Literature DB >> 15139030

Hyperpolarization-activated, cyclic nucleotide-gated cation channels: roles in the differential electrophysiological properties of rat primary afferent neurons.

Huiyin Tu1, Lunbin Deng, Qian Sun, Lei Yao, Ji-Sheng Han, You Wan.   

Abstract

The large, medium-sized, and small neurons of the dorsal root ganglion (DRG) have different functions in the processing of various senses. Hyperpolarization-activated, cyclic nucleotide-gated channels (HCN) contribute greatly to neuronal excitability. In the present study, which used whole-cell patch clamp techniques and immunohistochemical staining methods, the electrophysiological properties of DRG neurons were systematically compared, and the roles of HCN-1, -2, and -4 were examined. The main results were as follows. 1) The large neurons had significantly higher V0.5 values (membrane potential at which the HCN channels were half-activated) and shorter time constants (tau) than small or medium-sized DRG neurons. However, large DRG neurons had higher Ih density (HCN neuron current). 2) HCN-1 was found predominantly, but not exclusively, in large and medium-sized DRG neurons; HCN-2 was found in all DRG neurons; and HCN-4 was poorly visualized in all DRG neurons. HCN-1 and HCN-2 were colocalized in large and medium-sized neurons with immunostaining of adjacent sections. In the dorsal horn of the spinal cord, HCN-1, HCN-2, and HCN-4 were all expressed in laminae I-IV, although HCN-1 was not detectable in lamina II. 3) Blockade of Ih current in DRG neurons caused a significant decrease in V0.5, resting membrane potential, and repetitive firing number of action potential and a significant increase in time of rising phase of action potential. These results suggest that the different HCN channels in the three types of DRG neurons might contribute to their differential electrophysiological properties. Copyright 2004 Wiley-Liss, Inc.

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Year:  2004        PMID: 15139030     DOI: 10.1002/jnr.20109

Source DB:  PubMed          Journal:  J Neurosci Res        ISSN: 0360-4012            Impact factor:   4.164


  33 in total

1.  Functional impact of the hyperpolarization-activated current on the excitability of myelinated A-type vagal afferent neurons in the rat.

Authors:  Yu-Hong Zhou; Li-Hua Sun; Zhen-Hong Liu; Guixue Bu; Xiao-Ping Pang; Shi-Chao Sun; Guo-Fen Qiao; Bai-Yan Li; John H Schild
Journal:  Clin Exp Pharmacol Physiol       Date:  2010-04-26       Impact factor: 2.557

2.  Thermodynamic properties of hyperpolarization-activated current (Ih) in a subgroup of primary sensory neurons.

Authors:  Florentina Pena; Bogdan Amuzescu; Emil Neaga; Maria-Luiza Flonta
Journal:  Exp Brain Res       Date:  2006-05-05       Impact factor: 1.972

3.  Hyperpolarization-activated current (I(h)) contributes to excitability of primary sensory neurons in rats.

Authors:  Quinn H Hogan; Mark Poroli
Journal:  Brain Res       Date:  2008-03-05       Impact factor: 3.252

4.  Hyperpolarization-activated cyclic nucleotide-gated cation channel subtypes differentially modulate the excitability of murine small intestinal afferents.

Authors:  Ying-Ping Wang; Bi-Ying Sun; Qian Li; Li Dong; Guo-Hua Zhang; David Grundy; Wei-Fang Rong
Journal:  World J Gastroenterol       Date:  2012-02-14       Impact factor: 5.742

5.  HCN channels segregate stimulation-evoked movement responses in neocortex and allow for coordinated forelimb movements in rodents.

Authors:  Jeffery A Boychuk; Jordan S Farrell; Laura A Palmer; Anna C Singleton; Quentin J Pittman; G Campbell Teskey
Journal:  J Physiol       Date:  2016-09-27       Impact factor: 5.182

6.  Dual stretch responses of mHCN2 pacemaker channels: accelerated activation, accelerated deactivation.

Authors:  Wei Lin; Ulrike Laitko; Peter F Juranka; Catherine E Morris
Journal:  Biophys J       Date:  2006-12-01       Impact factor: 4.033

7.  HCN1 channels as targets for anesthetic and nonanesthetic propofol analogs in the amelioration of mechanical and thermal hyperalgesia in a mouse model of neuropathic pain.

Authors:  Gareth R Tibbs; Thomas J Rowley; R Lea Sanford; Karl F Herold; Alex Proekt; Hugh C Hemmings; Olaf S Andersen; Peter A Goldstein; Pamela D Flood
Journal:  J Pharmacol Exp Ther       Date:  2013-04-02       Impact factor: 4.030

8.  Tumor tissue-derived formaldehyde and acidic microenvironment synergistically induce bone cancer pain.

Authors:  Zhiqian Tong; Wenhong Luo; Yanqing Wang; Fei Yang; Ying Han; Hui Li; Hongjun Luo; Bo Duan; Tianle Xu; Qiliang Maoying; Huangying Tan; Jun Wang; Hongmei Zhao; Fengyu Liu; You Wan
Journal:  PLoS One       Date:  2010-04-21       Impact factor: 3.240

Review 9.  Regulation of firing frequency in nociceptive neurons by pro-inflammatory mediators.

Authors:  Aliakmal Momin; Peter A McNaughton
Journal:  Exp Brain Res       Date:  2009-04-07       Impact factor: 1.972

Review 10.  Characteristics of HCN channels and their participation in neuropathic pain.

Authors:  Yu-Qiu Jiang; Qian Sun; Hui-Yin Tu; You Wan
Journal:  Neurochem Res       Date:  2008-05-07       Impact factor: 3.996

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