Functional morphology and physiology of pulmonary rapidly adapting receptors (RARs)

被引:58
作者
Widdicome, J [1 ]
机构
[1] Guys Kings & St Thomas Sch Biomed Sci, London, England
来源
ANATOMICAL RECORD PART A-DISCOVERIES IN MOLECULAR CELLULAR AND EVOLUTIONARY BIOLOGY | 2003年 / 270A卷 / 01期
关键词
rapidly adapting receptors; cough; augmented breaths; hyperpnoea; bronchoconstriction;
D O I
10.1002/ar.a.10003
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Rapidly adapting receptors (RARs) in the airway mucosa are found from the nasopharynx to the bronchi. They have thin (Adelta) vagal afferent fibres and lie in and under the epithelium, but their morphology has not been defined. They are very sensitive to mechanical stimuli, and have a rapidly adapting irregular discharge. However, with in vitro preparations they are rather insensitive to chemical stimuli, apart from acid and nonisos-molar solutions. Their pattern of response varies with site. RARs in the nasopharynx, larynx, and trachea usually respond only during the onset of stimuli, while those in the trachea often have an off-response as well. Those in the bronchi are less rapidly adapting and more chemosensitive. Their membranes have mechanosensitive and acid-sensitive ion channels, but no vanilloid receptors. In vivo RARs are sensitive to a wide range of chemical irritants and mediators, and presumably are excited secondarily to mechanical changes in the mucosa and airway smooth muscle. In the central nervous system (CNS) they interact with other vagal afferent pathways. The reflexes they cause vary with site (inspiratory efforts from the nasopharynx, cough or expiratory efforts from the larynx and trachea, and deep breaths or tachypnoea from the bronchi). Pathways from RARs and other vagal reflexes show plasticity at the peripheral, ganglionic, and CNS levels. (C) 2003 Wiley-Liss, Inc.
引用
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页码:2 / 10
页数:9
相关论文
共 86 条
[41]   AFFERENT NEURAL PATHWAYS IN COUGH AND REFLEX BRONCHOCONSTRICTION [J].
KARLSSON, JA ;
SANTAMBROGIO, G ;
WIDDICOMBE, J .
JOURNAL OF APPLIED PHYSIOLOGY, 1988, 65 (03) :1007-1023
[42]  
Keller CJ, 1929, Z BIOL-MUNICH, V89, P373
[43]   A UNITARY ANALYSIS OF PULMONARY VOLUME RECEPTORS [J].
KNOWLTON, GC ;
LARRABEE, MG .
AMERICAN JOURNAL OF PHYSIOLOGY, 1946, 147 (01) :100-114
[44]  
Korpas J., 1979, Cough and other respiratory reflexes, Progress in respiration research
[45]   The innervation of the human lung [J].
Larshell, O ;
Dow, RS .
AMERICAN JOURNAL OF ANATOMY, 1933, 52 (01) :125-146
[46]  
Mathew O.P., 1988, RESP FUNCTION UPPER, P259
[47]   EFFECTS OF VERATRIDINE AND NIFEDIPINE ON AMMONIA-INDUCED RAPIDLY ADAPTING PULMONARY STRETCH-RECEPTOR STIMULATION IN VAGOTOMIZED RABBITS [J].
MATSUMOTO, S ;
KANNO, T ;
NAGAYAMA, T ;
YAMASAKI, M ;
SHIMIZU, T .
JOURNAL OF THE AUTONOMIC NERVOUS SYSTEM, 1994, 48 (02) :133-142
[48]   Respiratory actions of tachykinins in the nucleus of the solitary tract: characterization of receptors using selective agonists and antagonists [J].
Mazzone, SB ;
Geraghty, DP .
BRITISH JOURNAL OF PHARMACOLOGY, 2000, 129 (06) :1121-1131
[49]   Central nervous system control of the airways: pharmacological implications [J].
Mazzone, SB ;
Canning, BJ .
CURRENT OPINION IN PHARMACOLOGY, 2002, 2 (03) :220-228
[50]  
MAZZONE SB, 2003, IN PRESS AM J PHYSL