Possible modulation of the mouse respiratory rhythm generator by A1/C1 neurones
Although compelling evidence exist that the respiratory rhythm generator is modulated by endogenous noradrenaline released from pontine A5 and A6 neurones, we examined whether medullary catecholaminergic neurones also participated in respiratory rhythm modulation. Experiments were performed in neona...
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Published in | Respiratory physiology & neurobiology Vol. 153; no. 2; pp. 126 - 138 |
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Language | English |
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Abstract | Although compelling evidence exist that the respiratory rhythm generator is modulated by endogenous noradrenaline released from pontine A5 and A6 neurones, we examined whether medullary catecholaminergic neurones also participated in respiratory rhythm modulation. Experiments were performed in neonatal (postnatal days 0–6, P0-P6) and young mice (P14-P18) using “en bloc” medullary preparations (pons resected) and transverse medullary slices. In “en bloc” preparations, blockade of medullary α2 adrenoceptors with yohimbine and activation of catecholamine biosynthesis with
l-tyrosine significantly depresses and facilitates the respiratory rhythm, respectively. In slices from neonatal and young mice, blockade of medullary α2 adrenoceptors also depressed the respiratory rhythm. Yohimbine local applications and lesion-ablation experiments of the dorsal medulla revealed implication of A1/C1 neurones in the yohimbine depressing effect. Although the mechanisms responsible for the yohimbine-depressing effect remain to be elucidated, our in vitro results in neonatal and young mice suggest that endogenous catecholamines released from A1/C1 neurones participate in respiratory rhythm modulation via medullary α2 adrenoceptors. |
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AbstractList | Although compelling evidence exist that the respiratory rhythm generator is modulated by endogenous noradrenaline released from pontine A5 and A6 neurones, we examined whether medullary catecholaminergic neurones also participated in respiratory rhythm modulation. Experiments were performed in neonatal (postnatal days 0-6, P0-P6) and young mice (P14-P18) using "en bloc" medullary preparations (pons resected) and transverse medullary slices. In "en bloc" preparations, blockade of medullary alpha2 adrenoceptors with yohimbine and activation of catecholamine biosynthesis with L-tyrosine significantly depresses and facilitates the respiratory rhythm, respectively. In slices from neonatal and young mice, blockade of medullary alpha2 adrenoceptors also depressed the respiratory rhythm. Yohimbine local applications and lesion-ablation experiments of the dorsal medulla revealed implication of A1/C1 neurones in the yohimbine depressing effect. Although the mechanisms responsible for the yohimbine-depressing effect remain to be elucidated, our in vitro results in neonatal and young mice suggest that endogenous catecholamines released from A1/C1 neurones participate in respiratory rhythm modulation via medullary alpha2 adrenoceptors. Although compelling evidence exist that the respiratory rhythm generator is modulated by endogenous noradrenaline released from pontine A5 and A6 neurones, we examined whether medullary catecholaminergic neurones also participated in respiratory rhythm modulation. Experiments were performed in neonatal (postnatal days 0–6, P0-P6) and young mice (P14-P18) using “en bloc” medullary preparations (pons resected) and transverse medullary slices. In “en bloc” preparations, blockade of medullary α2 adrenoceptors with yohimbine and activation of catecholamine biosynthesis with l-tyrosine significantly depresses and facilitates the respiratory rhythm, respectively. In slices from neonatal and young mice, blockade of medullary α2 adrenoceptors also depressed the respiratory rhythm. Yohimbine local applications and lesion-ablation experiments of the dorsal medulla revealed implication of A1/C1 neurones in the yohimbine depressing effect. Although the mechanisms responsible for the yohimbine-depressing effect remain to be elucidated, our in vitro results in neonatal and young mice suggest that endogenous catecholamines released from A1/C1 neurones participate in respiratory rhythm modulation via medullary α2 adrenoceptors. |
Author | Roux, J.C. Zanella, Sebastien Hilaire, Gérard Viemari, J.C. |
Author_xml | – sequence: 1 givenname: Sebastien surname: Zanella fullname: Zanella, Sebastien organization: FRE CNRS 2722, Université de la Méditerranée, 280 Boulevard Sainte-Marguerite, 13009 Marseille, France – sequence: 2 givenname: J.C. surname: Roux fullname: Roux, J.C. organization: FRE CNRS 2722, Université de la Méditerranée, 280 Boulevard Sainte-Marguerite, 13009 Marseille, France – sequence: 3 givenname: J.C. surname: Viemari fullname: Viemari, J.C. organization: Department of Organismal Biology and Anatomy, The University of Chicago, 1027 East 57th Street, Chicago, IL 60637, USA – sequence: 4 givenname: Gérard surname: Hilaire fullname: Hilaire, Gérard email: hilaire@marseille.inserm.fr organization: FRE CNRS 2722, Université de la Méditerranée, 280 Boulevard Sainte-Marguerite, 13009 Marseille, France |
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Keywords | Mice α2 Adrenoceptors Respiratory rhythm Catecholaminergic A1/C1 neurones α2-Adrenergic receptor Vertebrata Mammalia Breathing rate Mouse Rodentia Respiratory system |
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Snippet | Although compelling evidence exist that the respiratory rhythm generator is modulated by endogenous noradrenaline released from pontine A5 and A6 neurones, we... |
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SubjectTerms | Adrenergic alpha-2 Receptor Antagonists Adrenergic alpha-Antagonists Adrenergic alpha-Antagonists - pharmacology Age Factors Analysis of Variance Animals Animals, Newborn Biochemistry Biochemistry, Molecular Biology Biological and medical sciences Catecholaminergic A1/C1 neurones Catecholamines Catecholamines - physiology Cervical Vertebrae Fundamental and applied biological sciences. Psychology In Vitro Techniques Life Sciences Medulla Oblongata Medulla Oblongata - cytology Medulla Oblongata - physiology Mice Neural Pathways Neural Pathways - cytology Neural Pathways - physiology Neurons Neurons - cytology Neurons - physiology Periodicity Receptors, Adrenergic, alpha-2 Receptors, Adrenergic, alpha-2 - physiology Respiration Respiratory Center Respiratory Center - cytology Respiratory Center - physiology Respiratory rhythm Spinal Cord Spinal Cord - cytology Spinal Cord - physiology Vertebrates: respiratory system Yohimbine Yohimbine - pharmacology α2 Adrenoceptors |
Title | Possible modulation of the mouse respiratory rhythm generator by A1/C1 neurones |
URI | https://dx.doi.org/10.1016/j.resp.2005.09.009 https://www.ncbi.nlm.nih.gov/pubmed/16309976 https://search.proquest.com/docview/68788137 https://hal.science/hal-00300414 |
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