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线粒体作为一个有前景的抗寄生虫靶点。

Mitochondria as a promising antiparasitic target.

作者信息

Monzote Lianet, Gille Lars

机构信息

Departamento de Parasitología, Instituto de Medicina Tropical Pedro Kourí, Apartado Postal No. 601, Marianao 13. Ciudad Habana, Cuba.

出版信息

Curr Clin Pharmacol. 2010 Feb;5(1):55-60. doi: 10.2174/157488410790410605.

Abstract

Diseases caused by parasitic infections are responsible for considerable morbidity and mortality. The progress in the development of vaccines against parasite infections tends to be slow and the epidemiological control of diseases is unsatisfactory. Currently, chemotherapy remains an essential component of clinical management and disease control programs. In the past 20 years, there was a significant increase in our basic knowledge about structure and biochemical functions of parasites. Several studies to identify unique metabolic pathways and key enzymes for parasite survival are in progress, which may support the development of novel target-based drugs. The mitochondrial respiratory chain of parasites typically shows greater diversity compared with host animals; including the electron transport complexes and their related enzymes; tRNA import, as well as the synthesis of fatty acids, pyrimidines and ubiquinones. These unique aspects may represent promising targets for chemotherapy. This review presents a compilation about the knowledge and understanding of the action of therapeutic agents on mitochondria from parasites and their future perspectives.

摘要

由寄生虫感染引起的疾病导致了相当高的发病率和死亡率。针对寄生虫感染的疫苗研发进展往往缓慢,疾病的流行病学控制也不尽人意。目前,化疗仍然是临床管理和疾病控制项目的重要组成部分。在过去20年里,我们对寄生虫的结构和生化功能的基础知识有了显著增加。几项旨在确定寄生虫生存所特有的代谢途径和关键酶的研究正在进行中,这可能会支持基于新靶点的药物开发。与宿主动物相比,寄生虫的线粒体呼吸链通常表现出更大的多样性;包括电子传递复合体及其相关酶、tRNA导入,以及脂肪酸、嘧啶和泛醌的合成。这些独特的方面可能是化疗的有希望的靶点。本综述呈现了关于治疗剂对寄生虫线粒体作用的知识和理解及其未来展望的汇编。

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