Ingestion of Amoxicillin – Clavulanic Acid at therapeutic concentration during blood meal impacts Aedes aegypti microbiota and dengue virus transmission

Author:

Smévoorde Margot Garcia -- Van1,Calvez Elodie1,Quétel Isaure2,Dollin Christelle1,Breurec Sébastien3,Vega-Rúa Anubis1

Affiliation:

1. Vector Control research Laboratory, Transmission Reservoir and Pathogens Diversity Unit, Institut Pasteur de la Guadeloupe

2. Microbial Ecosystems Interaction Laboratory, Transmission Reservoir and Pathogens Diversity Unit, Institut Pasteur de la Guadeloupe

3. Department of Clinical Microbiology, University Hospitals of Guadeloupe

Abstract

Abstract Dengue virus (DENV), mainly transmitted by Aedes aegypti mosquitoes, is the most prevalent arbovirus worldwide, representing a public health problem in tropical and subtropical countries. In these areas, antibiotic consumption rises which may impact both mosquito microbiota and dengue transmission. Here, we assessed how the ingestion by Ae. aegypti of therapeutic concentrations of Amoxicillin – Clavulanic Acid association (Amox/Clav), a broad-spectrum antibiotic used to treat febrile symptoms worldwide, impacted its microbiota. We also evaluated whether simultaneous ingestion of antibiotic and DENV impacted Ae. aegyptiability to transmit this virus. We found that Amox/Clav ingestion impacted microbiota composition in Ae. aegypti and we confirmed such impact in field-collected mosquitoes. Furthermore, we observed that Amox/Clav ingestion enhanced DENV dissemination and transmission by this mosquito at late days post-DENV exposure. These findings increase our understanding of factors linked to human hosts that may influence dengue transmission dynamics in regions with mass-drug administration programs.

Publisher

Research Square Platform LLC

Reference59 articles.

1. Global spread of dengue virus types: mapping the 70 year history;Messina JP;Trends Microbiol.,2014

2. Aedes aegypti vector competence studies: A review;Souza-Neto JA;Infect. Genet. Evol. J. Mol. Epidemiol. Evol. Genet. Infect. Dis.,2019

3. European centre for disease prevention and control. Dengue worldwide overview. https://www.ecdc.europa.eu/en/dengue-monthly (2023).

4. Is Dengue Vaccine Protection Possible?;Halstead SB;Clin. Infect. Dis.,2022

5. World Health Organization. Dengue and severe dengue. https://www.who.int/news-room/fact-sheets/detail/dengue-and-severe-dengue (2022).

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