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间质基质和淋巴系统在胃肠道脂质及脂蛋白代谢中的作用

The Role of Interstitial Matrix and the Lymphatic System in Gastrointestinal Lipid and Lipoprotein Metabolism.

作者信息

Zhou Anna, Qu Jie, Liu Min, Tso Patrick

机构信息

Department of Pathology and Laboratory Medicine, University of Cincinnati Reading Campus, Cincinnati, OH, United States.

出版信息

Front Physiol. 2020 Jan 22;11:4. doi: 10.3389/fphys.2020.00004. eCollection 2020.

Abstract

This review emphasizes the events that take place after the chylomicrons are secreted by the enterocytes through exocytosis. First, we will discuss the journey of how chylomicrons cross the basement membrane to enter the lamina propria. Then the chylomicrons have to travel across the lamina propria before they can enter the lacteals. To understand the factors affecting the trafficking of chylomicron particles across the lamina propria, it is important to understand the composition and properties of the lamina propria. With different degree of hydration, the pores of the lamina propria (sponge) changes. The greater the hydration, the greater the pore size and thus the easier the diffusion of the chylomicron particles across the lamina propria to enter the lacteals. The mechanism of the entry of lacteals is discussed in considerable details. We and others have demonstrated that intestinal fat absorption, but not the absorption of protein or carbohydrates, activates the intestinal mucosal mast cells to release many products including mucosal mast cell protease II in the rat. The activation of intestinal mucosal mast cells by fat absorption involves the process of chylomicron formation since the absorption of both medium and short-chain fatty acids do not activate the mast cells. Fat absorption has been associated with increased intestinal permeability. We hypothesize that there is a link between fat absorption, activation of mucosal mast cells, and the leaky gut phenomenon (increased intestinal permeability). Microbiome may also be involved in this chain of events associated with fat absorption. This review is presented in sequence under the following headings: (1) Introduction; (2) Structure and properties of the gut epithelial basement membrane; (3) Composition and physical properties of the interstitial matrix of the lamina propria; (4) The movement of chylomicrons across the interstitial matrix of the lamina propria and importance of the hydration of the interstitial matrix of the lamina propria and the movement of chylomicrons; (5) Entry of the chylomicrons into the intestinal lacteals; (6) Activation of mucosal mast cells by fat absorption and the metabolic consequences; and (7) Link between chylomicron transport, mucosal mast cell activation, leaky gut, and the microbiome.

摘要

本综述重点介绍了乳糜微粒通过肠细胞胞吐作用分泌后所发生的一系列事件。首先,我们将探讨乳糜微粒如何穿过基底膜进入固有层的过程。然后,乳糜微粒在进入乳糜管之前必须穿过固有层。为了理解影响乳糜微粒在固有层中运输的因素,了解固有层的组成和特性很重要。随着水合程度的不同,固有层(海绵状)的孔隙会发生变化。水合程度越高,孔径越大,因此乳糜微粒穿过固有层进入乳糜管就越容易。文中对乳糜微粒进入乳糜管的机制进行了详细讨论。我们和其他人已经证明,在大鼠中,肠道脂肪吸收而非蛋白质或碳水化合物的吸收会激活肠道黏膜肥大细胞,使其释放包括黏膜肥大细胞蛋白酶II在内的多种产物。脂肪吸收对肠道黏膜肥大细胞的激活涉及乳糜微粒的形成过程,因为中链和短链脂肪酸的吸收均不会激活肥大细胞。脂肪吸收与肠道通透性增加有关。我们推测脂肪吸收、黏膜肥大细胞激活和肠道渗漏现象(肠道通透性增加)之间存在联系。微生物群也可能参与了这一系列与脂肪吸收相关的事件。本综述按照以下标题依次呈现:(1)引言;(2)肠道上皮基底膜的结构和特性;(3)固有层间质基质的组成和物理特性;(4)乳糜微粒穿过固有层间质基质的运动以及固有层间质基质水合作用和乳糜微粒运动的重要性;(5)乳糜微粒进入肠道乳糜管;(6)脂肪吸收对黏膜肥大细胞的激活及其代谢后果;(7)乳糜微粒运输、黏膜肥大细胞激活、肠道渗漏和微生物群之间的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d197/6987427/af5908bbb53d/fphys-11-00004-g001.jpg

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