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P450 酶在疟疾和其他虫媒传染病中的作用。

The role of P450 enzymes in malaria and other vector-borne infectious diseases.

机构信息

Department of Life Sciences and Systems Biology, University of Torino, Torino, Italy.

出版信息

Biofactors. 2024 Jan-Feb;50(1):16-32. doi: 10.1002/biof.1996. Epub 2023 Aug 9.

DOI:10.1002/biof.1996
PMID:37555735
Abstract

Vector-borne infectious diseases are still an important global health problem. Malaria is the most important among them, mainly pediatric, life-threatening disease. Malaria and other vector-borne disorders caused by parasites, bacteria, and viruses have a strong impact on public health and significant economic costs. Most vector-borne diseases could be prevented by vector control, with attention to the ecological and biodiversity conservation aspects. Chemical control with pesticides and insecticides is widely used as a measure of prevention although increasing resistance to insecticides is a serious issue in vector control. Metabolic resistance is the most common mechanism and poses a big challenge. Insect enzyme systems, including monooxygenase CYP P450 enzymes, are employed by vectors mainly to metabolize insecticides thus causing resistance. The discovery and application of natural specific inhibitors/blockers of vector P450 enzymes as synergists for commonly used pesticides will contribute to the "greening" of insecticides. Besides vector CYPs, host CYP enzymes could also be exploited to fight against vector-borne diseases: using mostly their detoxifying properties and involvement in the immune response. Here, we review published research data on P450 enzymes from all players in vector-borne infections, that is, pathogens, vectors, and hosts, regarding the potential role of CYPs in disease. We discuss strategies on how to exploit cytochromes P450 in vector-borne disease control.

摘要

虫媒传染病仍然是一个重要的全球健康问题。疟疾是其中最重要的一种,主要影响儿童,是一种危及生命的疾病。疟疾和其他由寄生虫、细菌和病毒引起的虫媒传染病对公共卫生有很大影响,并造成重大经济损失。大多数虫媒传染病可以通过控制病媒来预防,同时注意生态和生物多样性保护方面。化学控制使用杀虫剂和农药作为预防措施,尽管杀虫剂的抗药性是病媒控制中的一个严重问题。代谢抗性是最常见的机制,也是一个重大挑战。昆虫酶系统,包括单加氧酶 CYP P450 酶,主要被蚊子用来代谢杀虫剂,从而导致抗药性。发现和应用天然特异性抑制剂/阻断剂作为增效剂与常用农药结合,将有助于杀虫剂的“绿化”。除了蚊子的 CYPs 外,宿主的 CYP 酶也可以被利用来对抗虫媒传染病:主要利用它们的解毒特性和参与免疫反应。在这里,我们综述了有关虫媒传染病中所有参与者(病原体、病媒和宿主)的 P450 酶的已发表研究数据,讨论了如何利用细胞色素 P450 来控制虫媒传染病的策略。

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