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全球动物宿主中分离和检测的钩端螺旋体血清型分布:系统评价和在线数据库。

Global distribution of Leptospira serovar isolations and detections from animal host species: A systematic review and online database.

机构信息

Centre for International Health, University of Otago, Dunedin, New Zealand.

Department of Medicine, University of Otago Christchurch, Christchurch, New Zealand.

出版信息

Trop Med Int Health. 2024 Mar;29(3):161-172. doi: 10.1111/tmi.13965. Epub 2024 Feb 13.

Abstract

OBJECTIVES

Leptospira, the spirochaete causing leptospirosis, can be classified into >250 antigenically distinct serovars. Although knowledge of the animal host species and geographic distribution of Leptospira serovars is critical to understand the human and animal epidemiology of leptospirosis, current data are fragmented. We aimed to systematically review, the literature on animal host species and geographic distribution of Leptospira serovars to examine associations between serovars with animal host species and regions and to identify geographic regions in need of study.

METHODS

Nine library databases were searched from inception through 9 March 2023 using keywords including Leptospira, animal, and a list of serovars. We sought reports of detection of Leptospira, from any animal, characterised by cross agglutinin absorption test, monoclonal antibody typing, serum factor analysis, or pulsed-field gel electrophoresis to identify the serovar.

RESULTS

We included 409 reports, published from 1927 through 2022, yielding data on 154 Leptospira serovars. The reports included data from 66 (26.5%) of 249 countries. Detections were from 144 animal host species including 135 (93.8%) from the class Mammalia, 5 (3.5%) from Amphibia, 3 (2.1%) from Reptilia, and 1 (0.7%) from Arachnida. Across the animal host species, Leptospira serovars that were detected in the largest number of animal species included Grippotyphosa (n = 39), Icterohaemorrhagiae (n = 29), Pomona (n = 28), Australis (n = 25), and Ballum (n = 25). Of serovars, 76 were detected in a single animal host species. We created an online database to identify animal host species for each serovar by country.

CONCLUSIONS

We found that many countries have few or no Leptospira serovars detected from animal host species and that many serovars were detected from a single animal species. Our study highlights the importance of efforts to identify animal host species of leptospirosis, especially in places with a high incidence of human leptospirosis. We provide an updated resource for leptospirosis researchers.

摘要

目的

引起钩端螺旋体病的螺旋体钩端螺旋体可分为>250 种具有不同抗原性的血清型。尽管了解动物宿主物种和钩端螺旋体血清型的地理分布对于理解人类和动物钩端螺旋体病的流行病学至关重要,但目前的数据是零散的。我们旨在系统地回顾有关动物宿主物种和钩端螺旋体血清型地理分布的文献,以检查血清型与动物宿主物种和地区之间的关联,并确定需要研究的地理区域。

方法

从 1927 年到 2023 年 3 月 9 日,我们使用包括钩端螺旋体、动物和一系列血清型在内的关键词,在 9 个文库数据库中进行了搜索。我们寻找了从任何动物中检测到的钩端螺旋体的报告,这些动物通过交叉凝集吸收试验、单克隆抗体分型、血清因子分析或脉冲场凝胶电泳进行了特征描述,以确定血清型。

结果

我们纳入了 409 篇报告,这些报告发表于 1927 年至 2022 年期间,提供了 154 种钩端螺旋体血清型的数据。这些报告来自 249 个国家中的 66 个(26.5%)。检测结果来自 144 种动物宿主物种,包括 135 种(93.8%)来自哺乳动物纲,5 种(3.5%)来自两栖纲,3 种(2.1%)来自爬行纲,1 种(0.7%)来自蛛形纲。在所有的动物宿主物种中,在最多数目的动物物种中检测到的钩端螺旋体血清型包括 Grippotyphosa(n=39)、Icterohaemorrhagiae(n=29)、Pomona(n=28)、Australis(n=25)和 Ballum(n=25)。在血清型中,有 76 种仅在一种动物宿主物种中检测到。我们创建了一个在线数据库,按国家识别每种血清型的动物宿主物种。

结论

我们发现,许多国家从动物宿主物种中检测到的钩端螺旋体血清型很少或没有,许多血清型仅从一种动物物种中检测到。我们的研究强调了努力确定钩端螺旋体病的动物宿主物种的重要性,特别是在人类钩端螺旋体病发病率较高的地方。我们提供了一个更新的钩端螺旋体病研究资源。

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