Newborn mammals exhibit biphasic hypoxic ventilatory responses (HVR) characterized by an initial increase in ventilation and a secondary ventilatory depression. The magnitude of the hypoxic ventilatory decline (HVD) in the late phase of the HVR normally decreases with age, but this occurs sooner in rats reared in 60% O. We investigated whether a lower level of hyperoxia (30% O) or a short period of recovery (1 or 3 d in 21% O) would affect the expression of this plasticity. Similar to 60% O, rat pups reared in 30% O until 3-4 days of age exhibited a less biphasic HVR to 12% O. When pups reared in 60% O were returned to normoxia, the magnitude of HVD increased such that pups expressed a biphasic HVR appropriate for their chronological age. Blocking synaptic input from the carotid bodies revealed that CNS hypoxia depressed ventilation less in hyperoxia-reared rats immediately following hyperoxia and after 1 d in normoxia despite recovery of the biphasic HVR. This suggests that recovery of the biphasic HVR occurs in pathways regulating HVD that depend on carotid body activity. The early, carotid body-mediated phase of the HVR was also blunted immediately and 1 d after the hyperoxia exposure, but not after 3 d of recovery. These data confirm that short exposures to mild-to-moderate hyperoxia elicit developmental plasticity in the HVR. However, reemergence of the biphasic HVR after return to normoxia argues against a heterokairic process for the premature transition from biphasic HVR to sustained HVR in hyperoxia-reared rat pups.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.resp.2022.103973 | DOI Listing |
Respir Physiol Neurobiol
November 2024
Department of Biology, Bates College, Lewiston, ME 04240, USA.
Chronic hypoxia (CH) during postnatal development attenuates the hypoxic ventilatory response (HVR) in mammals, but there are conflicting reports on whether this plasticity is permanent or reversible. This study tested the hypothesis that CH-induced respiratory plasticity is reversible in neonatal rats and investigated whether the initial plasticity or recovery differs between sexes. Rat pups were exposed to 3 d of normobaric CH (12 % O) beginning shortly after birth.
View Article and Find Full Text PDFRespir Physiol Neurobiol
January 2023
Department of Biology, Bates College, Lewiston, ME 04240, USA.
Newborn mammals exhibit biphasic hypoxic ventilatory responses (HVR) characterized by an initial increase in ventilation and a secondary ventilatory depression. The magnitude of the hypoxic ventilatory decline (HVD) in the late phase of the HVR normally decreases with age, but this occurs sooner in rats reared in 60% O. We investigated whether a lower level of hyperoxia (30% O) or a short period of recovery (1 or 3 d in 21% O) would affect the expression of this plasticity.
View Article and Find Full Text PDFRespir Physiol Neurobiol
September 2020
Department of Biology, Bates College, Lewiston, ME, 04240, USA. Electronic address:
Newborn mammals exhibit a biphasic hypoxic ventilatory response (HVR) in which an initial increase in ventilation is followed by a decline back toward baseline levels. The magnitude of the secondary decline diminishes with postnatal age, but this transition occurs earlier in rat pups reared in moderate hyperoxia. This pattern is consistent with heterokairy, a form of developmental plasticity in which environmental factors alter the timing of developmental events.
View Article and Find Full Text PDFAm J Physiol Regul Integr Comp Physiol
August 2020
Department of Pediatrics, Division of Neonatology, Rainbow Babies and Children's Hospital, Case Western Reserve University, Cleveland, Ohio.
Continuous infusion of prostaglandin E1 (PGE) is used to maintain ductus arteriosus patency in infants with critical congenital heart disease, but it can also cause central apnea suggesting an effect on respiratory neural control. In this study, we investigated whether ) PGE inhibits the various phases of the acute hypoxic ventilatory response (HVR; an index of respiratory control dysfunction) and increases apnea incidence in neonatal rats; and ) whether these changes would be reversible with caffeine pretreatment. Whole body plethysmography was used to assess the HVR and apnea incidence in neonatal rats 2 h following a single bolus intraperitoneal injection of PGE with and without prior caffeine treatment.
View Article and Find Full Text PDFRespir Physiol Neurobiol
May 2020
Department of Biology, Bates College, Lewiston, ME 04240 USA. Electronic address:
Compared to mammals, little is known about the development of the respiratory control system in birds. In the present study, ventilation and metabolism were measured in Coturnix quail chicks exposed to room air, hypoxia (11 % O), and hypercapnia (4% CO) at 0-1, 3-4, and 6-7 days posthatching (dph). Mass-specific ventilation and metabolic rate tended to increase between 0-1 and 3-4 dph and then decrease again between 3-4 and 6-7 dph.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!