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探索萜类化合物的杀利什曼原虫潜力:细胞死亡机制的综合综述。

Exploring the leishmanicidal potential of terpenoids: a comprehensive review on mechanisms of cell death.

机构信息

Laboratory of Immunoparasitology of Neglected Diseases and Cancer, Department of Pathological Sciences, State University of Londrina, Londrina, Brazil.

Cell Biology Laboratory, Carlos Chagas Institute- Fiocruz, Curitiba, Brazil.

出版信息

Front Cell Infect Microbiol. 2023 Sep 19;13:1260448. doi: 10.3389/fcimb.2023.1260448. eCollection 2023.

Abstract

Leishmaniasis is a neglected tropical disease with a wide spectrum of clinical manifestations, ranging from visceral to cutaneous, with millions of new cases and thousands of deaths reported each year. The species of and the immune response of the host determine the severity of the disease. Leishmaniasis remains challenging to diagnose and treat, and there is no vaccine available. Several studies have been conducted on the use of herbal medicines for the treatment of leishmaniasis. Natural products can provide an inexhaustible source of chemical diversity with therapeutic potential. Terpenes are a class of natural products derived from a single isoprene unit, a five-carbon compound that forms the basic structure of isoprenoids. This review focuses on the most important and recent advances in the treatment of parasites of the genus with different subclasses of terpenes. Several mechanisms have been proposed in the literature, including increased oxidative stress, immunomodulatory role, and induction of different types of parasite cell death. However, this information needs to be brought together to provide an overview of how these compounds can be used as therapeutic tools for drug development and as a successful adjuvant strategy against sp.

摘要

利什曼病是一种被忽视的热带病,具有广泛的临床表现,从内脏到皮肤,每年报告数百万例新病例和数千例死亡。和宿主的免疫反应决定了疾病的严重程度。利什曼病的诊断和治疗仍然具有挑战性,目前还没有可用的疫苗。已经有几项关于草药治疗利什曼病的研究。天然产物可以为具有治疗潜力的化学多样性提供取之不尽的来源。萜类化合物是一类源自单一异戊二烯单元的天然产物,异戊二烯是形成类异戊二烯的基本结构的五碳化合物。本综述重点介绍了用不同萜类 subclass 治疗 属寄生虫的最重要和最新进展。文献中提出了几种机制,包括增加氧化应激、免疫调节作用和诱导不同类型的寄生虫细胞死亡。然而,需要将这些信息汇集在一起,以概述这些化合物如何可用作药物开发的治疗工具以及针对 sp. 的成功辅助策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4464/10550302/361841b7ca52/fcimb-13-1260448-g001.jpg

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