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迷走神经传入纤维的电生理学:肠道中的氨基酸检测

Electrophysiology of vagal afferents: amino acid detection in the gut.

作者信息

Horn Charles C

机构信息

Monell Chemical Senses Center, Philadelphia, Pennsylvania 19104, USA.

出版信息

Ann N Y Acad Sci. 2009 Jul;1170:69-76. doi: 10.1111/j.1749-6632.2009.03907.x.

Abstract

The alimentary canal includes the mouth, stomach, and intestines, and is connected to the brain by thousands of chemosensory neurons. In contrast to the understanding of the lingual taste system, there is little insight into the chemosensory function of other regions of the alimentary canal. The presence of known taste receptors in the gastrointestinal tract suggests a similarity to taste mechanisms present in the oral cavity. Afferent fibers of the vagus play a prominent role in signaling the chemical contents of the gastrointestinal tract to the hindbrain and this information can be used to elicit defensive responses, such as vomiting or nutritional responses. A host of amino acids are likely detected by vagal afferent fibers, but the initial sensory transduction of these stimuli and functional significance remains a mystery. Several problems with recording the electrophysiological signals of vagal afferents are discussed, with particular reference to sampling the afferent signals from the duodenum and liver region.

摘要

消化道包括口腔、胃和肠道,并通过数千个化学感应神经元与大脑相连。与对舌味觉系统的了解不同,人们对消化道其他区域的化学感应功能知之甚少。胃肠道中存在已知的味觉受体,这表明其与口腔中的味觉机制相似。迷走神经的传入纤维在向后脑传递胃肠道化学物质信息方面发挥着重要作用,这些信息可用于引发防御反应,如呕吐或营养反应。迷走神经传入纤维可能会检测到大量氨基酸,但这些刺激的初始感觉转导及其功能意义仍是个谜。文中讨论了记录迷走神经传入纤维电生理信号的几个问题,特别提到了从十二指肠和肝脏区域采集传入信号的情况。

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