Literature DB >> 29070631

The Kölliker-Fuse nucleus orchestrates the timing of expiratory abdominal nerve bursting.

William H Barnett1, Sarah E M Jenkin2, William K Milsom2, Julian F R Paton3,4, Ana P Abdala3, Yaroslav I Molkov1,5, Daniel B Zoccal6.   

Abstract

Coordination of respiratory pump and valve muscle activity is essential for normal breathing. A hallmark respiratory response to hypercapnia and hypoxia is the emergence of active exhalation, characterized by abdominal muscle pumping during the late one-third of expiration (late-E phase). Late-E abdominal activity during hypercapnia has been attributed to the activation of expiratory neurons located within the parafacial respiratory group (pFRG). However, the mechanisms that control emergence of active exhalation, and its silencing in restful breathing, are not completely understood. We hypothesized that inputs from the Kölliker-Fuse nucleus (KF) control the emergence of late-E activity during hypercapnia. Previously, we reported that reversible inhibition of the KF reduced postinspiratory (post-I) motor output to laryngeal adductor muscles and brought forward the onset of hypercapnia-induced late-E abdominal activity. Here we explored the contribution of the KF for late-E abdominal recruitment during hypercapnia by pharmacologically disinhibiting the KF in in situ decerebrate arterially perfused rat preparations. These data were combined with previous results and incorporated into a computational model of the respiratory central pattern generator. Disinhibition of the KF through local parenchymal microinjections of gabazine (GABAA receptor antagonist) prolonged vagal post-I activity and inhibited late-E abdominal output during hypercapnia. In silico, we reproduced this behavior and predicted a mechanism in which the KF provides excitatory drive to post-I inhibitory neurons, which in turn inhibit late-E neurons of the pFRG. Although the exact mechanism proposed by the model requires testing, our data confirm that the KF modulates the formation of late-E abdominal activity during hypercapnia. NEW & NOTEWORTHY The pons is essential for the formation of the three-phase respiratory pattern, controlling the inspiratory-expiratory phase transition. We provide functional evidence of a novel role for the Kölliker-Fuse nucleus (KF) controlling the emergence of abdominal expiratory bursts during active expiration. A computational model of the respiratory central pattern generator predicts a possible mechanism by which the KF interacts indirectly with the parafacial respiratory group and exerts an inhibitory effect on the expiratory conditional oscillator.

Entities:  

Keywords:  abdominal expiratory activity; active expiration; pons; respiratory pattern; ventral respiratory column

Mesh:

Year:  2017        PMID: 29070631      PMCID: PMC5867379          DOI: 10.1152/jn.00499.2017

Source DB:  PubMed          Journal:  J Neurophysiol        ISSN: 0022-3077            Impact factor:   2.714


  60 in total

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Authors:  Davi J A Moraes; Mirela B Dias; Roberta Cavalcanti-Kwiatkoski; Benedito H Machado; Daniel B Zoccal
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2.  Neuroanatomical and physiological evidence that the retrotrapezoid nucleus/parafacial region regulates expiration in adult rats.

Authors:  Josiane N Silva; Fabiola M Tanabe; Thiago S Moreira; Ana C Takakura
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5.  Abdominal expiratory activity in the rat brainstem-spinal cord in situ: patterns, origins and implications for respiratory rhythm generation.

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7.  Intermittent hypoxia-induced sensitization of central chemoreceptors contributes to sympathetic nerve activity during late expiration in rats.

Authors:  Yaroslav I Molkov; Daniel B Zoccal; Davi J A Moraes; Julian F R Paton; Benedito H Machado; Ilya A Rybak
Journal:  J Neurophysiol       Date:  2011-04-06       Impact factor: 2.714

8.  Distinct rhythm generators for inspiration and expiration in the juvenile rat.

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10.  A closed-loop model of the respiratory system: focus on hypercapnia and active expiration.

Authors:  Yaroslav I Molkov; Natalia A Shevtsova; Choongseok Park; Alona Ben-Tal; Jeffrey C Smith; Jonathan E Rubin; Ilya A Rybak
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  18 in total

1.  Pre- and post-inspiratory neurons change their firing properties in female rats exposed to chronic intermittent hypoxia.

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Journal:  Neuroscience       Date:  2019-03-28       Impact factor: 3.590

2.  Multi-Level Regulation of Opioid-Induced Respiratory Depression.

Authors:  Barbara Palkovic; Vitaliy Marchenko; Edward J Zuperku; Eckehard A E Stuth; Astrid G Stucke
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3.  Endogenous glutamatergic inputs to the Parabrachial Nucleus/Kölliker-Fuse Complex determine respiratory rate.

Authors:  Angela A Navarrete-Opazo; Denise R Cook-Snyder; Justin R Miller; Jennifer J Callison; Nicole McCarthy; Barbara Palkovic; Eckehard A E Stuth; Edward J Zuperku; Astrid G Stucke
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4.  Inhibitory control of active expiration by the Bötzinger complex in rats.

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Review 5.  Gastrointestinal dysfunction in movement disorders.

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Authors:  Samuel Wittman; Ana Paula Abdala; Jonathan E Rubin
Journal:  J Physiol       Date:  2019-04-16       Impact factor: 5.182

7.  Differential Contribution of the Retrotrapezoid Nucleus and C1 Neurons to Active Expiration and Arousal in Rats.

Authors:  George M P R Souza; Ruth L Stornetta; Daniel S Stornetta; Stephen B G Abbott; Patrice G Guyenet
Journal:  J Neurosci       Date:  2020-09-24       Impact factor: 6.167

8.  Modulation of hypercapnic respiratory response by cholinergic transmission in the commissural nucleus of the solitary tract.

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9.  The postnatal development of ultrasonic vocalization-associated breathing is altered in glycine transporter 2-deficient mice.

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10.  Kölliker-Fuse/Parabrachial complex mu opioid receptors contribute to fentanyl-induced apnea and respiratory rate depression.

Authors:  Sandy E Saunders; Erica S Levitt
Journal:  Respir Physiol Neurobiol       Date:  2020-01-15       Impact factor: 1.931

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