Literature DB >> 23699521

Neuronal mechanisms of respiratory pattern generation are evolutionary conserved.

Elenia Cinelli1, Brita Robertson, Donatella Mutolo, Sten Grillner, Tito Pantaleo, Fulvia Bongianni.   

Abstract

A brainstem region, the paratrigeminal respiratory group (pTRG), has been suggested to play a crucial role in the respiratory rhythm generation in lampreys. However, a detailed characterization of the pTRG region is lacking. The present study performed on isolated brainstem preparations of adult lampreys provides a more precise localization of the pTRG region with regard to both connectivity and neurochemical markers. pTRG neurons projecting to the vagal motoneuronal pool were identified in a restricted area of the rostral rhombencephalon at the level of the isthmic Müller cell I1 close to sulcus limitans of His. Unilateral microinjections of lidocaine, muscimol, or glutamate antagonists into the pTRG inhibited completely the bilateral respiratory activity. In contrast, microinjections of glutamate agonists enhanced the respiratory activity, suggesting that this region is critical for the respiratory pattern generation. The retrogradely labeled pTRG neurons are glutamatergic and surrounded by terminals with intense substance P immunoreactivity. Cholinergic neurons were seen close to, and intermingled with, pTRG neurons. In addition, α-bungarotoxin binding sites (indicating nicotinic receptors) were found throughout the pTRG area and particularly on the soma of these neurons. During apnea, induced by blockade of ionotropic glutamate receptors within the same region, microinjections of 1 μm substance P or 1 mm nicotine into the pTRG restored rhythmic respiratory activity. The results emphasize the close similarities between the pTRG and the mammalian pre-Bötzinger complex as a crucial site for respiratory rhythmogenesis. We conclude that some basic features of the excitatory neurons proposed to generate respiratory rhythms are conserved throughout evolution.

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Year:  2013        PMID: 23699521      PMCID: PMC6705030          DOI: 10.1523/JNEUROSCI.0299-13.2013

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  13 in total

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3.  ATP and astrocytes play a prominent role in the control of the respiratory pattern generator in the lamprey.

Authors:  Elenia Cinelli; Ludovica Iovino; Donatella Mutolo
Journal:  J Physiol       Date:  2017-08-08       Impact factor: 5.182

4.  Evolution of lung breathing from a lungless primitive vertebrate.

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5.  GABAergic and glycinergic inputs modulate rhythmogenic mechanisms in the lamprey respiratory network.

Authors:  Elenia Cinelli; Donatella Mutolo; Brita Robertson; Sten Grillner; Massimo Contini; Tito Pantaleo; Fulvia Bongianni
Journal:  J Physiol       Date:  2014-02-03       Impact factor: 5.182

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Review 7.  Generation, Coordination, and Evolution of Neural Circuits for Vocal Communication.

Authors:  Darcy B Kelley; Irene H Ballagh; Charlotte L Barkan; Andres Bendesky; Taffeta M Elliott; Ben J Evans; Ian C Hall; Young Mi Kwon; Ursula Kwong-Brown; Elizabeth C Leininger; Emilie C Perez; Heather J Rhodes; Avelyne Villain; Ayako Yamaguchi; Erik Zornik
Journal:  J Neurosci       Date:  2020-01-02       Impact factor: 6.167

8.  Molecular characterization of frog vocal neurons using constellation pharmacology.

Authors:  Ryota T Inagaki; Shrinivasan Raghuraman; Kevin Chase; Theresa Steele; Erik Zornik; Baldomero Olivera; Ayako Yamaguchi
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Review 9.  Vertebrate Evolution Conserves Hindbrain Circuits despite Diverse Feeding and Breathing Modes.

Authors:  Shun Li; Fan Wang
Journal:  eNeuro       Date:  2021-04-28

10.  Neurotoxicity of prenatal alcohol exposure on medullary pre-Bötzinger complex neurons in neonatal rats.

Authors:  Ming-Li Ji; Yun-Hong Wu; Zhi-Bin Qian
Journal:  Neural Regen Res       Date:  2015-07       Impact factor: 5.135

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