Paneth细胞在肠道生理和病理生理中的作用。

Nikolaus Gassler
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引用次数: 115

摘要

小肠黏膜的特点是绒毛形成结缔组织,表面有高度特化的上皮细胞,主要有助于建立肠道边界。为了实现这些不同的功能,在隐窝绒毛轴上发现了空间上不同的上皮分化区室,包括Paneth细胞作为一种高度特化的细胞类型。Paneth细胞位于隐窝中,协助未分化的柱状细胞(称为隐窝基柱状细胞)和吸收型和分泌型细胞再生中的快速扩增细胞。有证据表明,Paneth细胞参与了干细胞带的配置和功能,以及肠形态发生和隐窝裂变。然而,Paneth细胞向隐窝底部的流动需要由EphB3引导并部分被Notch拮抗的强Wnt信号。此外,成熟的Paneth细胞对于α-防御素/隐素等抗菌肽的产生和分泌至关重要。这些抗菌剂在生理上参与形成微生物组的组成。自噬相关的16-like 1 (ATG16L1)是一种遗传危险因子,参与Paneth细胞的胞吐途径,也是PPAR信号传导和脂质代谢的连接分子。有证据表明,Paneth细胞的损伤参与了不同肠道疾病的发病过程。本文综述了肠道Paneth细胞活性在肠道生理和病理生理中的研究要点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Paneth cells in intestinal physiology and pathophysiology.

Paneth cells in intestinal physiology and pathophysiology.

Paneth cells in intestinal physiology and pathophysiology.

Paneth cells in intestinal physiology and pathophysiology.

Small intestinal mucosa is characterised by villus forming connective tissues with highly specialised surface lining epithelial cells essentially contributing to the establishment of the intestinal border. In order to perform these diverse functions, spatially distinct compartments of epithelial differentiation are found along the crypt-villus axis, including Paneth cells as a highly specialised cell type. Paneth cells locate in crypts and assist undifferentiated columnar cells, called crypt base columnar cells, and rapidly amplifying cells in the regeneration of absorptive and secretory cell types. There is some evidence that Paneth cells are involved in the configuration and function of the stem cell zone as well as intestinal morphogenesis and crypt fission. However, the flow of Paneth cells to crypt bottoms requires strong Wnt signalling guided by EphB3 and partially antagonised by Notch. In addition, mature Paneth cells are essential for the production and secretion of antimicrobial peptides including α-defensins/cryptdins. These antimicrobials are physiologically involved in shaping the composition of the microbiome. The autophagy related 16-like 1 (ATG16L1) is a genetic risk factor and is involved in the exocytosis pathway of Paneth cells as well as a linker molecule to PPAR signalling and lipid metabolism. There is evidence that injuries of Paneth cells are involved in the etiopathogenesis of different intestinal diseases. The review provides an overview of the key points of Paneth cell activities in intestinal physiology and pathophysiology.

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