Literature DB >> 2262474

Biophysical properties of hypoglossal neurons in vitro: intracellular studies in adult and neonatal rats.

G G Haddad1, D F Donnelly, P A Getting.   

Abstract

A brain stem slice preparation from adult and neonatal (less than or equal to 12 days old) rats and intracellular recordings were used to examine the cellular properties of neurons within the hypoglossal (HYP) nucleus. Resting membrane potential (Vm) for adult hypoglossal neurons was -80 +/- 2 (SE) mV. Rheobase was 2.1 +/- 0.4 nA, and input resistance (RN) was 20.8 +/- 1.5 M omega and decreased during the hyperpolarizing period ("sag"). Compared with adult HYP cells, newborn HYP neurons had significantly lower resting potentials (Vm = -73 +/- 2 mV), lower rheobase (0.7 +/- 0.2 nA), and higher RN (27.6 +/- 3.9 M omega). Single action potentials, elicited by short depolarizing-current pulses, were followed by a slow afterhyperpolarization in adult [6.4 +/- 0.3 mV, time constant (tc) 31.0 +/- 1.2 ms] and newborn cells (7.4 +/- 0.2 mV, tc 37.2 +/- 8.2 ms). Prolonged outward current (2 s) produced little spike frequency adaptation in either adult or newborn neurons. Onset of spike activity was not delayed by hyperpolarizing pulses preceding depolarizations. In addition, pharmacological experiments showed that HYP neurons have a tetrodotoxin-sensitive Na+ current and a delayed and an inward rectifier current but no major Ca2+ current. We conclude the following. 1) Electrophysiological membrane properties mature postnatally in HYP neurons; some of these developmental changes can be ascribed to an increase in soma size and dendritic outgrowth but others cannot. 2) Adult HYP neurons, compared with other brain stem neurons (i.e., vagal cells or cells in the nucleus tractus solitarius), are not endowed with major Ca2+ currents or K+ currents such as the A current and the Ca2(+)-activated K+ current.

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Year:  1990        PMID: 2262474     DOI: 10.1152/jappl.1990.69.4.1509

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  15 in total

1.  Current injection and receptor-mediated excitation produce similar maximal firing rates in hypoglossal motoneurons.

Authors:  Hilary E Wakefield; Ralph F Fregosi; Andrew J Fuglevand
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2.  Cl- and Na+ homeostasis during anoxia in rat hypoglossal neurons: intracellular and extracellular in vitro studies.

Authors:  C Jiang; S Agulian; G G Haddad
Journal:  J Physiol       Date:  1992-03       Impact factor: 5.182

3.  Role of ATP-sensitive K+ channels during anoxia: major differences between rat (newborn and adult) and turtle neurons.

Authors:  C Jiang; Y Xia; G G Haddad
Journal:  J Physiol       Date:  1992-03       Impact factor: 5.182

4.  The beginning of intracellular recording in spinal neurons: facts, reflections, and speculations.

Authors:  Douglas G Stuart; Robert M Brownstone
Journal:  Brain Res       Date:  2011-06-12       Impact factor: 3.252

5.  Influence of developmental nicotine exposure on spike-timing precision and reliability in hypoglossal motoneurons.

Authors:  Gregory L Powell; Richard B Levine; Amanda M Frazier; Ralph F Fregosi
Journal:  J Neurophysiol       Date:  2014-12-30       Impact factor: 2.714

6.  Membrane ionic currents and properties of freshly dissociated rat brainstem neurons.

Authors:  C Jiang; T R Cummins; G G Haddad
Journal:  Exp Brain Res       Date:  1994       Impact factor: 1.972

7.  Repetitive firing properties of developing rat brainstem motoneurones.

Authors:  F Viana; D A Bayliss; A J Berger
Journal:  J Physiol       Date:  1995-08-01       Impact factor: 5.182

8.  The electrical geometry, electrical properties and synaptic connections onto rat V motoneurones in vitro.

Authors:  J C Curtis; K Appenteng
Journal:  J Physiol       Date:  1993-06       Impact factor: 5.182

9.  Functional identification of the input-output transforms of motoneurones in the rat and cat.

Authors:  A V Poliakov; R K Powers; M D Binder
Journal:  J Physiol       Date:  1997-10-15       Impact factor: 5.182

10.  Compared effects of serotonin on cervical and hypoglossal inspiratory activities: an in vitro study in the newborn rat.

Authors:  D Morin; R Monteau; G Hilaire
Journal:  J Physiol       Date:  1992       Impact factor: 5.182

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