支气管收缩
迷走神经
神经科学
气道
感觉系统
生物
反射
TRPV1型
酸敏离子通道
医学
瞬时受体电位通道
麻醉
离子通道
刺激
内科学
受体
作者
Jo-Chiao Wang,Théo Crosson,Sébastien Talbot
出处
期刊:Methods in molecular biology
日期:2022-01-01
卷期号:: 297-314
被引量:6
标识
DOI:10.1007/978-1-0716-2364-0_21
摘要
Internal organs, including the airway, are innervated by neurons of the autonomic and sensory nervous systems. The airway-innervating sensory neurons primarily originate from the vagus nerve, whose cell bodies are found, in rodents, in the jugular and nodose ganglia complex (JNC). About half of these sensory neurons expressed the heat-sensing ion channel TRPV1 and evolved to limit tissue damage by detecting chemical, mechanical, or thermal threats and to initiate protective airway reflexes such as coughing and bronchoconstriction. They also help monitor the host homeostasis by sensing nutrients, pressure, and O2 levels and help mount airway defenses by controlling immune and goblet cell activity. To better appreciate the scope of the physiological role and pathological contributions of these neurons, we will review gain and loss-of-function approaches geared at controlling the activity of these neurons. We will also present a method to study transcriptomic changes in airway-innervating neurons and a co-culture approach designed to understand how nociceptors modulate immune responses.
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