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大鼠视网膜A17无长突细胞的形态学和生理学特性

Morphological and physiological properties of the A17 amacrine cell of the rat retina.

作者信息

Menger N, Wässle H

机构信息

Max-Planck-Institut für Hirnforschung, Frankfurt am Main, Germany.

出版信息

Vis Neurosci. 2000 Sep-Oct;17(5):769-80. doi: 10.1017/s0952523800175108.

Abstract

In addition to the well-studied AII amacrine cell, there is another amacrine cell type participating in the rod pathway of the mammalian retina. In cat, this cell is called the A17 amacrine cell, and in rabbits, it is called the indoleamine-accumulating amacrine cell (S1 and S2); however, the presence of the corresponding cell type has not yet been described in detail for the rat retina. To this end, we injected amacrine cells with Neurobiotin in vertical retinal slices. After histological processing, we were able to reconstruct the morphology of a wide-field amacrine cell which showed characteristics of A17 and S1/S2 amacrine cells. The rat wide-field amacrine cells exhibited the same stratification pattern, their dendrites bore varicosities and ramified in sublamina 5 of the inner plexiform layer (IPL), and they were dye-coupled to other amacrine cells. To determine whether those amacrine cells shared electrophysiological characteristics as well, we performed whole-cell patch-clamp recordings and examined their voltage-activated currents and neurotransmitter-induced currents. We never observed voltage-gated Na+ currents and spike-like potentials upon depolarization by current injection in these cells. We identified GABA- and glycine-sensitive Cl- currents that could be blocked by bicuculline and strychnine, respectively. We also observed kainate- and AMPA-activated currents, which could be inhibited by the application of 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX). Finally, a 400-ms full-field light stimulus was used to characterize the light responses of A17 amacrine cells. The light ON-induced inward current could be suppressed by the application of 2,3-Dioxo-6-nitro-1,2,3,4-tetrahydrobenzo[f]quinoxaline-7-sulphonamide (NBQX), while the majority of the light OFF-induced current was inhibited by bicuculline and reduced to a smaller extent by NBQX. CPP, an NMDA blocker, had no effect on the light response of rat A17 amacrine cells.

摘要

除了研究充分的AII无长突细胞外,还有另一种无长突细胞类型参与哺乳动物视网膜的视杆通路。在猫中,这种细胞被称为A17无长突细胞,在兔子中,它被称为吲哚胺积累无长突细胞(S1和S2);然而,大鼠视网膜中相应细胞类型的存在尚未得到详细描述。为此,我们在垂直视网膜切片中用神经生物素注射无长突细胞。经过组织学处理后,我们能够重建一种广域无长突细胞的形态,该细胞表现出A17和S1/S2无长突细胞的特征。大鼠广域无长突细胞表现出相同的分层模式,其树突有曲张并在内网状层(IPL)的5层亚层中分支,并且它们与其他无长突细胞染料偶联。为了确定这些无长突细胞是否也具有相同的电生理特征,我们进行了全细胞膜片钳记录,并检查了它们的电压激活电流和神经递质诱导电流。在这些细胞中,通过电流注入去极化时,我们从未观察到电压门控Na+电流和尖峰样电位。我们鉴定出了分别可被荷包牡丹碱和士的宁阻断的GABA和甘氨酸敏感的Cl-电流。我们还观察到了可被6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)抑制的海人酸和AMPA激活电流。最后,使用400毫秒的全视野光刺激来表征A17无长突细胞的光反应。光开启诱导的内向电流可被2,3-二氧代-6-硝基-1,2,3,4-四氢苯并[f]喹喔啉-7-磺酰胺(NBQX)抑制,而大部分光关闭诱导电流被荷包牡丹碱抑制,并且被NBQX抑制的程度较小。NMDA阻断剂CPP对大鼠A17无长突细胞的光反应没有影响。

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