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Properties of cholinergic receptor-mediated ion channels on type I vestibular hair cells of guinea pigs
Authors:Zhu Yun  Kong Wei-Jia  Xia Jiao  Zhang Yu  Cheng Hua-Mao  Guo Chang-Kai
Affiliation:Department of Otorhinolaryngology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, China. E-mail: wjkong@whuh.com.
Abstract:To confirm the existence of cholinergic receptors on type I vestibular hair cells (VHCs I) of guinea pigs and to study the properties of the cholinergic receptor-mediated ion channels on VHCs I, electrophysiological responses of isolated VHCs I to external ACh were examined by means of whole-cell patch-clamp recordings. The results showed that 7.5% (21/279) VHCs I were found to be sensitive to ACh (10-1000 mumol/L). ACh generated an outward current in a steady, slow, dose-dependent [EC(50) was (63.78+/-2.31) mumol/L] and voltage-independent manner. In standard extracellular solution, ACh at the concentration of 100 mumol/L triggered a calcium-dependent current of (170+/-15) pA at holding potential of -50 mV, and the current amplitude could be depressed by extracellularly added calcium-dependent potassium channel antagonist TEA. The time interval for the next complete activation of ACh-sensitive current was no less than 1 min. The ion channels did not shut off even when they were exposed to ACh for an extended period of time (8 min). The results suggest that dose-dependent, calcium-dependent and voltage-independent cholinergic receptors were located on a few of the VHCs I investibular epithelium of guinea pigs. The cholinergic receptors did not show desensitization to ACh. This work reveals the existence of efferent neurotransmitter receptors on VHCs I and helps in understanding the function of vestibular efferent nervous system, and may provide some useful information on guiding the clinical rehabilitative treatment of vertigo.
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