首页> 美国卫生研究院文献>The Journal of Physiology >Feedback inhibition in the inner plexiform layer underlies the surround-mediated responses of AII amacrine cells in the mammalian retina
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Feedback inhibition in the inner plexiform layer underlies the surround-mediated responses of AII amacrine cells in the mammalian retina

机译:内丛状层中的反馈抑制是哺乳动物视网膜中AII amacrine细胞的周围介导反应的基础

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摘要

Intracellular recordings were made from narrow-field, bistratified AII amacrine cells in the isolated, superfused retina-eyecup of the rabbit. Pharmacological agents were applied to neurons to dissect the synaptic pathways subserving AII cells so as to determine the circuitry generating their off-surround responses. Application of the GABA antagonists, picrotoxin, bicuculline and 1,2,5,6-tetrahydropyridine-4-yl methylphosphinic acid (TPMPA) all increased the on-centre responses of AII amacrine cells, but attenuated the off-surround activity. At equal concentrations, picrotoxin was approximately twice as effective as bicuculline or TPMPA in modifying the response activity of AII amacrine cells. These results indicate that the mechanism underlying surround inhibition of AII amacrine cells includes activation of both GABAA and GABAC receptors in an approximately equal ratio. Application of the GABA antagonists also increased the size of on-centre receptive fields of AII amacrine cells. Again, picrotoxin was most effective, producing, on average, a 54 % increase in the size of the receptive field, whereas bicuculline and TPMPA produced comparable 34 and 33 % increases, respectfully. Application of the voltage-gated sodium channel blocker TTX produced effects on AII amacrine cells qualitatively similar to those of the GABA blockers. Intracellular application of the chloride channel blocker 4,4′-dinitro-stilbene-2,2′-disulphonic acid (DNDS) abolished the direct effects of GABA on AII amacrine cells. Moreover, DNDS increased the amplitude of both the on-centre and off-surround responses. The failure of DNDS to block the off-surround activity indicates that it is not mediated by direct GABAergic inhibition. Taken together, our results suggest that surround receptive fields of AII amacrine cells are generated indirectly by the GABAergic, reciprocal feedback synapses from S1/S2 amacrine cells to the axon terminals of rod bipolar cells.
机译:从家兔离体,融合的视网膜眼杯中的窄视野,双分层的AII阿马奇林细胞进行细胞内记录。将药理学试剂应用于神经元,以解析保护AII细胞的突触途径,从而确定产生其非周围反应的电路。 GABA拮抗剂,苦毒毒素,双瓜氨酸和1,2,5,6-四氢吡啶-4-基甲基次膦酸(TPMPA)的应用均增加了AII阿马克林细胞在中心的反应,但减弱了非环绕活性。在相同的浓度下,微毒素在改变AII长春花碱细胞的反应活性方面的效率大约是双瓜氨酸或TPMPA的两倍。这些结果表明,抑制AII amacrine细胞周围抑制的机制包括以大致相等的比率激活GABAA和GABAC受体。 GABA拮抗剂的应用也增加了AII amacrine细胞在中心接受区域的大小。同样,微毒素是最有效的,平均使感受野的大小增加了54%,而双小分子和TPMPA分别产生了34%和33%的可比增长。电压门控钠通道阻滞剂TTX的应用在质量上与GABA阻滞剂相似,对AII无长突细胞产生了影响。氯离子通道阻滞剂4,4'-二硝基-nitro-2,2'-二磺酸(DNDS)的细胞内应用消除了GABA对AII巨无精细胞的直接作用。此外,DNDS增加了中心响应和非环绕响应的幅度。 DNDS未能阻止非周围活动表明它不是由直接的GABA能抑制介导的。两者合计,我们的结果表明,AII amacrine细胞的周围感受野是由S1 / S2 amacrine细胞到杆状双极细胞的轴突末端的GABA能,相互反馈突触间接产生的。

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