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颈动脉体化学感受器复合体中的化学传递和电传递

Chemical and electric transmission in the carotid body chemoreceptor complex.

作者信息

Eyzaguirre Carlos

机构信息

Department of Physiology, University of Utah School of Medicine, Research Park, Salt Lake City, Utah 84108-1297, USA.

出版信息

Biol Res. 2005;38(4):341-5. doi: 10.4067/s0716-97602005000400005.

Abstract

Carotid body chemoreceptors are complex secondary receptors. There are chemical and electric connections between glomus cells (GC/GC) and between glomus cells and carotid nerve endings (GC/NE). Chemical secretion of glomus cells is accompanied by GC/GC uncoupling. Chemical GC/NE transmission is facilitated by concomitant electric coupling. Chronic hypoxia reduces GC/GC coupling but increases G/NE coupling. Therefore, carotid body chemoreceptors use chemical and electric transmission mechanisms to trigger and change the sensory discharge in the carotid nerve.

摘要

颈动脉体化学感受器是复杂的次级感受器。球细胞(GC/GC)之间以及球细胞与颈动脉神经末梢(GC/NE)之间存在化学和电连接。球细胞的化学分泌伴随着GC/GC解偶联。伴随的电偶联促进了化学性GC/NE传递。慢性缺氧会减少GC/GC偶联,但会增加G/NE偶联。因此,颈动脉体化学感受器利用化学和电传递机制来触发和改变颈动脉神经中的感觉放电。

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