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从荧光黄注射实验推断,虎螈视网膜中L-谷氨酸脱羧酶和γ-氨基丁酸免疫反应性双极细胞分别属于ON型和OFF型反应类型。

L-glutamic acid decarboxylase- and gamma-aminobutyric acid-immunoreactive bipolar cells in tiger salamander retina are of ON- and OFF-response types as inferred from Lucifer Yellow injection.

作者信息

Yang C Y

机构信息

Department of Neurobiology and Behavior, State University of New York at Stony Brook 11794, USA.

出版信息

J Comp Neurol. 1997 Sep 8;385(4):651-60.

PMID:9302111
Abstract

The bipolar cells in vertebrate retinas are considered to be excitatory in nature and use L-glutamate as their neurotransmitter. Our earlier studies have provided evidence demonstrating that a small but significant population of orthotopic bipolar cells in salamander retina may be gamma-aminobutyric acid (GABA)ergic. In this work, the stratification levels of axon terminals in the inner plexiform layer (IPL) of single L-glutamic acid decarboxylase-immunoreactive (GAD-IR) and GABA-immunoreactive (GABA-IR) bipolar cells in the salamander retinal slices were studied. GAD-IR and GABA-IR bipolar cells marked by a fluorescent probe, Texas Red, were injected with Lucifer Yellow (LY) through a patch pipette under visual control. A total number of 42 GAD-IR bipolar cells in 24 slices and 84 GABA-IR bipolar cells in 56 slices were injected. Among these, terminals of nine GAD-IR bipolar cells and 22 GABA-IR bipolar cells were sufficiently filled with LY for determination of the stratification levels in the IPL. The stratification patterns and levels of GAD-IR and GABA-IR bipolar cells were very similar. GAD-IR and GABA-IR orthotopic type I and type II bipolar cells (soma located in the most distal or middle of the inner nuclear layer [INL], respectively), had their axon terminals stratified in sublamina a and sublamina b of the IPL with comparable frequency. Axonal processes were restricted largely to either the distal or the proximal region within sublaminae a and b. In addition, three of the bipolar cells had their terminals located in the middle region of the IPL. The similarities of stratification patterns and levels between GAD-IR and GABA-IR type I and type II bipolar cells indicate that they represent the same population of presumed GABAergic bipolar cells. Based on comparative stratifications of GABA bipolar cells reported here and those derived from electrophysiological studies (Hensley et al. [1993] J. Neurophysiol. 69:2086-2098), it is suggested that putative GABAergic bipolar cells represent cone-dominated and rod-dominated ON- and OFF-bipolar cells and that they subserve a broad role in the ON- and OFF-visual pathways in the retina.

摘要

脊椎动物视网膜中的双极细胞在本质上被认为是兴奋性的,并使用L-谷氨酸作为其神经递质。我们早期的研究提供了证据,证明蝾螈视网膜中一小部分但数量可观的原位双极细胞可能是γ-氨基丁酸(GABA)能的。在这项工作中,研究了蝾螈视网膜切片中单个L-谷氨酸脱羧酶免疫反应性(GAD-IR)和GABA免疫反应性(GABA-IR)双极细胞在内网状层(IPL)中轴突终末的分层水平。在视觉控制下,通过膜片吸管向用荧光探针德克萨斯红标记的GAD-IR和GABA-IR双极细胞中注入荧光黄(LY)。在24个切片中总共注入了42个GAD-IR双极细胞,在56个切片中注入了84个GABA-IR双极细胞。其中,9个GAD-IR双极细胞和22个GABA-IR双极细胞的终末被LY充分填充,以便确定IPL中的分层水平。GAD-IR和GABA-IR双极细胞的分层模式和水平非常相似。GAD-IR和GABA-IR原位I型和II型双极细胞(其胞体分别位于内核层[INL]的最远端或中间),其轴突终末以相当的频率分层在IPL的a亚层和b亚层中。轴突主要局限于a亚层和b亚层内的远端或近端区域。此外,有三个双极细胞的终末位于IPL的中间区域。GAD-IR和GABA-IR I型和II型双极细胞在分层模式和水平上的相似性表明,它们代表了假定的GABA能双极细胞的同一群体。基于此处报道的GABA双极细胞与电生理研究(Hensley等人,[1993]《神经生理学杂志》69:2086 - 2098)得出的比较分层结果,提示假定的GABA能双极细胞代表以视锥细胞为主和以视杆细胞为主的ON和OFF双极细胞,并且它们在视网膜的ON和OFF视觉通路中发挥广泛作用。

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