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首页> 外文期刊>American Journal of Physiology >Taste receptors in the gastrointestinal tract. IV. Functional implications of bitter taste receptors in gastrointestinal chemosensing.
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Taste receptors in the gastrointestinal tract. IV. Functional implications of bitter taste receptors in gastrointestinal chemosensing.

机译:胃肠道中的味觉受体。 IV。苦味受体在胃肠化学传感中的功能意义。

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摘要

Changes in the luminal contents of the gastrointestinal tract modulate gastrointestinal functions, including absorption of nutrients, food intake, and protection against harmful substances. The current notion is that mucosal enteroendocrine cells act as primary chemoreceptors by releasing signaling molecules in response to changes in the luminal environment, which in turn activate nerve terminals. The recent discovery that taste receptors and G protein subunits alpha-gustducin and alpha-transducin, involved in gustatory signal transduction, are expressed in the gastrointestinal mucosa supports the concept of a chemosensory machinery in the gastrointestinal tract. An understanding of luminal sensing processes responsible for the generation of the appropriate functional response to specific nutrients and nonnutrients is of clinical importance since aberrant or unsteady responses to changes in luminal contents might result in disease states ranging from intoxication to feeding disorders and inflammation. The purpose of this theme article is to discuss the functional implications of bitter taste signaling molecules in the gastrointestinal tract deduced by their localization in selected populations of epithelial cells and their relationship with neural pathways responsible for the generation of specific responses to luminal contents.
机译:胃肠道内腔含量的变化调节了胃肠功能,包括营养吸收,食物摄入以及对有害物质的防护。目前的观点是,粘膜肠内分泌细胞通过响应腔环境的变化而释放信号分子,从而激活神经末梢,从而充当主要的化学感受器。涉及味觉信号转导的味觉受体和G蛋白亚基α-gustducin和α-transducin在胃肠道粘膜中表达的最新发现支持了胃肠道化学感应机制的概念。对负责对特定营养物和非营养物产生适当功能响应的腔内传感过程的理解具有临床重要性,因为对腔内含量变化的异常或不稳定响应可能导致疾病状态,从中毒到进食障碍和炎症。本主题文章的目的是讨论苦味信号分子在胃肠道中的功能含义,这些分子是由其在上皮细胞的选定群体中的定位所推导的,以及它们与负责对腔内容物产生特定反应的神经途径的关系。

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