Activation of the retrotrapezoid nucleus by posterior hypothalamic stimulation
- 30 October 2009
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 587 (21) , 5121-5138
- https://doi.org/10.1113/jphysiol.2009.176875
Abstract
The retrotrapezoid nucleus (RTN) contains chemically defined neurons (ccRTN neurons) that provide a pH-regulated excitatory drive to the central respiratory pattern generator. Here we test whether ccRTN neurons respond to stimulation of the perifornical hypothalamus (PeF), a region that regulates breathing during sleep, stress and exercise. PeF stimulation with gabazine increased blood pressure, phrenic nerve discharge (PND) and the firing rate of ccRTN neurons in isoflurane-anaesthetized rats. Gabazine produced an approximately parallel upward shift of the steady-state relationship between ccRTN neuron firing rate and end-tidal CO(2), and a similar shift of the relationship between PND and end-tidal CO(2). The central respiratory modulation of ccRTN neurons persisted after gabazine without a change in pattern. Morphine administration typically abolished PND and reduced the discharge rate of most ccRTN neurons (by 25% on average). After morphine administration, PeF stimulation activated the ccRTN neurons normally but PND activation and the central respiratory modulation of the ccRTN neurons were severely attenuated. In the same rat preparation, most (58%) ccRTN neurons expressed c-Fos after exposure to hypercapnic hyperoxia (6-7% end-tidal CO(2); 3.5 h; no hypothalamic stimulation) and 62% expressed c-Fos under hypocapnia (approximately 3% end-tidal CO(2)) after PeF stimulation. Under baseline conditions (approximately 3% end-tidal CO(2), hyperoxia, no PeF stimulation) few (11%) ccRTN neurons expressed c-Fos. In summary, most ccRTN neurons are excited by posterior hypothalamic stimulation while retaining their normal response to CNS acidification. ccRTN neurons probably contribute both to the chemical drive of breathing and to the feed-forward control of breathing associated with emotions and or locomotion.Keywords
This publication has 85 references indexed in Scilit:
- Abdominal expiratory activity in the rat brainstem–spinal cord in situ: patterns, origins and implications for respiratory rhythm generationThe Journal of Physiology, 2009
- Acid sensitivity and ultrastructure of the retrotrapezoid nucleus in Phox2b‐EGFP transgenic miceJournal of Comparative Neurology, 2009
- Antagonism of orexin receptor‐1 in the retrotrapezoid nucleus inhibits the ventilatory response to hypercapnia predominantly in wakefulnessThe Journal of Physiology, 2009
- Reporting ethical matters in The Journal of Physiology: standards and adviceThe Journal of Physiology, 2009
- Amplified respiratory–sympathetic coupling in the spontaneously hypertensive rat: does it contribute to hypertension?The Journal of Physiology, 2009
- Selective lesion of retrotrapezoid Phox2b‐expressing neurons raises the apnoeic threshold in ratsThe Journal of Physiology, 2008
- A human mutation in Phox2b causes lack of CO 2 chemosensitivity, fatal central apnea, and specific loss of parafacial neuronsProceedings of the National Academy of Sciences, 2008
- Induction of Fos-immunoreactivity in the rat brain following disinhibition of the dorsomedial hypothalamusBrain Research, 2008
- Anoxic persistence of lumbar respiratory bursts and block of lumbar locomotion in newborn rat brainstem–spinal cordsThe Journal of Physiology, 2007
- Inhibitory input from slowly adapting lung stretch receptors to retrotrapezoid nucleus chemoreceptorsThe Journal of Physiology, 2007