Literature DB >> 2120613

Depolarization and stimulation of neurons in nucleus tractus solitarii by carbon dioxide does not require chemical synaptic input.

J B Dean1, D A Bayliss, J T Erickson, W L Lawing, D E Millhorn.   

Abstract

The effects of elevated CO2 (i.e. hypercapnia) on neurons in the nucleus tractus solitarii were studied using extracellular (n = 82) and intracellular (n = 33) recording techniques in transverse brain slices prepared from rat. Synaptic connections from putative chemosensitive neurons in the ventrolateral medulla were removed by bisecting each transverse slice and discarding the ventral half. In addition, the response to hypercapnia in 20 neurons was studied during high magnesium-low calcium synaptic blockade. Sixty-five per cent of the neurons (n = 75) tested were either insensitive or inhibited by hypercapnia. However, 35% (n = 40) were depolarized and/or increased their firing rate during hypercapnia. Nine out of 10 CO2-excited neurons retained their chemosensitivity to CO2 in the presence of high magnesium-low calcium synaptic blockade medium. Our findings demonstrate that many neurons in the nucleus tractus solitarii were depolarized and/or increased their firing rate during hypercapnia. These neurons were not driven synaptically by putative chemosensitive neurons of the ventrolateral medulla since this region was removed from the slice. Furthermore, because chemosensitivity persisted in most neurons tested during synaptic blockade, we conclude that some neurons in the nucleus tractus solitarii are inherently CO2-chemosensitive. Although the function of dorsal medullary chemosensitive neurons cannot be determined in vitro, their location and their inherent chemosensitivity suggest a role in cardiorespiratory central chemoreception.

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Year:  1990        PMID: 2120613     DOI: 10.1016/0306-4522(90)90363-9

Source DB:  PubMed          Journal:  Neuroscience        ISSN: 0306-4522            Impact factor:   3.590


  52 in total

1.  Periaqueductal gray matter modulates the hypercapnic ventilatory response.

Authors:  Luana T Lopes; Luis G A Patrone; Kênia C Bícego; Norberto C Coimbra; Luciane H Gargaglioni
Journal:  Pflugers Arch       Date:  2012-06-05       Impact factor: 3.657

2.  Mechanisms of the respiratory activity of leptin at the level of the solitary tract nucleus.

Authors:  E M Inyushkina; N A Merkulova; A N Inyushkin
Journal:  Neurosci Behav Physiol       Date:  2010-07-16

3.  Blockade of Na+/H+ exchanger type 3 causes intracellular acidification and hyperexcitability via inhibition of pH-sensitive K+ channels in chemosensitive respiratory neurons of the dorsal vagal nucleus in rats.

Authors:  Jing Zhang; Hui Peng; Sigrid C Veasey; Jing Ma; Guang-Fa Wang; Ke-Wei Wang
Journal:  Neurosci Bull       Date:  2013-08-29       Impact factor: 5.203

Review 4.  Neonatal maturation of the hypercapnic ventilatory response and central neural CO2 chemosensitivity.

Authors:  Robert W Putnam; Susan C Conrad; M J Gdovin; Joseph S Erlichman; J C Leiter
Journal:  Respir Physiol Neurobiol       Date:  2005-11-15       Impact factor: 1.931

5.  Sympathetic activation by the central chemoreceptor 'reflex': new evidence that RVLM vasomotor neurons are involved...but are they enough?

Authors:  Glenn M Toney
Journal:  J Physiol       Date:  2006-08-31       Impact factor: 5.182

6.  Characterization of the chemosensitive response of individual solitary complex neurons from adult rats.

Authors:  Nicole L Nichols; Daniel K Mulkey; Katherine A Wilkinson; Frank L Powell; Jay B Dean; Robert W Putnam
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2009-01-14       Impact factor: 3.619

7.  Activation of Phox2b-Expressing Neurons in the Nucleus Tractus Solitarii Drives Breathing in Mice.

Authors:  Congrui Fu; Luo Shi; Ziqian Wei; Hongxiao Yu; Yinchao Hao; Yanming Tian; Yixian Liu; Yi Zhang; Xiangjian Zhang; Fang Yuan; Sheng Wang
Journal:  J Neurosci       Date:  2019-01-09       Impact factor: 6.167

8.  CO2 chemoreception in cardiorespiratory control.

Authors:  Robert W Putnam
Journal:  J Appl Physiol (1985)       Date:  2010-01-21

Review 9.  Retrotrapezoid nucleus, respiratory chemosensitivity and breathing automaticity.

Authors:  Patrice G Guyenet; Douglas A Bayliss; Ruth L Stornetta; Michal G Fortuna; Stephen B G Abbott; Seth D DePuy
Journal:  Respir Physiol Neurobiol       Date:  2009-02-13       Impact factor: 1.931

10.  Chemosensitivity of rat medullary raphe neurones in primary tissue culture.

Authors:  W Wang; J H Pizzonia; G B Richerson
Journal:  J Physiol       Date:  1998-09-01       Impact factor: 5.182

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