Brainstem PCO2 modulates phrenic responses to specific carotid body hypoxia in an in situ dual perfused rat preparation
- 26 January 2007
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 578 (3), 843-857
- https://doi.org/10.1113/jphysiol.2006.119594
Abstract
Inputs from central (brainstem) and peripheral (carotid body) respiratory chemoreceptors are coordinated to protect blood gases against potentially deleterious fluctuations. However, the mathematics of the steady-state interaction between chemoreceptors has been difficult to ascertain. Further, how this interaction affects time-dependent phenomena (in which chemoresponses depend upon previous experience) is largely unknown. To determine how central P(CO2) modulates the response to peripheral chemostimulation in the rat, we utilized an in situ arterially perfused, vagotomized, decerebrate preparation, in which central and peripheral chemoreceptors were perfused separately (i.e. dual perfused preparation (DPP)). We carried out two sets of experiments: in Experiment 1, we alternated steady-state brainstem P(CO2) between 25 and 50 Torr in each preparation, and applied specific carotid body hypoxia (60 Torr P(O2) and 40 Torr P(CO2)) under both conditions; in Experiment 2, we applied four 5 min bouts (separated by 5 min) of specific carotid body hypoxia (60 Torr P(O2) and 40 Torr P(CO2)) while holding the brainstem at either 30 Torr or 50 Torr P(CO2). We demonstrate that the level of brainstem P(CO2) modulates (a) the magnitude of the phrenic responses to a single step of specific carotid body hypoxia and (b) the magnitude of time-dependent phenomena. We report that the interaction between chemoreceptors is negative (i.e. hypo-additive), whereby a lower brainstem P(CO2) augments phrenic responses resulting from specific carotid body hypoxia. A negative interaction may underlie the pathophysiology of central sleep apnoea in populations that are chronically hypocapnic.Keywords
This publication has 80 references indexed in Scilit:
- Adaptation in the respiratory control systemCanadian Journal of Physiology and Pharmacology, 2003
- An assessment of central-peripheral ventilatory chemoreflex interaction in humansRespiration Physiology, 1992
- Respiratory patterns in anesthetised rats before and after anemic decerebrationRespiration Physiology, 1991
- Central-peripheral chemoreceptor ventilatory interaction in awake goatsRespiration Physiology, 1989
- Phrenic nerve responses to hypoxia and CO2 in decerebrate dogsRespiration Physiology, 1986
- Dependence of high altitude sleep apnea on ventilatory sensitivty to hypoxiaRespiration Physiology, 1983
- Influence of peripheral O2 tension on the ventilatory response to CO2 in catsRespiration Physiology, 1983
- Prolonged stimulation for respiration by endogenous central serotoninRespiration Physiology, 1980
- Relative contribution of central and peripheral chemoreceptors to the ventilatory response to CO2 during hyperoxiaRespiration Physiology, 1979
- Stimulus interaction in the responses of carotid body chemoreceptor single afferent fibersRespiration Physiology, 1975