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禽类肠道模型的研究进展、挑战及未来应用。

Advances, challenges and future applications of avian intestinal models.

机构信息

The Roslin Institute & R(D)SVS, University of Edinburgh, Edinburgh, UK.

出版信息

Avian Pathol. 2022 Aug;51(4):317-329. doi: 10.1080/03079457.2022.2084363. Epub 2022 Jun 16.

DOI:10.1080/03079457.2022.2084363
PMID:35638458
Abstract

There is a rapidly growing interest in how the avian intestine is affected by dietary components and probiotic microorganisms, as well as its role in the spread of infectious diseases in both the developing and developed world. A paucity of physiologically relevant models has limited research in this essential field of poultry gut health and led to an over-reliance on the use of live birds for experiments. The intestine is characterized by a complex cellular composition with numerous functions, unique dynamic locations and interdependencies making this organ challenging to recreate . This review illustrates the tools that aim to recapitulate this intestinal environment; from the simplest cell lines, which mimic select features of the intestine but lack anatomical and physiological complexity, to the more recently developed complex 3D enteroids, which recreate more of the intestine's intricate microanatomy, heterogeneous cell populations and signalling gradients. We highlight the benefits and limitations of intestinal models and describe their current applications and future prospective utilizations in intestinal biology and pathology research. We also describe the scope to improve on the current systems to include, for example, microbiota and a dynamic mechanical environment, vital components which enable the intestine to develop and maintain homeostasis . As this review explains, no one model is perfect, but the key to choosing a model or combination of models is to carefully consider the purpose or scientific question.

摘要

人们对禽类肠道如何受到饮食成分和益生菌微生物的影响,以及它在发展中国家和发达国家传染病传播中的作用越来越感兴趣。由于缺乏与生理相关的模型,限制了家禽肠道健康这一重要领域的研究,导致过度依赖活体鸟类进行实验。肠道的特点是具有复杂的细胞组成,具有许多功能、独特的动态位置和相互依存关系,使得这个器官难以复制。这篇综述介绍了旨在再现这种肠道环境的工具;从最简单的细胞系开始,这些细胞系模拟了肠道的某些特征,但缺乏解剖学和生理学的复杂性,再到最近开发的复杂的 3D 类器官,这些类器官再现了更多肠道复杂的微观解剖结构、异质细胞群体和信号梯度。我们强调了肠道模型的优点和局限性,并描述了它们在肠道生物学和病理学研究中的当前应用和未来的前瞻性利用。我们还描述了改进当前系统的范围,例如包括微生物群和动态力学环境,这些是使肠道能够发育和维持体内平衡的重要组成部分。正如本综述所解释的,没有一种模型是完美的,但选择一种模型或模型组合的关键是仔细考虑目的或科学问题。

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