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Biotechnological Control of <em>Aedes aegypti </em>for Dengue Suppression: A Global Review of Expectations, Efficacy, and Concerns to Inform the Jeddah Vector Management Strategy, SPIRIT/TIDieR-Framed Protocol, and Simulation-Based Design-of-Experiments

2025-11-05

Abstract excerpt

Dengue fever remains one of the most pressing vector-borne diseases worldwide, driven primarily by the mosquito Aedes aegypti. Recent advancements in biotech- nology—ranging from the use of Wolbachia-infected mosquito releases to genetic modification (GM) techniques such as RIDL and CRISPR-based suppression—have redefined vector control paradigms. This paper presents a comprehensive pro- tocol for the synthesis an...

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Literature Corpus work
3664f16e-68d5-5075-96e3-067c30a9fe1e
DOI
10.20944/preprints202511.0326.v1
Open publication

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Biotechnological Control of <em>Aedes aegypti </em>for Dengue Suppression: A Global Review of Expectations, Efficacy, and Concerns to Inform the Jeddah Vector Management Strategy, SPIRIT/TIDieR-Framed Protocol, and Simulation-Based Design-of-ExperimentsDOI 10.20944/preprints202511.0326.v1
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