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葡萄糖、上皮细胞与肠神经系统:暗处的对话

Glucose, epithelium, and enteric nervous system: dialogue in the dark.

作者信息

Pfannkuche H, Gäbel G

机构信息

Institute for Veterinary-Physiology, Faculty of Veterinary-Medicine, Leipzig University, Leipzig, Germany.

出版信息

J Anim Physiol Anim Nutr (Berl). 2009 Jun;93(3):277-86. doi: 10.1111/j.1439-0396.2008.00847.x.

Abstract

The gastrointestinal epithelium is in close contact with the various components of the chymus, including nutrients, bacteria and toxins. The epithelial barrier has to decide which components are effectively absorbed and which components are extruded. In the small intestine, a nutrient like glucose is mainly absorbed by the sodium linked glucose cotransporter 1 (SGLT1) and the glucose transporter 2 (GLUT2). The expression and activity of both transport proteins is directly linked to the amount of intraluminal glucose. Besides the direct interaction between glucose and the enterocytes, glucose also stimulates different sensory mechanisms within the intestinal wall. The most important types of cells involved in the sensing of intraluminal contents are enteroendocrine cells and neurones of the enteric nervous system. Regarding glucosensing, a distinct type of enteroendocrine cells, the enterochromaffine (EC) cells are involved. Excitation of EC cells by intraluminal glucose results in the release of serotonin (5-HT), which modulates epithelial functions and activates enteric secretomotorneurones. Enteric neurones are not only activated by 5-HT, but also directly by glucose. The activation of different cell types and the subsequent crosstalk between these cells may trigger appropriate absorptive and secretory processes within the intestine.

摘要

胃肠道上皮与食糜的各种成分密切接触,包括营养物质、细菌和毒素。上皮屏障必须决定哪些成分能被有效吸收,哪些成分被排出。在小肠中,像葡萄糖这样的营养物质主要通过钠依赖性葡萄糖共转运蛋白1(SGLT1)和葡萄糖转运蛋白2(GLUT2)进行吸收。这两种转运蛋白的表达和活性都与肠腔内葡萄糖的量直接相关。除了葡萄糖与肠上皮细胞之间的直接相互作用外,葡萄糖还刺激肠壁内的不同感觉机制。参与感知肠腔内内容物的最重要细胞类型是肠内分泌细胞和肠神经系统的神经元。关于葡萄糖感知,一种特殊类型的肠内分泌细胞,即肠嗜铬(EC)细胞参与其中。肠腔内葡萄糖对EC细胞的刺激会导致血清素(5-HT)的释放,血清素可调节上皮功能并激活肠分泌运动神经元。肠神经元不仅会被5-HT激活,也会直接被葡萄糖激活。不同细胞类型的激活以及这些细胞之间随后的相互作用可能会触发肠道内适当的吸收和分泌过程。

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