Factors Affecting Arbovirus Midgut Escape in Mosquitoes

Author:

Carpenter Alexis1,Clem Rollie J.1ORCID

Affiliation:

1. Division of Biology, Kansas State University, Manhattan, KS 66506, USA

Abstract

Arboviral diseases spread by mosquitoes cause significant morbidity and mortality throughout much of the world. The treatment and prevention of these diseases through medication and vaccination is often limited, which makes controlling arboviruses at the level of the vector ideal. One way to prevent the spread of an arbovirus would be to stop its vector from developing a disseminated infection, which is required for the virus to make its way to the saliva of the mosquito to be potentially transmitted to a new host. The midgut of the mosquito provides one such opportunity to stop an arbovirus in its tracks. It has been known for many years that in certain arbovirus–vector combinations, or under certain circumstances, an arbovirus can infect and replicate in the midgut but is unable to escape from the tissue to cause disseminated infection. This situation is known as a midgut escape barrier. If we better understand why this barrier occurs, it might aid in the development of more informed control strategies. In this review, we discuss how the midgut escape barrier contributes to virus–vector specificity and possible mechanisms that may allow this barrier to be overcome in successful virus–vector combinations. We also discuss several of the known factors that either increase or decrease the likelihood of midgut escape.

Publisher

MDPI AG

Subject

Infectious Diseases,Microbiology (medical),General Immunology and Microbiology,Molecular Biology,Immunology and Allergy

Reference126 articles.

1. WHO (2023, January 24). Chikungunya and Dengue in the South-West Indian Ocean. WHO—Emergencies Preparedness, Response: Disease Outbreak News, Available online: https://www.who.int/emergencies/disease-outbreak-news/item/2006_03_17-en.

2. The Global Distribution and Burden of Dengue;Bhatt;Nature,2013

3. Pan American Health Organization/World Health Organization (2018). Epidemiological Update Yellow Fever Situation Summary in the Americas, Pan Health Organization/World Health Organization.

4. Zika Virus in the Americas—Yet Another Arbovirus Threat;Fauci;N. Engl. J. Med.,2016

5. Climate Change and Aedes Vectors: 21st Century Projections for Dengue Transmission in Europe;Quam;EBioMedicine,2016

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