Central Respiratory Chemoreception

被引:182
作者
Guyenet, Patrice G. [1 ]
Stornetta, Ruth L. [1 ]
Bayliss, Douglas A. [1 ]
机构
[1] Univ Virginia, Dept Pharmacol, Charlottesville, VA 22908 USA
基金
美国国家卫生研究院;
关键词
central respiratory chemoreceptors; retrotrapezoid nucleus neurons; PCO2; pH; CENTRAL HYPOVENTILATION SYNDROME; LOCUS-COERULEUS NEURONS; DOMAIN K+ CHANNEL; 2-PORE-DOMAIN POTASSIUM CHANNELS; RETROTRAPEZOID NUCLEUS NEURONS; MEDULLARY SEROTONERGIC NEURONS; CAUDAL VENTROLATERAL MEDULLA; CENTRAL CO2 CHEMORECEPTION; PROTEIN-COUPLED RECEPTORS; RAT INCREASES VENTILATION;
D O I
10.1002/cne.22435
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
By definition central respiratory chemoreceptors (CRCs) are cells that are sensitive to changes in brain PCO2 or pH and contribute to the stimulation of breathing elicited by hypercapnia or metabolic acidosis. CO2 most likely works by lowering pH. The pertinent proton receptors have not been identified and may be ion channels. CRCs are probably neurons but may also include acid-sensitive glia and vascular cells that communicate with neurons via paracrine mechanisms. Retrotrapezoid nucleus (RTN) neurons are the most completely characterized CRCs. Their high sensitivity to CO2 in vivo presumably relies on their intrinsic acid sensitivity, excitatory inputs from the carotid bodies and brain regions such as raphe and hypothalamus, and facilitating influences from neighboring astrocytes. RTN neurons are necessary for the respiratory network to respond to CO2 during the perinatal period and under anesthesia. In conscious adults, RTN neurons contribute to an unknown degree to the pH-dependent regulation of breathing rate, inspiratory, and expiratory activity. The abnormal prenatal development of RTN neurons probably contributes to the congenital central hypoventilation syndrome. Other CRCs presumably exist, but the supportive evidence is less complete. The proposed locations of these CRCs are the medullary raphe, the nucleus tractus solitarius, the ventrolateral medulla, the fastigial nucleus, and the hypothalamus. Several wake-promoting systems (serotonergic and catecholaminergic neurons, orexinergic neurons) are also putative CRCs. Their contribution to central respiratory chemoreception may be behavior dependent or vary according to the state of vigilance. J. Comp. Neurol. 518:3883-3906, 2010. (C) 2010 Wiley-Liss, Inc.
引用
收藏
页码:3883 / 3906
页数:24
相关论文
共 197 条
[71]   Retrotrapezoid nucleus: a litmus test for the identification of central chemoreceptors [J].
Guyenet, PG ;
Stornetta, RL ;
Bayliss, DA ;
Mulkey, DK .
EXPERIMENTAL PHYSIOLOGY, 2005, 90 (03) :247-253
[72]  
GUYENET PG, 2010, RESP PHYSL NEUR 0225
[73]  
Haldine JS, 1905, J PHYSIOL-LONDON, V32, P225
[74]  
Hartzler LK, 2008, ADV EXP MED BIOL, V605, P333
[75]   Modulation of the respiratory rhythm generator by the pontine noradrenergic A5 and A6 groups in rodents [J].
Hilaire, G ;
Viemari, JC ;
Coulon, P ;
Simonneau, M ;
Bévengut, M .
RESPIRATORY PHYSIOLOGY & NEUROBIOLOGY, 2004, 143 (2-3) :187-197
[76]   Defects in breathing and thermoregulation in mice with near-complete absence of central serotonin neurons [J].
Hodges, Matthew R. ;
Tattersall, Glenn J. ;
Harris, Michael B. ;
McEvoy, Sean D. ;
Richerson, Diana N. ;
Deneris, Evan S. ;
Johnson, Randy L. ;
Chen, Zhou-Feng ;
Richerson, George B. .
JOURNAL OF NEUROSCIENCE, 2008, 28 (10) :2495-2505
[77]   Effects on breathing of focal acidosis at multiple medullary raphe sites in awake goats [J].
Hodges, MR ;
Martino, P ;
Davis, S ;
Opansky, C ;
Pan, LG ;
Forster, HV .
JOURNAL OF APPLIED PHYSIOLOGY, 2004, 97 (06) :2303-2309
[78]   Effects on breathing in awake and sleeping goats of focal acidosis in the medullary raphe [J].
Hodges, MR ;
Klum, L ;
Leekley, T ;
Brozoski, DT ;
Bastasic, J ;
Davis, S ;
Wenninger, JM ;
Feroah, TR ;
Pan, LG ;
Forster, HV .
JOURNAL OF APPLIED PHYSIOLOGY, 2004, 96 (05) :1815-1824
[79]   Multiple messengers in descending serotonin neurons:: localization and functional implications [J].
Hökfelt, T ;
Arvidsson, U ;
Cullheim, S ;
Millhorn, D ;
Nicholas, AP ;
Pieribone, V ;
Seroogy, K ;
Ulfhake, B .
JOURNAL OF CHEMICAL NEUROANATOMY, 2000, 18 (1-2) :75-86
[80]  
Holzer Peter, 2009, Handb Exp Pharmacol, P283, DOI 10.1007/978-3-540-79090-7_9