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腔状细胞对组织腔状状态和相互作用模块的整合。

Tuft cell integration of luminal states and interaction modules in tissues.

机构信息

Institute of Physiology, University of Zurich, Winterthurerstrasse 190, CH-8057, Zürich, Switzerland.

出版信息

Pflugers Arch. 2021 Nov;473(11):1713-1722. doi: 10.1007/s00424-021-02630-2. Epub 2021 Oct 11.

Abstract

Chemosensory processes are integral to the physiology of most organisms. This function is typically performed by specialized cells that are able to detect input signals and to convert them to an output dedicated to a particular group of target cells. Tuft cells are cholinergic chemosensory epithelial cells capable of producing immunologically relevant effector molecules. They are scattered throughout endoderm-derived hollow organs and function as sensors of luminal stimuli, which has been best studied in mucosal barrier epithelia. Given their epithelial origin and broad distribution, and based on their interplay with immune pathways, tuft cells can be considered a prototypical example of how complex multicellular organisms engage innate immune mechanisms to modulate and optimize organ physiology. In this review, I provide a concise overview of tuft cells and discuss how these cells influence organ adaptation to dynamic luminal conditions.

摘要

化感过程是大多数生物体生理学的一个组成部分。该功能通常由专门的细胞执行,这些细胞能够检测输入信号,并将其转换为专门针对特定靶细胞群的输出。Tuft 细胞是胆碱能化感上皮细胞,能够产生具有免疫相关性的效应分子。它们散布在内胚层衍生的中空器官中,作为腔刺激物的传感器发挥作用,这在黏膜屏障上皮中得到了最好的研究。鉴于它们的上皮起源和广泛分布,并基于它们与免疫途径的相互作用,Tuft 细胞可以被认为是复杂多细胞生物体如何利用先天免疫机制来调节和优化器官生理学的典型范例。在这篇综述中,我提供了对 Tuft 细胞的简要概述,并讨论了这些细胞如何影响器官对动态腔条件的适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06fa/8528756/c9c6cdf8dc70/424_2021_2630_Fig1_HTML.jpg

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