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肠道致病性感染:类器官遭遇细菌感染

Enteropathogenic Infections: Organoids Go Bacterial.

作者信息

Hentschel Viktoria, Arnold Frank, Seufferlein Thomas, Azoitei Ninel, Kleger Alexander, Müller Martin

机构信息

Department of Internal Medicine I, Ulm University, 88079 Ulm, Germany.

出版信息

Stem Cells Int. 2021 Jan 7;2021:8847804. doi: 10.1155/2021/8847804. eCollection 2021.

Abstract

Enteric infections represent a major health care challenge which is particularly prevalent in countries with restricted access to clean water and sanitation and lacking personal hygiene precautions, altogether facilitating fecal-oral transmission of a heterogeneous spectrum of enteropathogenic microorganisms. Among these, bacterial species are responsible for a considerable proportion of illnesses, hospitalizations, and fatal cases, all of which have been continuously contributing to ignite researchers' interest in further exploring their individual pathogenicity. Beyond the universally accepted animal models, intestinal organoids are increasingly valued for their ability to mimic key architectural and physiologic features of the native intestinal mucosa. As a consequence, they are regarded as the most versatile and naturalistic model of the gut, allowing monitoring of adherence, invasion, intracellular trafficking, and propagation as well as repurposing components of the host cell equipment. At the same time, infected intestinal organoids allow close characterization of the host epithelium's immune response to enteropathogens. In this review, (i) we provide a profound update on intestinal organoid-based tissue engineering, (ii) we report the latest pathophysiological findings defining the infected intestinal organoids, and (iii) we discuss the advantages and limitations of this model.

摘要

肠道感染是一项重大的医疗保健挑战,在那些难以获得清洁水和卫生设施且缺乏个人卫生预防措施的国家尤为普遍,这些因素共同促进了多种肠道致病微生物的粪口传播。其中,细菌种类导致了相当比例的疾病、住院和死亡病例,所有这些都不断激发研究人员进一步探索其各自致病性的兴趣。除了普遍接受的动物模型外,肠道类器官因其能够模拟天然肠黏膜的关键结构和生理特征而越来越受到重视。因此,它们被视为最通用、最自然的肠道模型,可用于监测细菌的黏附、侵袭、细胞内运输和繁殖,以及重新利用宿主细胞的组成部分。同时,受感染的肠道类器官能够详细表征宿主上皮细胞对肠道病原体的免疫反应。在这篇综述中,(i)我们对基于肠道类器官的组织工程进行了深入更新,(ii)我们报告了定义受感染肠道类器官的最新病理生理学发现,(iii)我们讨论了该模型的优点和局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df22/7810537/63941b97279e/SCI2021-8847804.001.jpg

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