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单侧鼻腔冷干空气刺激后双侧胆碱能分泌反应的证明

Demonstration of bilateral cholinergic secretory response after unilateral nasal cold, dry air challenge.

作者信息

Jankowski R, Philip G, Togias A, Naclerio R

机构信息

Department of Otolaryngology Head and Neck Surgery, University School of Medicine, Central Hospital, Nancy, France.

出版信息

Rhinology. 1993 Sep;31(3):97-100.

PMID:8256085
Abstract

Cold, dry air (CDA) causes rhinorrhoea and nasal congestion in some individuals. This response can be mimicked in the laboratory by exposing susceptible individuals to cold, dry air nasal breathing. One of the characteristics of this response is that nasal secretions are produced by both nostrils after a unilateral challenge. This study evaluated the role of cholinergic innervation on the ipsi- and contralateral responses to unilateral CDA challenge. Twelve individuals participated in a randomized, double-blind, placebo-controlled, 3-way crossover study where local atropine and placebo were alternated ipsilateral and the contralateral to the CDA challenge. The reproducibility of the model, assessed by the response after pre-treating with placebo, was excellent; after placebo, the ipsilateral response was double the size of the contralateral. Regardless of the site of application, atropine significantly reduced the secretory response to CDA by 60-70%. However, significant secretions were still induced by CDA, even after atropine treatment. We conclude that cholinergically-mediated neuronal pathways play a major role in the nasal secretory response to CDA. Additional neuronal pathways may, however, be involved. This method is a tool to understand the different components of the mucosal response to a cold and dry environment.

摘要

寒冷干燥空气(CDA)会使一些人出现鼻溢液和鼻塞。在实验室中,通过让易感个体进行寒冷干燥空气经鼻呼吸可模拟这种反应。这种反应的一个特点是,单侧刺激后双侧鼻孔都会产生鼻分泌物。本研究评估了胆碱能神经支配在单侧CDA刺激的同侧和对侧反应中的作用。12名个体参与了一项随机、双盲、安慰剂对照的三交叉研究,在该研究中,局部使用阿托品和安慰剂在CDA刺激的同侧和对侧交替进行。通过安慰剂预处理后的反应评估,该模型的可重复性极佳;使用安慰剂后,同侧反应的大小是对侧的两倍。无论应用部位如何,阿托品都能使对CDA的分泌反应显著降低60%至70%。然而,即使经过阿托品治疗,CDA仍会诱导显著的分泌物产生。我们得出结论,胆碱能介导的神经通路在对CDA的鼻分泌反应中起主要作用。不过,可能还涉及其他神经通路。该方法是一种了解黏膜对寒冷干燥环境反应不同组成部分的工具。

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