巴贝斯虫病:来自系统发育分析的新见解。

Infectious agents and disease Pub Date : 1995-12-01
D H Persing, P A Conrad
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引用次数: 0

摘要

巴贝斯虫属的弓形虫及其与巴贝斯虫科的亲缘关系,构成了一组遗传上和抗原性上多样化的蜱传红细胞内病原体,它们在兽医、医学和经济上都具有重要意义。自1957年首次报告巴贝斯虫病人间病例以来,这种人畜共患感染现已在世界范围内分布。在美国东北部和中西部北部,微小巴贝斯虫的传播周期与另一种众所周知的人畜共患病原体伯氏疏螺旋体的传播周期重叠,伯氏疏螺旋体是莱姆病的病原体。对人类和动物来源的巴贝斯虫和巴贝斯虫样螺旋体的系统发育分析表明,许多小型巴贝斯虫属,包括微巴贝斯虫、马巴贝斯虫、吉布斯氏螺旋体和最近描述的人类传染性螺旋体WA1,可能在系统发育上与希氏杆菌有关。这一观察结果的含义可能包括寄生虫发育的红细胞外阶段的可能存在,以及伴随的慢性、免疫抑制和淋巴细胞增殖的特征。在这篇综述中,我们简要总结了巴贝虫和相关螺形体研究的最新进展,并推测了人类慢性巴贝虫感染的后果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Babesiosis: new insights from phylogenetic analysis.

Piroplasms of the genus Babesia, along with their relatives to the Theileridae, comprise a genetically and antigenically diverse group of tick-transmitted intraerythrocytic pathogens that together have considerable veterinary, medical, and economic importance. Since the first description of a human case of babesiosis in 1957, this zoonotic infection has now attained a worldwide distribution. In the northeastern and upper midwestern United States, the transmission cycle of Babesia microti overlaps that of another well-known zoonotic agent, Borrelia burgdorferi, the causative agent of Lyme disease. Phylogenetic analysis of Babesia and Babesia-like piroplasms from human and animal sources has shown that many of the small Babesia spp., including B. microti, B. equi, B. gibsoni, and a recently described piroplasm infectious for humans known as WA1, may be phylogenetically related to Theileria. Implications of this observation may include the possible existence of an exoerythrocytic stage of parasite development and attendant features of chronicity, immune suppression, and perhaps lymphoproliferation. In this review, we provide a brief summary of recent developments in the study of Babesia and related piroplasms and speculate on the ramifications of chronic babesial infection in humans.

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