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视网膜双极细胞接收来自γ-氨基丁酸能无长突细胞的负反馈输入。

Retinal bipolar cells receive negative feedback input from GABAergic amacrine cells.

作者信息

Tachibana M, Kaneko A

机构信息

Department of Information Physiology, National Institute for Physiological Sciences, Okazaki, Japan.

出版信息

Vis Neurosci. 1988;1(3):297-305. doi: 10.1017/s0952523800001954.

Abstract

Bipolar cells make reciprocal synapses with amacrine cells in the inner plexiform layer; both feedforward connections and feedback connections are present. The physiological properties of the feedback synapse have not been well described. Since some amacrine cells are thought to be GABAergic, we examined bipolar cells for feedback input from gamma-aminobtyric acid (GABA)ergic amacrine cells. Solitary bipolar cells were dissociated enzymatically from the goldfish retina. Cells were voltage clamped with a patch pipette and their GABA sensitivity was examined. GABA evoked responses in all bipolar cells with a large axon terminal, which were identified to be the rod dominant ON type, and in some bipolar cells with a small axon terminal. The highest GABA sensitivity was located at the axon terminal. The least effective dose was as low as 100 nM. A small insignificant response of high threshold was evoked when GABA was applied to the dendrite and soma. GABA increased the Cl conductance and caused membrane hyperpolarization. The bipolar cells had the GABAA receptor coupled with a benzodiazepine receptor. The GABA-evoked response was not susceptible to Co ions, which suppressed the GABA-induced responses in turtle cones by 50% at 5 microM concentration. Incomplete desensitization was observed, suggesting that the GABAergic pathway seems capable of transmitting signals tonically. The present results strongly indicate that the rod-dominant ON-type bipolar cells and some bipolar cells with a small axon terminal receive negative feedback inputs from GABAergic amacrine cells.

摘要

双极细胞在内网状层与无长突细胞形成相互突触;既有前馈连接也有反馈连接。反馈突触的生理特性尚未得到充分描述。由于一些无长突细胞被认为是γ-氨基丁酸(GABA)能的,我们研究了双极细胞是否接受来自GABA能无长突细胞的反馈输入。从金鱼视网膜中酶解分离出单个双极细胞。用膜片吸管对细胞进行电压钳制,并检测其对GABA的敏感性。GABA在所有具有大轴突终末的双极细胞(已确定为视杆主导型ON型)以及一些具有小轴突终末的双极细胞中诱发反应。最高的GABA敏感性位于轴突终末。最低有效剂量低至100 nM。当将GABA施加到树突和胞体时,会诱发一个阈值较高但不显著的小反应。GABA增加了Cl电导并导致膜超极化。双极细胞具有与苯二氮䓬受体偶联的GABAA受体。GABA诱发的反应对Co离子不敏感,Co离子在5 microM浓度时可抑制乌龟视锥细胞中GABA诱导的反应达50%。观察到不完全脱敏,这表明GABA能通路似乎能够持续传递信号。目前的结果强烈表明,视杆主导型ON型双极细胞和一些具有小轴突终末的双极细胞接受来自GABA能无长突细胞的负反馈输入。

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