Ishida A T, Kaneko A, Tachibana M
J Physiol. 1984 Mar;348:255-70. doi: 10.1113/jphysiol.1984.sp015108.
Effects of L-glutamate and its analogues on membrane potentials of solitary horizontal cells were studied by intracellular recording. L-glutamate depolarized these cells at micromolar concentrations (greater than or equal to 10 microM), while D-glutamate and L-alpha-amino adipic acid produced slight depolarizations only at millimolar concentrations. Neither L- nor D-aspartate, even at millimolar doses, produced any change in solitary horizontal-cell resting potential. Solitary horizontal-cell responses to L-glutamate did not desensitize detectably. Responses to pairs of brief, ionophoretic pulses of L-glutamate were nearly equal in amplitude at inter-pulse intervals as short as 50 ms. Responses to maintained applications of low doses of L-glutamate did not decline for as long as 2 min. Depolarizing responses were produced by ionophoretic applications of L-glutamate near cell somata as well as dendrites. The mean sensitivity was 1.4 +/- 1.5 mV/nC with a maximum of 5.1 mV/nC. Depolarizing responses to L-glutamate reversed in polarity at membrane potentials between 0 and -20 mV, were accompanied by a decrease in membrane slope resistance, and were suppressed by replacement of extracellular sodium ions with choline. These results demonstrate that chemosensitivity of retinal horizontal cells to acidic amino acids persists after dissociation protocols, and in several respects resembles that found in horizontal cells in situ. These findings are consistent with the notion that retinal horizontal cells receive a synaptic input involving L-glutamate or a similar substance.
通过细胞内记录研究了L-谷氨酸及其类似物对孤立水平细胞膜电位的影响。L-谷氨酸在微摩尔浓度(大于或等于10 microM)时使这些细胞去极化,而D-谷氨酸和L-α-氨基己二酸仅在毫摩尔浓度时产生轻微去极化。L-天冬氨酸和D-天冬氨酸即使在毫摩尔剂量下,也不会使孤立水平细胞的静息电位产生任何变化。孤立水平细胞对L-谷氨酸的反应没有明显的脱敏现象。在脉冲间隔短至50毫秒时,对成对的短暂离子电泳脉冲L-谷氨酸的反应幅度几乎相等。对低剂量L-谷氨酸持续应用的反应在长达2分钟内没有下降。通过在细胞体和树突附近离子电泳应用L-谷氨酸产生去极化反应。平均敏感性为1.4±1.5 mV/nC,最大值为5.1 mV/nC。对L-谷氨酸的去极化反应在膜电位为0至-20 mV之间时极性反转,伴随着膜斜率电阻的降低,并且通过用胆碱替代细胞外钠离子而受到抑制。这些结果表明,视网膜水平细胞对酸性氨基酸的化学敏感性在解离实验后仍然存在,并且在几个方面类似于原位水平细胞中发现的情况。这些发现与视网膜水平细胞接受涉及L-谷氨酸或类似物质的突触输入这一观点一致。