000HP, upper arm) | Human controlled infection | Virulence factor & host-susceptibility mapping | Papule→resolve or →pustule; LspA1/A2 required, CpxR not (PMID: 26374122, PMID: 15271912, PMID: 21606544) |
Phenotype recapitulation: the human challenge model faithfully reproduces the papule-to-pustule natural history but is limited to an early, self-resolving arm-skin lesion (ethical necessity) and does not model buboes or genital-site disease. Rabbit/swine models capture ulcer formation and vaccine protection but differ in temperature dependence and immunology from humans.
SEXUAL CONTACT (microabrasion)
│ inoculation
▼
H. ducreyi in dermis
│ HgbA → heme/Hb acquisition (OBLIGATE; F007)
▼
Nutritional establishment
│ DsrA (serum resistance) + LspA1/LspA2 (anti-phagocytic) (F003)
▼
Immune evasion — phagocytes fail to ingest organism
│ CdtB DNase activity → DNA DSBs → G2/M arrest → cell death (F003)
▼
Local tissue damage + inflammation
│
┌───────┴─────────┐ HOST IMMUNE BRANCH (F008)
▼ ▼
Regulated response Dysregulated/hyperinflammatory
(RR: resolves) (PP: pustule/ulcer)
│
▼
Soft painful ulcer + inguinal bubo (~50% suppurate; F005)
│
▼
Epithelial barrier breach → HIV cofactor (F002)
The unifying insight is that chancroid pathology is a two-party outcome: the pathogen supplies the tools (heme acquisition, serum resistance, anti-phagocytic proteins, genotoxin), but the decision between resolution and ulceration is made by the host's cutaneous/dendritic-cell immune program. This explains both the reproducible PP/RR dichotomy in the human model and the therapeutic/prophylactic leverage points: HgbA (nutritional bottleneck → vaccine), circumcision/hygiene (reduce inoculation), and antibiotics (eliminate the organism before the inflammatory branch matures).
| PMID | Contribution | Finding |
|---|---|---|
| 28081686 | European guideline definition of disease and cardinal features | F001 |
| 41046959 | 2026 review; etiology, buboes, drainage | F001, F004 |
| 6687703 | Incubation, ulcer morphology, bubo suppuration | F005 |
| 17123907 | CDT/CdtB molecular mechanism | F003 |
| 15271912 | Human challenge: LspA1/A2 required for virulence | F003, F009 |
| 21646451 | HgbA obligate for infection; protective vaccine (swine) | F007 |
| 17893130 | Host immune branch (PP vs RR) determines outcome | F008 |
| 10028106 | First-line antibiotic regimens | F004 |
| 29226307 | Cochrane review of macrolide efficacy | F004 |
| 15918786 | Chancroid as HIV cofactor | F002 |
| 11584729 | HIV correlation; hygiene/circumcision protective; eradicability | F002, F006, F012 |
| 16581731 | Meta-analysis: circumcision protective | F006 |
| 26374122 | Human challenge model design; skin microbiome | F009 |
| 22100216 | Rabbit model; oral HgbA vaccine | F007, F009 |
| 21606544 | CpxR mutant remains virulent | F009 |
| 19066198 | Multiplex real-time PCR for GUD | F011 |
| 9918324 | Multiplex PCR; H. ducreyi 23% of GUD in Pune | F011 |
| 41318902 | Emerging pediatric cutaneous ulcers; two lineages | F010 |
| 39146379 | Class I vs II ulcer duration | F010 |
| 41646416 | Current persistence in Malawi (22% GUD) | F012 |
| 16619156 | Near-elimination in Australia | F012 |
Evidence-type mix: human clinical/epidemiological (guidelines, GUD PCR surveys, meta-analyses), controlled human infection (challenge model), model organism (rabbit, swine), and in vitro (CDT biochemistry).
Report compiled from 12 cited findings and 48 reviewed papers across 5 investigation iterations. Evidence quotes are verbatim from indexed PubMed abstracts.
Checked with linkml-reference-validator 0.3.0rc1.
| Outcome | Count |
|---|---|
| References checked | 21 |
| Resolved | 21 |
| Unresolved (possible confabulation) | 0 |
| Unverifiable | 0 |
| References weighed for topical relevance | 21 |
| On topic | 19 |
| Off topic | 0 |
All extracted references resolved successfully.
Checked with linkml-term-validator 0.4.5, through the ols: adapter.
| Outcome | Count |
|---|---|
| Terms checked | 16 |
| Resolved | 15 |
| Unresolved (possible confabulation) | 0 |
| Obsolete | 1 |
| Unverifiable | 0 |
| Terms whose name was checked | 1 |
| Terms named correctly | 0 |
| Terms named as a different term | 1 |
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:0500089 (2 mentions) - the report calls it "genital ulcer"; HP calls it Optic nerve sheath meningiomaThese terms are real but deprecated. Citing one is not a fabrication; it does mean the report is naming something the ontology has retired:
GO:0007050 (GO_0007050) (1 mention) - replaced by GO:0051726