Department of Systems Biology, University of Alcalá, 28871 Alcalá de Henares, Spain.
IRYCIS, Hospital Ramón y Cajal, 28034 Madrid, Spain.
Int J Mol Sci. 2023 Feb 4;24(4):3126. doi: 10.3390/ijms24043126.
To determine the origin of oscillatory potentials (OPs), binocular electroretinogram (ERG) recordings were performed under light and dark adaptation on adult healthy C57BL/6J mice. In the experimental group, 1 μL of PBS was injected into the left eye, while the right eye was injected with 1 μL of PBS containing different agents: APB, GABA, Bicuculline, TPMPA, Glutamate, DNQX, Glycine, Strychnine, or HEPES. The OP response depends on the type of photoreceptors involved, showing their maximum response amplitude in the ERG induced by mixed rod/cone stimulation. The oscillatory components of the OPs were affected by the injected agents, with some drugs inducing the complete abolition of oscillations (APB, GABA, Glutamate, or DNQX), whereas other drugs merely reduced the oscillatory amplitudes (Bicuculline, Glycine, Strychnine, or HEPES) or did not even affect the oscillations (TPMPA). Assuming that rod bipolar cells (RBC) express metabotropic Glutamate receptors, GABA, GABA, and Glycine receptors and that they release glutamate mainly on Glycinergic AII amacrine cells and GABAergic A17 amacrine cells, which are differently affected by the mentioned drugs, we propose that RBC-AII/A17 reciprocal synapses are responsible for the OP generation in the ERG recordings in the mice. We conclude that the reciprocal synapses between RBC and AII/A17 are the basis of the ERG OP oscillations of the light response, and this fact must be taken into consideration in any ERG test that shows a decrease in the OPs' amplitude.
为了确定振荡电位(OPs)的起源,对成年健康 C57BL/6J 小鼠进行了光暗适应的双眼视网膜电图(ERG)记录。在实验组中,左眼注射 1 μL PBS,而右眼注射 1 μL 含有不同药物的 PBS:APB、GABA、Bicuculline、TPMPA、谷氨酸、DNQX、甘氨酸、士的宁或 HEPES。OP 反应取决于涉及的光感受器类型,在混合视杆/视锥刺激诱导的 ERG 中显示其最大反应幅度。注入的药物会影响 OP 的振荡成分,一些药物会导致振荡完全消除(APB、GABA、谷氨酸或 DNQX),而其他药物仅会降低振荡幅度(Bicuculline、甘氨酸、士的宁或 HEPES),甚至不会影响振荡(TPMPA)。假设视杆双极细胞(RBC)表达代谢型谷氨酸受体、GABA、GABA 和甘氨酸受体,并且它们主要在甘氨酸能 AII 无长突细胞和 GABA 能 A17 无长突细胞上释放谷氨酸,这些细胞受上述药物的不同影响,我们提出 RBC-AII/A17 反向突触负责在小鼠 ERG 记录中产生 OP。我们得出结论,RBC 和 AII/A17 之间的反向突触是 ERG OP 光反应振荡的基础,在任何显示 OP 幅度降低的 ERG 测试中都必须考虑到这一事实。