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首页> 外文期刊>The Journal of general physiology >Effects of extracellular Ca++, K+, and Na+ on cone and retinal pigment epithelium retinomotor movements in isolated teleost retinas.
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Effects of extracellular Ca++, K+, and Na+ on cone and retinal pigment epithelium retinomotor movements in isolated teleost retinas.

机译:细胞外Ca ++,K +和Na +对孤立的硬骨膜视网膜的视锥细胞和视网膜色素上皮视网膜运动的影响。

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摘要

We have examined the effects of changes in extracellular ionic composition on cone and retinal pigment epithelium (RPE) retinomotor movements in cultured isolated teleost retinas. In vivo, the myoid portion of teleost cones contracts in the light and elongates in the dark; RPE pigment disperses in the light and aggregates in the dark. In vitro, cones of dark-adapted (DA) retinas cultured in constant darkness contracted spontaneously to their light-adapted (LA) positions if the culture medium contained greater than or equal to 10(-3)M Cao++. DA cones retained their long DA positions in a medium containing less than or equal to 10(-6)M Cao++. Low [Ca++]o (10(-5)-10(-7)M) also permitted darkness to induce cone elongation and RPE pigment aggregation. Light produced cone contraction even in the absence of Cao++, but the extent of contraction was reduced if [Ca++]o was less than 10(-3) M. Thus, full contraction appeared to require the presence of external Ca++. High [K+]o (greater than or equal to 27 mM) inhibited both light-induced and light-independent Ca++-induced cone contraction. However, low [Na+]o (3.5 mM) in the presence of less than or equal to 10(-6)M Cao++ did not mimic light onset by inducing cone contraction in the dark. High [K+]o also promoted dark-adaptive cone and RPE movements in LA retinas cultured in the light. All results obtained in high [K+]o were similar to those observed when DA or LA retinas were exposed to treatments that elevate cytoplasmic cyclic 3',5'-adenosine monophosphate (cAMP) content.
机译:我们已经检查了细胞外离子组成的变化对培养的离体硬骨膜视网膜中视锥细胞和视网膜色素上皮(RPE)视网膜运动运动的影响。在体内,硬骨锥的肌状部分在明亮的情况下收缩,在黑暗的情况下伸长。 RPE颜料分散在光中,在黑暗中聚集。在体外,如果培养基中含有大于或等于10(-3)M Cao ++,则在恒定的黑暗中培养的暗适应(DA)视网膜视锥细胞会自发收缩到其轻适应(LA)位置。 DA锥体在包含小于或等于10(-6)M Cao ++的介质中保留其长DA位置。低[Ca ++] o(10(-5)-10(-7)M)也允许黑暗导致锥度伸长和RPE颜料聚集。即使在不存在Cao ++的情况下,光也会产生圆锥收缩,但是如果[Ca ++] o小于10(-3)M,则收缩的程度会降低。因此,完全收缩似乎需要存在外部Ca ++。高[K +] o(大于或等于27 mM)抑制光诱导的和不依赖光的Ca ++诱导的锥体收缩。然而,在小于或等于10(-6)M Cao ++的情况下,低[Na +] o(3.5 mM)不能通过在黑暗中诱导视锥细胞收缩来模拟光的发作。高[K +] o还促进了光培养的洛杉矶视网膜的暗适应锥和RPE运动。在高[K +] o下获得的所有结果均与将DA或LA视网膜暴露于可提高细胞质环3',5'-单磷酸腺苷(cAMP)含量的处理中观察到的结果相似。

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