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首页> 外文期刊>Journal of Animal Science >NONRUMINANT NUTRITION SYMPOSIUM: Intestinal glucose sensing and regulation of glucose absorption: Implications for swine nutrition1
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NONRUMINANT NUTRITION SYMPOSIUM: Intestinal glucose sensing and regulation of glucose absorption: Implications for swine nutrition1

机译:非反刍动物营养学研讨会:肠道葡萄糖感应和葡萄糖吸收调节:对猪营养的影响1

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摘要

The Na^sup +/^glucose cotransporter (SGLT1) is the major route for the transport of dietary sugars from the lumen of the intestine into enterocytes. Regulation of this protein is essential for the provision of glucose to the body and avoidance of intestinal malabsorption. This has important nutritional implications in particular for young and growing animals. It has been demonstrated that dietary sugars and artificial sweeteners increase SGLT1 expression and the capacity of the gut to absorb monosaccharides. Furthermore, diets supplemented with artificial sweeteners have been shown to improve growth and performance of weaning piglets. In this review, after describing the organization of intestinal epithelium, the type of gut hormones released in response to dietary carbohydrates, the mechanism underlying the transcellular transport of glucose in the intestine is outlined. Next, a historical background to the work carried out in various laboratories aimed at identifying molecular mechanisms involved in regulation of intestinal glucose transporter, SGLT1, is described. Subsequently, the more recent data on the role of intestinal glucose, or sweet, sensor T1R2 + T1R3, a G protein-coupled receptor, required for upregulation of SGLT1 by dietary sugars and artificial sweeteners, are presented. The glucose sensor sub-units, T1R2 + T1R3, are members of the taste receptor family 1, T1R, and are expressed in the gut enteroendocrine cells. Sensing of dietary sugars and artificial sweeteners by T1R2 + T1R3 activates a pathway in endocrine cells leading to secretion of gut hormones. Finally, after describing molecular mechanisms by which a specific gut hormone released by endocrine cells may regulate SGLT1 expression in the neighboring absorptive enterocytes, the application of these findings to enhancing intestinal capacity to absorb dietary sugars in weaning piglets is presented. A better understanding of the molecular events involved in regulation of SGLT1 will allow the identification of nutritional targets with attendant promise of avoiding nutrient malabsorption and enhancing growth and well-being of species. [PUBLICATION ABSTRACT]
机译:Na + /葡萄糖共转运蛋白(SGLT1)是饮食糖从肠腔向肠上皮细胞运输的主要途径。这种蛋白质的调节对于向人体提供葡萄糖和避免肠道吸收不良至关重要。这对营养特别重要,特别是对于年幼的和成长中的动物。业已证明,膳食糖和人造甜味剂可增加SGLT1的表达并增强肠道吸收单糖的能力。此外,补充了人造甜味剂的日粮已显示可改善断奶仔猪的生长和生长性能。在这篇综述中,在描述了肠上皮的组织,响应饮食碳水化合物而释放的肠激素的类型之后,概述了葡萄糖在肠中跨细胞运输的机制。接下来,描述了在各种实验室中进行的旨在鉴定参与调节肠葡萄糖转运蛋白SGLT1的分子机制的工作的历史背景。随后,提供了有关饮食糖和人工甜味剂上调SGLT1所需的肠道葡萄糖或甜味传感器T1R2 + T1R3(一种G蛋白偶联受体)的最新数据。葡萄糖传感器亚基T1R2 + T1R3是味觉受体家族1 T1R的成员,在肠道肠内分泌细胞中表达。 T1R2 + T1R3对饮食糖和人造甜味剂的感测激活了内分泌细胞中导致肠道激素分泌的途径。最后,在描述了内分泌细胞释放的特定肠激素可能调节邻近吸收性肠上皮细胞中SGLT1表达的分子机制后,提出了这些发现在增强断奶仔猪吸收膳食糖的肠道能力中的应用。对SGLT1调控中涉及的分子事件的更好理解将有助于确定营养目标,同时有望避免养分吸收不良并增强物种的生长和福祉。 [出版物摘要]

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