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Sweet sensing, homeostasis and hedonics in the human gut-brain axis

机译:人体肠道轴线上的甜味感知,稳态和快感

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摘要

Consumption of added sugars has been associated with excessive energy intake, obesity and its comorbidities, while non-nutritive sweeteners offer caloric-free sweet taste and might be helpful in decreasing energy intake. The importance of gut-brain nutrient signalling in the regulation of food intake has recently become a field of extensive research; however understanding about how nutritive and non-nutritive sweet tastants affect gut-brain cross-talk is limited. Much of the research has focused on the effects of non-nutritive sweeteners on gut function, especially after the demonstration that sweet taste receptors are also present in enteroendocrine cells. However, the majority of human studies have not confirmed a physiologically significant biological activity of non-nutritive sweeteners, nor a role for gut sweet taste receptors in glucose and gut peptide postprandial responses, gastric emptying or appetite. The use of functional and physiological MRI scanning has enabled the investigation of human brain responses to sweet tastants. Imaging studies have demonstrated that the human brain is able to distinguish sweet taste coming from caloric sugars from non-nutritive sweeteners, most likely as a result of nutrient detection in the gut. More studies are required to explore the comparative effects of caloric sugars and non-nutritive sweeteners on homeostatic, neurophysiological and hedonic signals, which may interact to determine the effects of sweet sensing.
机译:摄入糖分过多与能量摄入过多,肥胖及其合并症有关,而非营养性甜味剂则提供无热量的甜味,可能有助于减少能量摄入。肠脑营养信号在调节食物摄入中的重要性最近已成为广泛研究的领域。但是,关于营养性和非营养性甜味剂如何影响肠脑串扰的理解是有限的。许多研究集中在非营养性甜味剂对肠道功能的影响上,特别是在证明肠内分泌细胞中也存在甜味受体后。然而,大多数人类研究尚未证实非营养性甜味剂的生理学生物学活性,也未证实肠道甜味受体在葡萄糖和肠肽餐后反应,胃排空或食欲中的作用。功能性和生理性MRI扫描的使用已使人们能够研究人脑对甜味剂的反应。影像学研究表明,人脑能够将热量糖和非营养性甜味剂区分开来,这很可能是由于肠道中营养成分的检测所致。需要更多的研究来探索含热量的糖和非营养性甜味剂对稳态,神经生理学和享乐性信号的比较效果,这些信号可能相互作用以确定甜味感测的效果。

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