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Characterization of Rebound Depolarization in Neurons of the Rat Medial Geniculate Body In Vitro 被引量:2

Characterization of Rebound Depolarization in Neurons of the Rat Medial Geniculate Body In Vitro
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摘要 Rebound depolarization (RD) is a response to the offset from hyperpolarization of the neuronal mem- brane potential and is an important mechanism for the synaptic processing of inhibitory signals. In the present study, we characterized RD in neurons of the rat medial geniculate body (MGB), a nucleus of the auditory thala- mus, using whole-cell patch-clamp and brain slices. RD was proportional in strength to the duration and magnitude of the hyperpolarization; was effectively blocked by Ni2+ or Mibefradil; and was depressed when the resting membrane potential was hyperpolarized by blocking hyperpolarization-activated cyclic nucleotide-gated (HCN) channels with ZD7288 or by activating G-protein-gated inwardly-rectifying K+ (GIRK) channels with baclofen. Our results demonstrated that RD in MGB neurons, which is carried by T-type Ca2+ channels, is critically regulated by HCN channels and likely by GIRK channels. Rebound depolarization (RD) is a response to the offset from hyperpolarization of the neuronal mem- brane potential and is an important mechanism for the synaptic processing of inhibitory signals. In the present study, we characterized RD in neurons of the rat medial geniculate body (MGB), a nucleus of the auditory thala- mus, using whole-cell patch-clamp and brain slices. RD was proportional in strength to the duration and magnitude of the hyperpolarization; was effectively blocked by Ni2+ or Mibefradil; and was depressed when the resting membrane potential was hyperpolarized by blocking hyperpolarization-activated cyclic nucleotide-gated (HCN) channels with ZD7288 or by activating G-protein-gated inwardly-rectifying K+ (GIRK) channels with baclofen. Our results demonstrated that RD in MGB neurons, which is carried by T-type Ca2+ channels, is critically regulated by HCN channels and likely by GIRK channels.
出处 《Neuroscience Bulletin》 SCIE CAS CSCD 2016年第1期16-26,共11页 神经科学通报(英文版)
基金 supported by the National Basic Research Development Program of China(2011CB504506 and2012CB932502) the National Natural Science Foundation of China(81570915,81371503 and 31170965) the Open Fund from CAS Key Laboratory of Brain Function and Diseases,China(2012-3)
关键词 Medial geniculate body Brain sliceRebound depolarizationchannel GIRK channel-type calcium channel - HCNResting membrane potential Medial geniculate body Brain sliceRebound depolarizationchannel GIRK channel-type calcium channel - HCNResting membrane potential
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  • 1Lohmann C, Wong RO. Regulation of dendritic growth and plasticity by local and global calcium dynamics. Cell Calcium 2005, 37: 403-409. 被引量:1
  • 2Zheng JQ, Poo MM. Calcium signaling in neuronal motility. Ann Rev Cell Dev Biol 2007, 23: 375-404. 被引量:1
  • 3Bloodgood BL, Sabatini BL. Ca2~ signaling in dendritic spines. Curr Opin Neurobiol 2007, 17: 345-351. 被引量:1
  • 4Higley M J, Sabatini BL. Calcium signaling in dendrites and spines: practical and functional considerations. Neuron 2008,59: 902-913. 被引量:1
  • 5Lohmann C, Myhr KL, Wong RO. Transmitter-evoked local calcium release stabilizes developing dendrites. Nature 2002, 418: 177-181. 被引量:1
  • 6Rajan I, Cline HT. Glutamate receptor activity is required for normal development of tectal cell dendrites in vivo. J Neurosci 1998, 18: 7836-7846. 被引量:1
  • 7Jakowec MW, Fox A J, Martin L J, Kalb RG. Quantitative and qualitative changes in AMPA receptor expression during spinal cord development. Neuroscience 1995, 67: 893-907. 被引量:1
  • 8Redmond L, Kashani AH, Ghosh A. Calcium regulation of dendritic growth via CaM kinase IV and CREB-mediated transcription. Neuron 2002, 34: 999-1010. 被引量:1
  • 9Puram SV, Riccio A, Koirala S, Ikeuchi Y, Kim AH, Corfas G, et al. A TRPC5-regulated calcium signaling pathway controls dendrite patterning in the mammalian brain. Genes Dev 2011, 25: 2659-2673. 被引量:1
  • 10Cosens D J, Manning A. Abnormal electroretinogram from a Drosophila mutant. Nature 1969, 224: 285-287. 被引量:1

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