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Mosquitoes provide a transmission route between possums and humans for Buruli ulcer in southeastern Australia.

Buruli ulcer, a chronic subcutaneous infection caused by Mycobacterium ulcerans, is increasing in prevalence in southeastern Australia. Possums are a local wildlife reservoir for M. ulcerans and, although mosquitoes have been implicated in transmission, it remains unclear how humans acquire infection. We conducted extensive field survey analyses of M. ulcerans prevalence among mosquitoes in the Mornington Peninsula region of southeastern Australia. PCR screening of trapped mosquitoes revealed a significant association between M. ulcerans and Aedes notoscriptus. Spatial scanning statistics revealed overlap between clusters of M. ulcerans-positive Ae. notoscriptus, M. ulcerans-positive possum excreta and Buruli ulcer cases, and metabarcoding analyses showed individual mosquitoes had fed on humans and possums. Bacterial genomic analysis confirmed shared single-nucleotide-polymorphism profiles for M. ulcerans detected in mosquitoes, possum excreta and humans. These findings indicate Ae. notoscriptus probably transmit M. ulcerans in southeastern Australia and highlight mosquito control as a Buruli ulcer prevention measure.

Animals

Autodissemination stations suppress Aedes notoscriptus mosquitoes and reduce Buruli ulcer risk in urban Australia: a randomized controlled field trial.

Aedes notoscriptus are mosquito vectors implicated in transmission of Mycobacterium ulcerans. This bacterium causes a destructive infection of skin and soft tissue called Buruli ulcer. Here we ran a randomized controlled trial in an urban Buruli ulcer endemic area in Melbourne, Australia to test whether autodissemination mosquito control stations, containing pyriproxyfen (larvicide) and Beauveria bassiana (entomopathogenic fungus), suppress Ae. notoscriptus populations. Six geographic areas each received 100 autodissemination stations for 8 weeks, and six control areas received no stations between 25 January 2024 and 21 March 2024. The primary outcome measure was mosquito population numbers. After the trial, there was a 70% average reduction in mosquito egg counts among the six intervention areas compared to control areas (P = 0.0076). In an ad hoc analysis, we then explored human Buruli ulcer notifications in treatment and control areas. After accounting for the 4.8-month mean incubation period, there was an 83% reduction in infection likelihood coinciding with peak intervention effect (intervention zones 1 case, control zones 6 cases, incidence ratio rate 0.167, 95% CI 0.0026-1.054, P = 0.047). The effect was not observed during the same time period in the year previous or following 2024, when no interventions were undertaken. A strong correlation (R2 = 0.85) was observed between decreased disease risk and mosquito suppression. These data show that autodissemination traps can effectively lower urban mosquito populations and reduce the threat of Buruli ulcer in humans.

Animals

Burli (mycobacterial) ulcers in Caucasians in Nigeria.

Seven Caucasians with Buruli ulcers have been treated. The disease did not behave differently in them from its behaviour in Africans nor has liability to infection any racial basis. Surgical removal with or without skin grafting is the treatment of choice.

Adult

The protective effect of BCG against Mycobacterium ulcerans disease: a controlled trial in an endemic area of Uganda.

In a BCG vaccination trial in an area of Uganda endemic for Mycobacterium ulcerans disease ("Buruli Ulcer"), 8,856 persons were examined for the disease in mid-1970 and tuberculin tested; BCG was given by intradermal injection to a random 50% of all those with negative, low or middle grade tuberculin reactions; Twelve months later the study group was re-examined for M. ulcerans lesions and, subsequently, new cases of the disease were detected, using a hospital registration system, to December 1974. One hundred and forty-nine patients with onset since July 1970 were thus ascertained and BCG was found to offer an overall protection of 47% against the disease, similar to that observed in a previous smaller trial by the Uganda Buruli Group (UBG, 1969). However, the protective effect was confined to those with tuberculin reactions of less than 4 mm before vaccination and was apparent only in the first year of the study. BCG offered no additional protection to those with previous M. ulcerans disease or an existing BCG scar at entry into the trial, although both these groups appeared to be protected against the disease, the protective effects being 88% and 82% respectively. An initial tuberculin reaction of 4 mm (or greater) offered some protection against the disease (37%). Lesions developing in the vaccinated group, or in those with initial tuberculin reactions of 4 mm or more, were smaller than those in unvaccinated persons. No relationship was found between the protective effect of BCG and either the prevalence of persons with evidence of previous M. ulcerans disease in different geographical areas, or the incidence of new cases in different areas during the first year of the study. A decline in the incidence was observed over the study period. The findings are consistent with BCG producing only short-lasting protection against M. ulcerans disease. However, long-lasting protection and a delay in onset of the disease in vaccinated persons, as suggested by the UBG in 1969, cannot be excluded on the basis of the data currently available from this trial.

Adolescent

The growth of some mycobacteria on cultured human tissues.

M. ulcerans grows in close association with the surface of cultured human foetal and adult tissue and produces necrosis. M. tuberculosis grows also but M. xenopi grows little or not at all. The two first named seem to stick well to the tissue surface and the last does not. These results are discussed in relationship to the pathogenesis of Buruli ulcer.

Adipose Tissue