破译疟原虫和按蚊相互作用的分子靶点以控制疟疾。

IF 4.2
Sangeeta Janjoter, Divya Kataria, Nisha Dahiya, Mahima Yadav, Hitesh Singh, Shilpi Garg, Neelam Sehrawat
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引用次数: 0

摘要

疟疾是一种严重的疾病,由雌性按蚊传播,由疟原虫引起。尽管死亡率有所下降,但它继续构成重大挑战,例如对抗疟药物和杀虫剂的耐药性,因此需要制定新的疟疾控制和消除战略。为了确定疟疾控制的新分子靶点,有必要了解蚊子与寄生虫之间的分子相互作用。在蚊子中肠入侵过程中,眼动疟原虫与蚊子中肠蛋白相互作用,孢子子与蚊子唾液腺(SG)蛋白相互作用。这些相互作用分别对寄生虫入侵蚊子的中肠和SG至关重要。本文综述了多种疟原虫基因在雄性和雌性配子体发生和寄生虫传播中的作用,它们与促进寄生虫入侵的蚊子基因的相互作用,以及蚊子免疫系统如何防御入侵的寄生虫。了解蚊子和寄生虫之间相互作用的生物学基础可能有助于更好地理解这种疾病,并有助于设计有效的病媒控制策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deciphering the molecular targets of Plasmodium and Anopheline interactions for malaria control.

Malaria is a severe disease that is transmitted by female Anopheles mosquitoes and caused by the Plasmodium parasite. Despite a decrease in mortality rate, it continues to pose significant challenges such as resistance to antimalarial drugs and insecticides, which necessitates the need for novel malaria control and elimination strategies. To identify new molecular targets for malaria control, there is a need to understand the molecular interaction between mosquitoes and parasites. Plasmodium ookinetes interact with the mosquito midgut proteins during midgut invasion and sporozoites interact with the mosquito salivary gland (SG) proteins. These interactions are crucial for the parasite's invasion of the mosquito midgut and SG, respectively. This review explores the involvement of various Plasmodium genes in male and female gametogenesis and parasite transmission, their interaction with the mosquito genes that facilitate parasite invasion, and how the mosquito immune system defends itself from the invading parasite. Understanding the biology underlying the interaction between mosquitoes and parasites may lead to a better comprehension of the disease and could help design efficient vector control strategies.

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