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向孤束核吻侧核微量注射犬尿氨酸会破坏机械诱导的气管支气管咳嗽的时空特征。

Microinjection of kynurenic acid in the rostral nucleus of the tractus solitarius disrupts spatiotemporal aspects of mechanically induced tracheobronchial cough.

作者信息

Poliacek Ivan, Pitts Teresa, Rose Melanie J, Davenport Paul W, Simera Michal, Veternik Marcel, Kotmanova Zuzana, Bolser Donald C

机构信息

Department of Physiological Sciences, College of Veterinary Medicine, University of Florida, Gainesville, Florida.

Institute of Medical Biophysics, Jessenius Faculty of Medicine in Martin, Comenius University in Bratislava, Martin, Slovak Republic; and.

出版信息

J Neurophysiol. 2017 Jun 1;117(6):2179-2187. doi: 10.1152/jn.00935.2016. Epub 2017 Mar 1.

Abstract

The importance of neurons in the nucleus of the solitary tract (NTS) in the production of coughing was tested by microinjections of the nonspecific glutamate receptor antagonist kynurenic acid (kyn; 100 mM in artificial cerebrospinal fluid) in 15 adult spontaneously breathing anesthetized cats. Repetitive coughing was elicited by mechanical stimulation of the intrathoracic airway. Electromyograms (EMG) were recorded from inspiratory parasternal and expiratory transversus abdominis (ABD) muscles. Bilateral microinjections of kyn into the NTS rostral to obex [55 ± 4 nl total in 2 locations ( = 6) or 110 ± 4 nl total in 4 locations ( = 5)], primarily the ventrolateral subnucleus, reduced cough number and expiratory cough efforts (amplitudes of ABD EMG and maxima of esophageal pressure) compared with control. These microinjections also markedly prolonged the inspiratory phase, all cough-related EMG activation, and the total cough cycle duration as well as some other cough-related time intervals. In response to microinjections of kyn into the NTS rostral to the obex respiratory rate decreased, and there were increases in the durations of the inspiratory and postinspiratory phases and mean blood pressure. However, bilateral microinjections of kyn into the NTS caudal to obex as well as control vehicle microinjections in the NTS location rostral to obex had no effect on coughing or cardiorespiratory variables. These results are consistent with the existence of a critical component of the cough rhythmogenic circuit located in the rostral ventral and lateral NTS. Neuronal structures of the rostral NTS are significantly involved specifically in the regulation of cough magnitude and phase timing. The nucleus of the solitary tract contains significant neuronal structures responsible for control of ) cough excitability, ) motor drive during cough, ) cough phase timing, and ) cough rhythmicity. Significant elimination of neurons in the solitary tract nucleus results in cough apraxia (incomplete and/or disordered cough pattern). The mechanism of the cough impairment is different from that for the concomitant changes in breathing.

摘要

通过向15只成年自主呼吸的麻醉猫的孤束核(NTS)内微量注射非特异性谷氨酸受体拮抗剂犬尿氨酸(kyn;在人工脑脊液中浓度为100 mM),来测试孤束核神经元在咳嗽产生中的重要性。通过机械刺激胸内气道引发重复性咳嗽。从吸气期的胸骨旁肌和呼气期的腹横肌(ABD)记录肌电图(EMG)。向闩前方的NTS进行双侧微量注射kyn [2个部位总量为55±4 nl(n = 6)或4个部位总量为110±4 nl(n = 5)],主要是腹外侧亚核,与对照组相比,咳嗽次数和呼气期咳嗽力度(ABD肌电图幅度和食管压力最大值)降低。这些微量注射还显著延长了吸气期、所有与咳嗽相关的EMG激活、总咳嗽周期持续时间以及一些其他与咳嗽相关的时间间隔。对闩前方的NTS进行kyn微量注射后,呼吸频率降低,吸气期和吸气后期持续时间以及平均血压升高。然而,向闩后方的NTS进行双侧微量注射kyn以及在闩前方的NTS位置注射对照载体对咳嗽或心肺变量没有影响。这些结果与位于闩前方腹侧和外侧NTS的咳嗽节律发生回路的关键组成部分的存在一致。闩前方NTS的神经元结构特别显著地参与咳嗽幅度和相位定时的调节。孤束核包含负责控制(1)咳嗽兴奋性、(2)咳嗽时的运动驱动、(3)咳嗽相位定时和(4)咳嗽节律性的重要神经元结构。孤束核中神经元的显著消除会导致咳嗽失用症(不完全和/或紊乱的咳嗽模式)。咳嗽受损的机制与呼吸的伴随变化不同。

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