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首页> 外文期刊>Journal of Neurophysiology >Role of neurotransmitter receptors in mediating light-evoked responses in retinal interplexiform cells.
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Role of neurotransmitter receptors in mediating light-evoked responses in retinal interplexiform cells.

机译:神经递质受体在介导视网膜丛状细胞中的光诱发反应中的作用。

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摘要

Interplexiform (IP) cells are a long-neglected group of retinal neurons the function of which is yet to be determined. Anatomical study indicates that IP cells are located in the inner nuclear layer, juxtaposed with the third-order neurons. However, the synaptic transmission of IP cells in the inner retina is poorly understood. Using whole cell patch-clamp and pharmacological techniques, we extensively studied synaptic receptors in IP cells. The IP cells in amphibian retinal slices were identified by electrical and morphological properties with voltage-clamp recording and Lucifer yellow dialysis. We find that light-evoked excitatory postsynaptic currents (L-EPSCs) are mediated by AMPA and N-methyl-d-aspartate receptors in IP cells. Although both receptors contributed to the amplitude and kinetics of L-EPSCs, AMPA receptor desensitization substantially shaped L-EPSCs in the neurons, similar to those found in the third-order neurons. The light-evoked inhibitory postsynaptic currents (L-IPSCs) in IP cells were primarily mediated by strychnine-sensitive glycine receptors with a small component of GABA(C) receptors. GABA(C) receptor rho2 subunits were detected in IP cells with single-cell RT-PCR assays. Expression of GABA(C) receptors is one of the special features for IP cells, distinct from most of the third-order neurons that depend on GABA(A) and glycine receptors to relay the inhibitory signals. However, GABA(A) receptors in IP cells acted like nonsynaptic receptors that were activated by exogenous GABA application. Furthermore, L-IPSCs in IP cells were inhibited by the serial inhibitions between amacrine cells in the inner retina. In addition, application of neurotransmitters on the axon terminals of IP cells had no significant current generated in the cells, indicating that the synaptic inputs of IP cells are mainly from the inner retina. This study demonstrates the important role that light signals are encoded by both experiment of inhibitory receptors in IP cells.
机译:Interplexiform(IP)细胞是视网膜神经元的一个长期被忽视的群体,其功能尚待确定。解剖学研究表明IP细胞位于核内层,与三阶神经元并列。然而,人们对内视网膜IP细胞的突触传递了解甚少。使用全细胞膜片钳和药理技术,我们广泛研究了IP细胞中的突触受体。通过电压钳记录和路西法黄透析,通过电学和形态学特性鉴定两栖视网膜切片中的IP细胞。我们发现光诱发的兴奋性突触后电流(L-EPSCs)是由AMPA和IP细胞中的N-甲基-d-天冬氨酸受体介导的。尽管两种受体都对L-EPSC的振幅和动力学有贡献,但是AMPA受体脱敏作用在神经元中基本形成了L-EPSC,这与在三阶神经元中发现的相似。 IP细胞中的光诱发抑制性突触后电流(L-IPSCs)主要由对苯丙氨酸敏感的甘氨酸受体和少量的GABA(C)受体介导。使用单细胞RT-PCR分析在IP细胞中检测到GABA(C)受体rho2亚基。 GABA(C)受体的表达是IP细胞的特殊特征之一,与大多数依赖GABA(A)和甘氨酸受体传递抑制信号的三阶神经元不同。但是,IP细胞中的GABA(A)受体的作用类似于通过外源GABA应用激活的非突触受体。此外,IP细胞中的L-IPSCs被内视网膜无长突细胞之间的系列抑制所抑制。另外,在IP细胞的轴突末端上施加神经递质没有在细胞中产生明显的电流,这表明IP细胞的突触输入主要来自内部视网膜。这项研究证明了光信号由IP细胞中的两种抑制受体实验编码的重要作用。

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