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肠黏膜的生理性缺氧:短链脂肪酸的核心作用。

Physiologic hypoxia in the intestinal mucosa: a central role for short-chain fatty acids.

机构信息

Mucosal Inflammation Program, Division of Gastroenterology and Hepatology, Department of Medicine, University of Colorado Anschutz Medical Campus, Aurora, Colorado, United States.

Department of Healthcare Studies, University of Texas Dallas, Richardson, Texas, United States.

出版信息

Am J Physiol Cell Physiol. 2024 Oct 1;327(4):C1087-C1093. doi: 10.1152/ajpcell.00472.2024. Epub 2024 Aug 19.

Abstract

The intestinal mucosa is a dynamic surface that facilitates interactions between the host and an outside world that includes trillions of microbes, collectively termed the microbiota. This fine balance is regulated by an energetically demanding physical and biochemical barrier that is formed by the intestinal epithelial cells. In addition, this homeostasis exists at an interface between the anaerobic colonic lumen and a highly oxygenated, vascularized lamina propria. The resultant oxygen gradient within the intestine establishes "physiologic hypoxia" as a central metabolic feature of the mucosa. Although oxygen is vital for energy production to meet cellular metabolism needs, the availability of oxygen has far-reaching influences beyond just energy provision. Recent studies have shown that the intestinal mucosa has purposefully adapted to use differential oxygen levels largely through the presence of short-chain fatty acids (SCFAs), particularly butyrate (BA). Intestinal epithelial cells use butyrate for a multitude of functions that promote mucosal homeostasis. In this review, we explore how the physiologic hypoxia profile interfaces with SCFAs to benefit host mucosal tissues.

摘要

肠黏膜是一个动态的表面,促进宿主与包括数万亿微生物在内的外部世界之间的相互作用,这些微生物统称为微生物群。这种微妙的平衡是由肠道上皮细胞形成的能量需求高的物理和生化屏障来调节的。此外,这种体内平衡存在于无氧结肠腔和高度氧化、血管化的固有层之间的界面上。肠道内的氧气梯度导致“生理性缺氧”成为黏膜的中心代谢特征。尽管氧气对满足细胞代谢需求的能量产生至关重要,但氧气的可用性对能量供应的影响远远超出。最近的研究表明,肠黏膜已经通过短链脂肪酸(SCFAs),特别是丁酸盐(BA)的存在,有目的地适应利用不同的氧气水平。肠道上皮细胞使用丁酸盐来发挥多种功能,促进黏膜的体内平衡。在这篇综述中,我们探讨了生理缺氧状态如何与 SCFAs 相互作用,从而有益于宿主黏膜组织。

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