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肠干细胞及其在稳态和疾病中的龛位。

Intestinal stem cells and their niches in homeostasis and disease.

机构信息

German Cancer Research Center (DKFZ), Heidelberg University, Division Signaling and Functional Genomics, BioQuant and Medical Faculty Mannheim, D-69120 Heidelberg, Germany; School of Biomedical Sciences, Hunan University, Changsha, China.

German Cancer Research Center (DKFZ), Heidelberg University, Division Signaling and Functional Genomics, BioQuant and Medical Faculty Mannheim, D-69120 Heidelberg, Germany.

出版信息

Cells Dev. 2023 Sep;175:203862. doi: 10.1016/j.cdev.2023.203862. Epub 2023 Jun 2.

Abstract

Tissues such as the intestine harbor stem cells that have remarkable functional plasticity in response to a dynamic environment. To adapt to the environment, stem cells constantly receive information from their surrounding microenvironment (also called the 'niche') that instructs them how to adapt to changes. The Drosophila midgut shows morphological and functional similarities to the mammalian small intestine and has been a useful model system to study signaling events in stem cells and tissue homeostasis. In this review, we summarize the current understanding of the Drosophila midgut regarding how stem cells communicate with microenvironmental niches including enteroblasts, enterocytes, enteroendocrine cells and visceral muscles to coordinate tissue regeneration and homeostasis. In addition, distant cells such as hemocytes or tracheal cells have been shown to interact with stem cells and influence the development of intestinal diseases. We discuss the contribution of stem cell niches in driving or counteracting disease progression, and review conceptual advances derived from the Drosophila intestine as a model for stem cell biology.

摘要

组织(如肠道)中存在干细胞,这些干细胞在应对动态环境时具有显著的功能可塑性。为了适应环境,干细胞不断从周围的微环境(也称为“龛”)中接收信息,这些信息指导它们如何适应变化。果蝇的中肠与哺乳动物的小肠在形态和功能上具有相似性,已成为研究干细胞和组织稳态中信号事件的有用模型系统。在这篇综述中,我们总结了目前对果蝇中肠的理解,即干细胞如何与包括肠母细胞、肠细胞、肠内分泌细胞和内脏肌肉在内的微环境龛进行交流,以协调组织再生和稳态。此外,已经表明远处的细胞(如血细胞或气管细胞)与干细胞相互作用并影响肠道疾病的发展。我们讨论了干细胞龛在推动或对抗疾病进展中的作用,并回顾了源自果蝇肠道作为干细胞生物学模型的概念进展。

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