成年和胎儿豚鼠视网膜光感受器突触末端昼夜节律变化的形态计量学分析。

M D McCartney, D H Dickson
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引用次数: 4

摘要

为了测试在低等脊椎动物中报道的光感受器突触末端大小和形状的改变是否发生在哺乳动物的视觉系统中,将成年和胎儿豚鼠的视网膜暴露在LD 12:12的光照周期中,以及长期光照(LL)和长期黑暗(DD)的环境中。在这些光照条件下的不同时间获得的所有视网膜象限的代表性随机样本进行了电子显微镜处理。用计算机辅助形态测量学分析视网膜中所有三种感光细胞类型(α和副核杆细胞和视锥细胞)的突触末端的面积、周长、突触囊泡密度和浆层内折叠程度的变化。数据显示,在光照期,所有三种类型的成年受体末端的面积和囊泡密度都增加了,膜折叠也减少了,而在黑暗期,两种类型的杆状体的周长都增加了。与典型的LD 12:12照明方案的样本时间相比,在延长照明条件(LL和DD)下维持的成年人的结果没有差异,后者存在明显的统计差异。胎儿视网膜的数据显示,在任何测量变量中都没有显著的可持续模式。这些定量研究结果得出结论,虽然周长测量的变化可以用囊泡循环假说来解释,但观察到的末端大小和形状的变化可能是由光激发或光增强机制控制的,并通过在这些光感受器突触末端发现的交叉条纹原纤维的环状结构来实现。
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Morphometric analysis of circadian variations in the retinal photoreceptor synaptic terminals of the adult and fetal guinea pig.

In order to test whether the alterations in photoreceptor synaptic terminal size and shape reported in lower vertebrates occur in a mammalian visual system, adult and fetal guinea pig retinas were exposed to an LD 12:12 lighting cycle, as well as to long-term light (LL) and long-term dark (DD) regimes. Representative random samples from all retinal quadrants, obtained at various times during these lighting regimes, were processed for electron microscopy. The synaptic terminals of all three photoreceptor cell types in this retina (alpha and paranuclear rods, and cones) were analyzed with computer-assisted morphometrics for changes in their area, perimeter, synaptic vesicle density, and the degree of plasmalemmal infolding. The data showed all three types of adult receptor terminals to have increased area and vesicle density, as well as decreased membrane infolding, during the light period, while both types of rods showed increased perimeter measurements in the dark. Results from adults maintained under extended lighting conditions (LL and DD) showed no difference when compared with sample times during a typical LD 12:12 lighting regimen where clear statistical differences existed. Data from fetal retinas showed no significant sustainable pattern in any of the measured variables. These quantitative findings have led to the conclusion that while alterations in perimeter measurements may be explained by using the vesicle recycling hypothesis, observed changes in terminal size and shape may be controlled by a light-initiated or light-enhanced mechanism and effected through an annular configuration of cross-striated fibrils found within these photoreceptor synaptic terminals.

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