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光感受器中的超极化激活电流(I(h))。

Hyperpolarization-activated current (I(h)) in ganglion-cell photoreceptors.

机构信息

Department of Neuroscience, Brown University, Providence, Rhode Island, United States of America.

出版信息

PLoS One. 2010 Dec 20;5(12):e15344. doi: 10.1371/journal.pone.0015344.

Abstract

Intrinsically photosensitive retinal ganglion cells (ipRGCs) express the photopigment melanopsin and serve as the primary retinal drivers of non-image-forming visual functions such as circadian photoentrainment, the pupillary light reflex, and suppression of melatonin production in the pineal. Past electrophysiological studies of these cells have focused on their intrinsic photosensitivity and synaptic inputs. Much less is known about their voltage-gated channels and how these might shape their output to non-image-forming visual centers. Here, we show that rat ipRGCs retrolabeled from the suprachiasmatic nucleus (SCN) express a hyperpolarization-activated inwardly-rectifying current (I(h)). This current is blocked by the known I(h) blockers ZD7288 and extracellular cesium. As in other systems, including other retinal ganglion cells, I(h) in ipRGCs is characterized by slow kinetics and a slightly greater permeability for K(+) than for Na(+). Unlike in other systems, however, I(h) in ipRGCs apparently does not actively contribute to resting membrane potential. We also explore non-specific effects of the common I(h) blocker ZD7288 on rebound depolarization and evoked spiking and discuss possible functional roles of I(h) in non-image-forming vision. This study is the first to characterize I(h) in a well-defined population of retinal ganglion cells, namely SCN-projecting ipRGCs.

摘要

内在光敏视网膜神经节细胞(ipRGCs)表达光色素黑视蛋白,作为非成像视觉功能的主要视网膜驱动,如昼夜节律光适应、瞳孔对光反射和松果体褪黑素产生的抑制。过去对这些细胞的电生理学研究主要集中在它们的内在光敏性和突触输入上。关于它们的电压门控通道以及这些通道如何影响它们向非成像视觉中枢的输出,人们知之甚少。在这里,我们表明,从视交叉上核(SCN)逆行标记的大鼠 ipRGCs 表达超极化激活内向整流电流(I(h))。该电流被已知的 I(h)阻断剂 ZD7288 和细胞外铯阻断。与其他系统(包括其他视网膜神经节细胞)一样,ipRGCs 中的 I(h)的特征是动力学缓慢,对 K(+)的通透性略高于对 Na(+)的通透性。然而,与其他系统不同的是,ipRGCs 中的 I(h)显然不会主动影响静息膜电位。我们还探讨了常见的 I(h)阻断剂 ZD7288 对反弹去极化和诱发尖峰的非特异性影响,并讨论了 I(h)在非成像视觉中的可能功能作用。这项研究是首次在一个明确的视网膜神经节细胞群体中,即 SCN 投射的 ipRGCs 中,对 I(h)进行了表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aab/3004865/7bbdf790a9ed/pone.0015344.g001.jpg

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