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Invest Ophthalmol Vis Sci. 2020 Mar 9;61(3):3. doi: 10.1167/iovs.61.3.3.
In the mammalian retina, cannabinoid type 1 receptors (CB1Rs) are well-positioned to alter inhibitory synaptic function from amacrine cells and, thus, might influence visual signal processing in the inner retina. However, it is not known if CB1R modulates amacrine cells feedback inhibition at retinal bipolar cell (BC) terminals.
Using whole-cell voltage-clamp recordings, we examined the pharmacological effect of CB1R activation and inhibition on spontaneous inhibitory postsynaptic currents (sIPSCs) and glutamate-evoked IPSCs (gIPSCs) from identified OFF BCs in light-adapted rat retinal slices.
Activation of CB1R with WIN55212-2 selectively increased the frequency of GABAergic, but not glycinergic sIPSC in types 2, 3a, and 3b OFF BCs, and had no effect on inhibitory activity in type 4 OFF BCs. The increase in GABAergic activity was eliminated in axotomized BCs and can be suppressed by blocking CB1R with AM251 or GABAA and GABAρ receptors with SR-95531 and TPMPA, respectively. In all OFF BC types tested, a brief application of glutamate to the outer plexiform layer elicited gIPSCs comprising GABAergic and glycinergic components that were unaffected by CB1R activation. However, blocking CB1R selectively increased GABAergic gIPSCs, supporting a role for endocannabinoid signaling in the regulation of glutamate-evoked GABAergic inhibitory feedback to OFF BCs.
CB1R activation shape types 2, 3a, and 3b OFF BC responses by selectively regulate GABAergic feedback inhibition at their axon terminals, thus cannabinoid signaling might play an important role in the fine-tuning of visual signal processing in the mammalian inner retina.
在哺乳动物视网膜中,大麻素 1 型受体 (CB1R) 位置优越,可以改变无长突细胞的抑制性突触功能,从而可能影响视网膜内的视觉信号处理。然而,目前尚不清楚 CB1R 是否调节视网膜双极细胞 (BC) 末梢处的无长突细胞反馈抑制。
使用全细胞膜片钳记录,我们检查了 CB1R 激活和抑制对光适应大鼠视网膜切片中鉴定的 OFF BC 自发抑制性突触后电流 (sIPSCs) 和谷氨酸诱发 IPSC (gIPSCs) 的药理学影响。
WIN55212-2 激活 CB1R 选择性增加了 2 型、3a 型和 3b 型 OFF BC 中 GABA 能,但不是甘氨酸能 sIPSC 的频率,对 4 型 OFF BC 中的抑制活性没有影响。在外周神经切断的 BC 中,GABA 能活性的增加被消除,并且可以分别用 AM251 阻断 CB1R、SR-95531 和 TPMPA 阻断 CB1R 和 GABAA 和 GABAρ 受体来抑制。在所有测试的 OFF BC 类型中,在外丛状层短暂应用谷氨酸可引发包括 GABA 能和甘氨酸能成分的 gIPSCs,CB1R 激活对其无影响。然而,阻断 CB1R 选择性增加 GABA 能 gIPSCs,支持内源性大麻素信号在调节 OFF BC 对谷氨酸诱发 GABA 能抑制性反馈中的作用。
CB1R 激活通过选择性调节 GABA 能反馈抑制来塑造 2 型、3a 型和 3b 型 OFF BC 反应,因此大麻素信号可能在哺乳动物内视网膜中视觉信号处理的精细调节中发挥重要作用。