Vinberg Frans J, Strandman Satu, Koskelainen Ari
Department of Biomedical Engineering and Computational Science, Helsinki University of Technology, Helsinki, Finland.
J Vis. 2009 Nov 17;9(12):9.1-17. doi: 10.1167/9.12.9.
The leading edge of the a-wave of the ERG is generally believed to accurately reflect the changes in the circulating current through the cGMP-gated channels in the outer segment plasma membrane of rods and cones. The aspartate-isolated mammalian electroretinogram (ERG) to a rod-saturating flash contains a fast "nose"-like wave temporally overlapping with the a-wave. We characterize the nature of this nose, investigate the membrane current mechanisms involved in the nose mechanism, and propose a model that can explain the generation of the nose component in the rod inner segment. On the basis of pharmacological treatments and perfusate ion composition alterations we rule out the possible role of most of the known rod membrane current mechanisms that might participate in the generation of the ERG nose component and we propose that the nose is generated by the interplay of voltage-dependent K(x) and h channels together with the Na(+)/K(+) ATPase. Our results strengthen the view that the kinetics of the leading edge of the ERG photoresponses should correspond to that of the outer segment light-sensitive current.
一般认为,视网膜电图(ERG)a波的前沿能准确反映视杆和视锥细胞外段质膜中通过cGMP门控通道的循环电流变化。在对视杆细胞饱和闪光刺激下,分离出天冬氨酸的哺乳动物视网膜电图(ERG)包含一个快速的“鼻状”波,其在时间上与a波重叠。我们表征了这个“鼻”的性质,研究了“鼻”机制中涉及的膜电流机制,并提出了一个可以解释视杆细胞内段中“鼻”成分产生的模型。基于药理学处理和灌注液离子成分改变,我们排除了大多数可能参与ERG“鼻”成分产生的已知视杆细胞膜电流机制的作用,并提出“鼻”是由电压依赖性K(x)和h通道与Na(+)/K(+) ATP酶的相互作用产生的。我们的结果强化了这样一种观点,即ERG光反应前沿的动力学应与外段光敏感电流的动力学相对应。