Malaria Mosquito

The malaria mosquito is a mosquito of the genus Anopheles, particularly its female members, that can transmit Plasmodium parasites and spread malaria between hosts. During a blood meal, an infected female injects parasites from its salivary glands into human skin; the parasites multiply first in liver cells and then in red blood cells, producing the infection. Understanding this mosquito–parasite–host cycle supports malaria biology, disease surveillance, and vector-control strategies such as insecticide-treated nets, indoor spraying, and habitat management. Research on mosquito behavior, insecticide resistance, and parasite transmission helps improve prevention and guides the development of more effective public-health interventions.

Malaria Mosquito - Related Videos

Research

JoVE Journal - Biology
Free Sample

Building a Better Mosquito: Identifying the Genes Enabling Malaria and Dengue Fever Resistance in A. gambiae and A. aegypti Mosquitoes

0 Views •

Cited by 2 •

2007

In this interview, George Dimopoulos focuses on the physiological mechanisms used by mosquitoes to combat Plasmodium falciparum and dengue virus infections. Explanation is given for how key refractory genes, those genes conferring resistance to vector pathogens, are identified in the mosquito and how this knowledge can be used to generate transgenic mosquitoes that are unable to carry the malaria parasite or dengue virus.

Research

JoVE Journal - Biology

Injection of An. stephensi Embryos to Generate Malaria-resistant Mosquitoes

0 Views •

Cited by 9 •

2007

Anopheles stephensi mosquitoes are vectors for malaria inhabiting India and throughout Asia. This video demonstrates the technique for performing microinjections of this species with transgenes that will confer resistance to the malaria to the mosquito. Much of the methodology demonstrated in this video is applicable to microinjection techniques of other mosquito species.

Preventing the Spread of Malaria and Dengue Fever Using Genetically Modified Mosquitoes

0 Views •

Cited by 10 •

2007

In this candid interview, Anthony A. James explains how mosquito genetics can be exploited to control malaria and dengue transmission. Population replacement strategy, the idea that transgenic mosquitoes can be released into the wild to control disease transmission, is introduced as well as the concept of genetic drive and the design criterion for an effective genetic drive system. The ethical considerations of releasing genetically-modified organisms into the wild are also discussed.

Phenotypic Analysis of Rodent Malaria Parasite Asexual and Sexual Blood Stages and Mosquito Stages

0 Views •

Cited by 10 •

2019

Due to the striking similarities of the life cycle and biology of rodent malaria parasites to human malaria parasites, rodent malaria models have become indispensable for malaria research. Herein, we standardized some of the most important techniques used in the phenotypic analysis of wild-type and transgenic rodent malaria species.

Generation of a Mouse Model of Experimental Cerebral Malaria Using Host Mosquito-Derived Sporozoites

0 Views •

2025

This video demonstrates the generation of an experimental mouse model of cerebral malaria. Sporozoites isolated from Plasmodium berghei-infected female mosquitoes are injected into a restrained mouse's tail veins, leading to blood-brain barrier disruption and brain inflammation, causing cerebral malaria. This infected mouse model offers a valuable tool to study in vivo microvascular pathology associated with cerebral malaria.

View All Results

FAQs

Related Topics