运动病
神经科学
前庭系统
萎靡不振
吞咽不足
感觉系统
前庭核
臂旁外侧核
机械反应
生物
心理学
医学
臂旁核
受体
核心
内科学
下丘脑
遗传学
精神科
离子通道
作者
Pablo Machuca-Márquez,Laura Sánchez-Benito,Fabien Ménardy,Andrea Urpi,Mònica Girona,Emma Puighermanal,Isabella Appiah,Richard D. Palmiter,Elisenda Sanz,Albert Quintana
标识
DOI:10.1073/pnas.2304933120
摘要
Travel can induce motion sickness (MS) in susceptible individuals. MS is an evolutionary conserved mechanism caused by mismatches between motion-related sensory information and past visual and motion memory, triggering a malaise accompanied by hypolocomotion, hypothermia, hypophagia, and nausea. Vestibular nuclei (VN) are critical for the processing of movement input from the inner ear. Motion-induced activation of VN neurons recapitulates MS-related signs. However, the genetic identity of VN neurons mediating MS-related autonomic and aversive responses remains unknown. Here, we identify a central role of cholecystokinin (CCK)-expressing VN neurons in motion-induced malaise. Moreover, we show that CCK VN inputs onto the parabrachial nucleus activate Calca -expressing neurons and are sufficient to establish avoidance to novel food, which is prevented by CCK-A receptor antagonism. These observations provide greater insight into the neurobiological regulation of MS by identifying the neural substrates of MS and providing potential targets for treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI