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Experimental Viral Infection in Adult Mosquitoes by Oral Feeding and Microinjection
Published on: July 28, 2022
Mosquito vectors and the spread of cancer: an overlooked connection?
Giovanni Benelli1, Annalisa Lo Iacono2, Angelo Canale3
1Insect Behaviour Group, Department of Agriculture, Food and Environment, University of Pisa, via del Borghetto 80, 56124, Pisa, Italy. g.benelli@sssup.it.
Abstract:
Mosquitoes (Diptera: Culicidae) represent a key threat for millions of humans and animals worldwide, vectoring important pathogens and parasites, including malaria, dengue, filariasis, and Zika virus. Besides mosquito-borne diseases, cancers figure among the leading causes of mortality worldwide. It is expected that annual cancer cases will rise from 14 million in 2012 to 22 million within the next two decades. Notably, there are few contrasting evidences of the relationship between cancer and mosquito-borne diseases, with special reference to malaria. However, analogies at the cellular level for the two diseases were reported. Recently, a significant association of malaria incidence with all cancer mortality in 50 USA states was highlighted and may be explained by the ability of Plasmodium to induce suppression of the immune system. However, it was hypothesized that Anopheles vectors may transmit obscure viruses linked with cancer development. The possible activation of cancer pathways by mosquito feeding events is not rare. For instance, the hamster reticulum cell sarcoma can be transmitted through the bites of Aedes aegypti by a transfer of tumor cells. Furthermore, mosquito bites may influence human metabolic pathways following different mechanisms, leading to other viral infections and/or oncogenesis. Hypersensitivity to mosquito bites is routed by a unique pathogenic mechanism linking Epstein-Barr virus infection, allergy, and oncogenesis. During dengue virus infection, high viral titers, macrophage infiltration, and tumor necrosis factor alpha production in the local tissues are the three key important events that lead to hemorrhage. Overall, basic epidemiological knowledge on the relationships occurring between mosquito vector activity and the spread of cancer is urgently needed, as well as detailed information about the ability of Culicidae to transfer viruses or tumor cells among hosts over time. Current evidences on nanodrugs with multipotency against mosquito-borne diseases and cancers are reviewed, with peculiar attention to their mechanisms of action.
Insights
Mosquitoes transmit diseases and may also spread cancer by transferring viruses or tumor cells. Research is needed to understand these links and develop nanodrugs for both mosquito-borne illnesses and cancers.
Area of Science:
- Medical Entomology
- Oncology
- Pathogen Transmission
Background:
- Mosquitoes (Culicidae) are significant vectors of diseases like malaria, dengue, filariasis, and Zika virus.
- Cancers are a leading cause of mortality, with cases projected to rise significantly.
- Limited evidence exists on the relationship between mosquito-borne diseases and cancer, though cellular analogies and potential transmission routes are suggested.
Purpose of the Study:
- To review current evidence on the relationship between mosquito vector activity and cancer spread.
- To explore the potential for mosquitoes to transmit oncogenic viruses or tumor cells.
- To examine nanodrugs with multipotency against both mosquito-borne diseases and cancers.
Main Methods:
- Literature review of epidemiological studies and cellular mechanisms.
- Analysis of potential transmission pathways of viruses and tumor cells by mosquitoes.
- Review of nanodrug research for dual-action therapies.
Main Results:
- Mosquito bites can potentially activate cancer pathways and influence oncogenesis.
- Evidence suggests mosquitoes like Anopheles may transmit obscure viruses linked to cancer.
- Tumor cells can be transmitted via mosquito bites, as seen in hamster reticulum cell sarcoma.
- Hypersensitivity to mosquito bites involves Epstein-Barr virus, allergy, and oncogenesis.
- Dengue virus infection involves key events leading to hemorrhage.
Conclusions:
- There is an urgent need for epidemiological knowledge on mosquito-cancer relationships.
- Further research is required on Culicidae's ability to transfer viruses or tumor cells.
- Nanodrugs show promise for treating both mosquito-borne diseases and cancers simultaneously.
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