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离体蟾蜍视网膜的氧消耗

Oxygen consumption in the isolated toad retina.

作者信息

Haugh-Scheidt L M, Linsenmeier R A, Griff E R

机构信息

Department of Biomedical Engineering, Northwestern University, Evanston, IL 60208, USA.

出版信息

Exp Eye Res. 1995 Jul;61(1):63-72. doi: 10.1016/s0014-4835(95)80059-x.

Abstract

Retinal O2 utilization was studied to identify the O2 consuming processes in the retina and the spatial distribution of those processes. Neural retina, retinal pigment epithelium and choroid were dissected from the toad eye and superfused with an oxygenated Ringer's solution. Double-barreled microelectrodes were used to measure O2 and local voltage simultaneously within the retina in both light and dark adaptation. The profile of PO2 was measured during a withdrawal of the electrode tip across the retinal pigment epithelium and through the neural retina. The PO2 decreased through the distal retina, reaching a minimum in the inner segment or outer nuclear layer, and then increased steadily through the proximal retina. From fitting PO2 profiles measured in the dark-adapted retina to a three-layer diffusion model, O2 consumption was found to be 1.0 +/- 0.4 and 0.4 +/- 0.3 ml O2 (100 g min)-1 in the outer and inner halves of the retina, respectively. Light decreased consumption in both halves of the retina. In steady illumination (500 nm) that saturated the ERG b- and c-waves, O2 utilization decreased significantly to 48% and 68% of the dark values in the outer and inner retina, respectively. When Na+ was removed from the superfusate to inhibit the photoreceptor Na+/K+ pump, O2 consumption in the outer retina decreased by about the same amount as in light, but O2 consumption in the inner retina was not significantly affected.

摘要

研究视网膜氧利用情况以确定视网膜中的氧消耗过程及其空间分布。从蟾蜍眼中分离出神经视网膜、视网膜色素上皮和脉络膜,并用含氧的林格氏液进行灌流。使用双管微电极在明适应和暗适应条件下同时测量视网膜内的氧和局部电压。在电极尖端穿过视网膜色素上皮并通过神经视网膜时测量氧分压(PO2)曲线。PO2在远端视网膜中降低,在内段或外核层达到最小值,然后在近端视网膜中稳步增加。通过将在暗适应视网膜中测量的PO2曲线拟合到三层扩散模型,发现视网膜外半部分和内半部分的氧消耗分别为1.0±0.4和0.4±0.3 ml O2(100 g·min)-1。光照降低了视网膜两半部分的氧消耗。在使视网膜电图b波和c波饱和的稳定光照(500 nm)下,视网膜外半部分和内半部分的氧利用分别显著降低至暗值的48%和68%。当从灌流液中去除Na+以抑制光感受器Na+/K+泵时,视网膜外半部分的氧消耗降低幅度与光照时大致相同,但视网膜内半部分的氧消耗没有受到显著影响。

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