Orexin stimulates breathing via medullary and spinal pathways.
نویسندگان
چکیده
A central neuronal network that regulates respiration may include hypothalamic neurons that produce orexin, a peptide that influences sleep and arousal. In these experiments, we investigated 1) projections of orexin-containing neurons to the pre-Botzinger region of the rostral ventrolateral medulla that regulates rhythmic breathing and to phrenic motoneurons that innervate the diaphragm; 2) the presence of orexin A receptors in the pre-Botzinger region and in phrenic motoneurons; and 3) physiological effects of orexin administered into the pre-Botzinger region and phrenic nuclei at the C3-C4 levels. We found orexin-containing fibers within the pre-Botzinger complex. However, only 0.5% of orexin-containing neurons projected to the pre-Botzinger region, whereas 2.9% of orexin-containing neurons innervated the phrenic nucleus. Neurons of the pre-Botzinger region and phrenic nucleus stained for orexin receptors, and activation of orexin receptors by microperfusion of orexin in either site produced a dose-dependent, significant (P <0.05) increase in diaphragm electromyographic activity. These data indicate that orexin regulates respiratory activity and may have a role in the pathophysiology of sleep-related respiratory disorders.
منابع مشابه
Commentaries on Viewpoint: Initiating inspiration outside the medulla does produce eupneic breathing
TO THE EDITOR: As the title of this Viewpoint (3) states, “Initiating inspiration outside the medulla does produce eupneic breathing.” My view is why should it not? Although many experiments have explored the cortical-spinal pathway to phrenic motoneurons, producing the idea that behavioral and metabolic respiratory demands compete at the spinal respiratory motor neurons (5), there is also evid...
متن کاملCommentaries on Viewpoint: Initiating inspiration outside the medulla does produce eupneic breathing. Integration of volitional and spontaneous breathing control within the brain stem.
TO THE EDITOR: As the title of this Viewpoint (3) states, “Initiating inspiration outside the medulla does produce eupneic breathing.” My view is why should it not? Although many experiments have explored the cortical-spinal pathway to phrenic motoneurons, producing the idea that behavioral and metabolic respiratory demands compete at the spinal respiratory motor neurons (5), there is also evid...
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ورودعنوان ژورنال:
- Journal of applied physiology
دوره 98 4 شماره
صفحات -
تاریخ انتشار 2005