Catecholaminergic depressant effects on bulbar respiratory mechanisms

Author(s): Champagnat J, Denavit-Saubié M, Henry JL, Leviel V

Abstract

On the basis of histochemical and pharmacological studies, catecholamines have been implicated in central mechanisms controlling respiration. This hypothesis was tested in iontophoretic studies on neurones located in bulbar respiratory centres. Adrenaline and noradrenaline had a predominantly depressant effect on respiratory as well as on closely situated non-respiratory units. These depressions were mimicked by the application of isoproterenol and clonidine; acetylcholine and serotonin had inconsistent effects on these neurones. In control experiments, microinjections, using a Hamilton syringe, were made in the area of bulbar respiratory centres: noradrenaline, but not serotonin, depressed the central respiratory activity reflected in the phrenic nerve discharge. These results suggest that specific adrenergic and noradrenergic depressant mechanisms could affect both respiratory and other physiological centres at the bulbar level.

Similar Articles

Regional concentrations of noradrenaline and dopamine in rat brain

Author(s): Versteeg DH, Van Der Gugten J, De Jong W, Palkovits M

Distribution of PNMT-immunoreactive neurons in the cat medulla oblongata

Author(s): Kitahama K, Denoroy L, Bérod A, Jouvet M

(1990b) Aromatic L-amino acid decarboxylase immunohistochemistry in the cat lower brainstem and midbrain

Author(s): Kitahama K, Denoyer M, Raynaud B, Borri-Voltattorni C, Weber M, et al

Catecholaminergic neurons in the ventrolateral medulla and nucleus of the solitary tract in the human

Author(s): Arango V, Ruggiero DA, Callaway JL, Anwar M, Mann JJ, et al.

Catecholamine cell groups of the cat medulla oblongata

Author(s): Blessing WW, Frost P, Furness JB

Monoamine cell distribution in the cat brain stem

Author(s): Wiklund L, Leger L, Persson M

Antisera against small neurotransmitter-like molecules

Author(s): Geffard M, Henrich-Rock AM, Dulluc J, Seguela P

Specific detection of noradrenaline in the rat brain by using antibodies

Author(s): Geffard M, Patel S, Dulluc J, Rock AM

Organelles in fast axonal transport

Author(s): Dahlström AB, Czernik AJ, Li JY

The relationship of the medullary catecholamine containing neurones to the vagal motor nuclei

Author(s): Ritchie TC, Westlund KN, Bowker RM, Coulter JD, Leonard RB

The central adrenergic system

Author(s): Swanson LW, Hartman BK

Distribution of dopamine-immunoreactive fibers in the rat brainstem

Author(s): Kitahama K, Nagatsu I, Geffard M, Maeda T

Distinct monoamine oxidase A and B populations in primate brain

Author(s): Westlund KN, Denney RM, Kochersperger LM, Rose RM, Abell CW

Serotonin and the control of ventilation in awake rats

Author(s): Olson EB, Dempsey JA, McCrimmon DR

Ascending projections from the solitary tract nucleus to the hypothalamus

Author(s): Ter Horst GJ, de Boer P, Luiten PG, van Willigen JD

GTP-cyclohydrolase-I like immunoreactivity in rat brain

Author(s): Dassesse D, Hemmens B, Cuvelier L, Résibois A

Brainstem projections to the phrenic nucleus: an anterograde and retrograde HRP study in the rabbit

Author(s): Ellenberger HH, Vera PL, Haselton JR, Haselton CL, Schneiderman N

Differential effects of long-term hypoxia on norepinephrine turnover in brain stem cell groups

Author(s): Soulier V, Cottet-Emard JM, Pequignot J, Hanchin F, Peyrin L, et al.

Delayed increase of tyrosine hydroxylation in the rat A2 medullary neurons upon long-term hypoxia

Author(s): Soulier V, Cottet-Emard JM, Dalmaz Y, Kitahama K, Pequignot JM

CO2-induced c-fos expression in the CNS catecholaminergic neurons

Author(s): Haxhiu MA, Yung K, Erokwu B, Cherniack NS