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首页> 外文期刊>Advances in Experimental Medicine and Biology >Molecular Mechanisms of the Sense of Touch: An Overview of Mechanical Transduction and Transmission in Merkel Discs of Whisker Hair Follicles and Some Clinical Perspectives
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Molecular Mechanisms of the Sense of Touch: An Overview of Mechanical Transduction and Transmission in Merkel Discs of Whisker Hair Follicles and Some Clinical Perspectives

机译:触摸感的分子机制:晶圆毛囊梅克尔圆盘机械转导和传播概述及多种临床观点

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摘要

The Merkel disc is a main type of tactile end organs for sensing gentle touch and is essential for sophisticated sensory tasks including social interaction, environmental exploration, and tactile discrimination. Recent studies have shown that Merkel cells are primary sites of mechanotransduction using Piezo2 channels as a molecular transducer in Merkel discs. Furthermore, tactile stimuli trigger serotonin release from Merkel cells to excite their associated whisker A beta-afferent endings and transmit tactile signals. The tactile transduction and transmission at Merkel discs may have important clinical implications in sensory dysfunctions such as the loss of tactile sensitivity and tactile allodynia seen in patients who have diabetes and inflammatory diseases and undergo chemotherapy.
机译:Merkel光盘是一种用于传感温和触摸的主要类型的触觉端子,对于复杂的感官任务至关重要,包括社会互动,环境探索和触觉歧视。 最近的研究表明,Merkel细胞是使用压电2通道作为Merkel圆盘中的分子传感器的机械调传导机的主要部位。 此外,触觉刺激从Merkel细胞引发血清素释放,激发其相关的晶须β-传入结束并传递触觉信号。 Merkel盘的触觉转导和传输可能具有重要的临床意义,如感官功能障碍,例如患有糖尿病和炎症性疾病的患者的触觉敏感性和触觉异常性疾病和化疗。

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