Literature DB >> 3436874

Increased carotid body hypoxic sensitivity during acclimatization to hypobaric hypoxia.

M Vizek1, C K Pickett, J V Weil.   

Abstract

Mechanisms of ventilatory acclimatization to chronic hypoxia remain unclear. To determine whether the sensitivity of peripheral chemoreceptors to hypoxia increases during acclimatization, we measured ventilatory and carotid sinus nerve responses to isocapnic hypoxia in seven cats exposed to simulated altitude of 15,000 ft (barometric pressure = 440 Torr) for 48 h. A control group (n = 7) was selected for hypoxic ventilatory responses matched to the preacclimatized measurements of the experimental group. Exposure to 48 h of hypobaric hypoxia produced acclimatization manifested as decrease in end-tidal PCO2 (PETCO2) in normoxia (34.5 +/- 0.9 Torr before, 28.9 +/- 1.2 after the exposure) as well as in hypoxia (28.1 +/- 1.9 Torr before, 21.8 +/- 1.9 after). Acclimatization produced an increase in hypoxic ventilatory response, measured as the shape parameter A (24.9 +/- 2.6 before, 35.2 +/- 5.6 after; P less than 0.05), whereas values in controls remained unchanged (25.7 +/- 3.2 and 23.1 +/- 2.7; NS). Hypoxic exposure was associated with an increase in the carotid body response to hypoxia, similarly measured as the shape parameter A (24.2 +/- 4.7 in control, 44.5 +/- 8.2 in acclimatized cats). We also found an increased dependency of ventilation on carotid body function (PETCO2 increased after unilateral section of carotid sinus nerve in acclimatized but not in control animals). These results suggest that acclimatization is associated with increased hypoxic ventilatory response accompanied by enhanced peripheral chemoreceptor responsiveness, which may contribute to the attendant rise in ventilation.

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Year:  1987        PMID: 3436874     DOI: 10.1152/jappl.1987.63.6.2403

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  25 in total

1.  Effect of two durations of short-term intermittent hypoxia on ventilatory chemosensitivity in humans.

Authors:  Keisho Katayama; Koji Ishida; Ken-Ichi Iwasaki; Miharu Miyamura
Journal:  Eur J Appl Physiol       Date:  2009-01-06       Impact factor: 3.078

Review 2.  Peripheral chemoreceptors: function and plasticity of the carotid body.

Authors:  Prem Kumar; Nanduri R Prabhakar
Journal:  Compr Physiol       Date:  2012-01       Impact factor: 9.090

3.  O2-sensitive K+ currents in carotid body chemoreceptor cells from normoxic and chronically hypoxic rats and their roles in hypoxic chemotransduction.

Authors:  C N Wyatt; C Wright; D Bee; C Peers
Journal:  Proc Natl Acad Sci U S A       Date:  1995-01-03       Impact factor: 11.205

4.  Changes in carotid body and nTS neuronal excitability following neonatal sustained and chronic intermittent hypoxia exposure.

Authors:  C A Mayer; C G Wilson; P M MacFarlane
Journal:  Respir Physiol Neurobiol       Date:  2014-09-26       Impact factor: 1.931

Review 5.  Adaptive and maladaptive cardiorespiratory responses to continuous and intermittent hypoxia mediated by hypoxia-inducible factors 1 and 2.

Authors:  Nanduri R Prabhakar; Gregg L Semenza
Journal:  Physiol Rev       Date:  2012-07       Impact factor: 37.312

6.  Chronic hypoxia increases the gain of the hypoxic ventilatory response by a mechanism in the central nervous system.

Authors:  Katherine A Wilkinson; Kimberly Huey; Bruce Dinger; Liang He; Salvatore Fidone; Frank L Powell
Journal:  J Appl Physiol (1985)       Date:  2010-05-20

Review 7.  Time Domains of the Hypoxic Ventilatory Response and Their Molecular Basis.

Authors:  Mathhew E Pamenter; Frank L Powell
Journal:  Compr Physiol       Date:  2016-06-13       Impact factor: 9.090

Review 8.  Immediate and long-term responses of the carotid body to high altitude.

Authors:  David F Wilson; Arijit Roy; Sukhamay Lahiri
Journal:  High Alt Med Biol       Date:  2005       Impact factor: 1.981

9.  Exposure to cyclic intermittent hypoxia increases expression of functional NMDA receptors in the rat carotid body.

Authors:  Yuzhen Liu; En-Sheng Ji; Shuanglin Xiang; Renaud Tamisier; Jingli Tong; Jianhua Huang; J Woodrow Weiss
Journal:  J Appl Physiol (1985)       Date:  2008-10-16

10.  Chronic hypoxia suppresses the CO2 response of solitary complex (SC) neurons from rats.

Authors:  Nicole L Nichols; Katherine A Wilkinson; Frank L Powell; Jay B Dean; Robert W Putnam
Journal:  Respir Physiol Neurobiol       Date:  2009-07-18       Impact factor: 1.931

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