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基于粪便样本中单条带绦虫卵分离物的“邮购” RNA 测序诊断猪带绦虫感染。

Diagnosis of Taenia solium infections based on "mail order" RNA-sequencing of single tapeworm egg isolates from stool samples.

机构信息

Charité-Universitätsmedizin Berlin, corporate member of the Freie Universität Berlin and Humboldt-Universität zu Berlin, NeuroCure Cluster of Excellence, Berlin, Germany.

Department of Neurology, Centre for Global Health, Klinikum rechts der Isar, Technical University Munich (TUM), Munich, Germany.

出版信息

PLoS Negl Trop Dis. 2021 Dec 10;15(12):e0009787. doi: 10.1371/journal.pntd.0009787. eCollection 2021 Dec.

Abstract

Combined community health programs aiming at health education, preventive anti-parasitic chemotherapy, and vaccination of pigs have proven their potential to regionally reduce and even eliminate Taenia solium infections that are associated with a high risk of neurological disease through ingestion of T. solium eggs. Yet it remains challenging to target T. solium endemic regions precisely or to make exact diagnoses in individual patients. One major reason is that the widely available stool microscopy may identify Taenia ssp. eggs in stool samples as such, but fails to distinguish between invasive (T. solium) and less invasive Taenia (T. saginata, T. asiatica, and T. hydatigena) species. The identification of Taenia ssp. eggs in routine stool samples often prompts a time-consuming and frequently unsuccessful epidemiologic workup in remote villages far away from a diagnostic laboratory. Here we present "mail order" single egg RNA-sequencing, a new method allowing the identification of the exact Taenia ssp. based on a few eggs found in routine diagnostic stool samples. We provide first T. solium transcriptome data, which show extremely high mitochondrial DNA (mtDNA) transcript counts that can be used for subspecies classification. "Mail order" RNA-sequencing can be administered by health personnel equipped with basic laboratory tools such as a microscope, a Bunsen burner, and access to an international post office for shipment of samples to a next generation sequencing facility. Our suggested workflow combines traditional stool microscopy, RNA-extraction from single Taenia eggs with mitochondrial RNA-sequencing, followed by bioinformatic processing with a basic laptop computer. The workflow could help to better target preventive healthcare measures and improve diagnostic specificity in individual patients based on incidental findings of Taenia ssp. eggs in diagnostic laboratories with limited resources.

摘要

旨在进行健康教育、预防性驱虫化疗和给猪接种疫苗的社区综合卫生方案已被证明具有潜力,可以在区域范围内减少甚至消除与摄入猪带绦虫卵相关的、具有高神经疾病风险的猪带绦虫感染。然而,要精确地确定猪带绦虫流行地区或对个别患者进行准确诊断,仍然具有挑战性。一个主要原因是,广泛使用的粪便显微镜检查可能会将粪便样本中的带绦虫属卵识别为如此,但无法区分侵袭性(猪带绦虫)和侵袭性较低的带绦虫(牛带绦虫、亚洲带绦虫和细粒棘球绦虫)物种。在常规粪便样本中识别带绦虫属卵通常会促使在远离诊断实验室的偏远村庄进行耗时且经常不成功的流行病学调查。在这里,我们提出了“邮购”单卵 RNA 测序,这是一种新方法,可根据在常规诊断粪便样本中发现的少数卵来识别确切的带绦虫属。我们提供了第一个猪带绦虫转录组数据,这些数据显示了极高的线粒体 DNA(mtDNA)转录物计数,可用于亚种分类。“邮购”RNA 测序可以由配备基本实验室工具(如显微镜、本生灯和国际邮局,用于将样本运往下一代测序设施)的卫生人员进行管理。我们建议的工作流程结合了传统的粪便显微镜检查、从单个带绦虫卵中提取 RNA 与线粒体 RNA 测序,然后使用基本笔记本电脑进行生物信息学处理。该工作流程可以帮助更好地针对预防性医疗保健措施,并根据在资源有限的诊断实验室中偶然发现的带绦虫属卵来提高个别患者的诊断特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc80/8694474/afb144a6d4e0/pntd.0009787.g001.jpg

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