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The incidence of vector-borne diseases is rising as deforestation, climate change, and globalization bring humans in contact with arthropods that can transmit pathogens. In particular, incidence of American Cutaneous Leishmaniasis (ACL), a disease caused by parasites transmitted by sandflies, is increasing as previously intact habitats are cleared for agriculture and urban areas, potentially bringing people into contact with vectors and reservoir hosts. Previous evidence has identified dozens of sandfly species that have been infected with and/or transmit Leishmania parasites. However, there is an incomplete understanding of which sandfly species transmit the parasite, complicating efforts to limit disease spread. Here, we apply machine learning models (boosted regression trees) to leverage biological and geographical traits of known sandfly vectors to predict potential vectors. Additionally, we generate trait profiles of confirmed vectors and identify important factors in transmission. Our model performed well with an average out of sample accuracy of 86%. The models predict that synanthropic sandflies living in areas with greater canopy height, less human modification, and within an optimal range of rainfall are more likely to be Leishmania vectors. We also observed that generalist sandflies that are able to inhabit many different ecoregions are more likely to transmit the parasites. Our results suggest that Psychodopygus amazonensis and Nyssomia antunesi are unidentified potential vectors, and should be the focus of sampling and research efforts. Overall, we found that our machine learning approach provides valuable information for Leishmania surveillance and management in an otherwise complex and data sparse system.
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http://dx.doi.org/10.1371/journal.pntd.0010749 | DOI Listing |
J Med Chem
September 2025
Department of Pharmacy and Biotechnology, Alma Mater Studiorum─University of Bologna, Via Belmeloro 6, Bologna 40126, Italy.
Innovative, sustainable therapies are urgently needed for neglected vector-borne parasitic diseases. In this study, we leveraged cashew nutshell liquid (CNSL), an agro-industrial byproduct, to develop biobased phosphonium and ammonium salts (-) targeting parasite mitochondria. By combining CNSL-derived C8 alkyl chains with lipophilic cations, we synthesized novel compounds exhibiting highly potent and activity against and spp.
View Article and Find Full Text PDFActa Trop
September 2025
Laboratório de Parasitologia Médica e Biologia de Vetores, Faculdade de Medicina, Universidade de Brasília, DF, Brasil. Electronic address:
Phlebotomine sand flies are known vectors of Leishmania spp. to mammals, but also may transmit Sauroleishmania, and Trypanosoma spp. to reptiles and amphibians.
View Article and Find Full Text PDFEur J Med Chem
August 2025
Department of Pharmaceutical Sciences, University of Milan, Via Mangiagalli 25, 20133, Milan, Italy.
Vector-borne parasitic diseases (VBPDs) represent a major global public health concern, with human African trypanosomiasis (HAT), Chagas disease, leishmaniasis, and malaria collectively threatening millions of people, particularly in developing regions. Climate change may further influence their transmission and geographic spread, increasing the global burden. As drug resistance continues to rise, there is an urgent need for novel therapeutic agents to expand treatment options and limit disease progression.
View Article and Find Full Text PDFPLoS Negl Trop Dis
September 2025
Grupo de Microbiodiversidad y Bioprospección, Faculty of Sciences, Universidad Nacional de Colombia, Medellín, Colombia.
Background: The Amazon region is home to more than 30% of the sand flies species in Colombia, including vectors of Leishmania mainly in the genus Lutzomyia and Psychodopygus. Advances in morphological and molecular taxonomy of sand flies facilitate the development of updated and robust species inventories in understudied areas, such as the departments of Amazonas and Caquetá. Currently, integrating the detection of blood meal sources and Leishmania DNA represents a key approach under the "One Health" concept by providing insights into human and animal health and the dynamics of different ecosystems.
View Article and Find Full Text PDFExp Parasitol
September 2025
Natural Products Drug Discovery Research Group, Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, Glasgow, UK. Electronic address:
Leishmaniasis is a vector-borne parasitic disease caused by Leishmania spp., for which there is no vaccine and an urgent need for better drugs. The zinc metalloprotease gp63 of Leishmania has been identified as an antigenic structure for vaccine design and a promising target for new antileishmanial agents.
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