玻璃体幽默对器官培养兔晶状体的影响。3形态和元素分析。

Lens and eye toxicity research Pub Date : 1991-01-01
M Bagchi, K Emanuel
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引用次数: 0

摘要

研究了在玻璃体存在和不存在情况下晶状体上皮细胞的离子分布和体积调节。使用能量色散x射线分析(EDX)测量上皮细胞的离子水平,使用计算机辅助形态测量法测量体积。这些实验数据表明,不附着玻璃体培养的晶状体赤道前区上皮细胞较大,离子平衡明显改变。不附着玻璃体的晶状体中央上皮细胞的体积和离子平衡也有明显的变化。然而,总体数据表明晶状体赤道前区域的上皮细胞最容易受到玻璃体体液的影响。我们实验室进行的实验表明,玻璃体中含有一些能有效抑制蛋白质合成的因子。也有报道称该因子不是蛋白质合成的直接抑制剂。因此,假设蛋白质合成活性的抑制是通过其他途径介导的。这些可能的途径之一可能是改变细胞质离子通量。之前我们报道过有或没有粘连玻璃体培养的晶状体的离子水平是相似的。从完整的透镜中测量离子水平。有可能存在离子水平的区域差异,这可以在整个透镜中被掩盖。我们也知道上皮细胞是离子泵活动的主要参与者,而晶状体的皮质和核区域可能对离子运输没有显著贡献。也有人提出,前赤道区的上皮细胞是Na+, K+泵的主要部位。上皮细胞离子水平的变化也会影响晶状体的蛋白质合成活动。为了测试这些可能性,进行了实验,用能量色散x射线分析技术测量透镜不同区域的离子水平。细胞质离子水平的改变也能改变上皮细胞的体积。利用计算机辅助形态测量法测量晶状体上皮细胞和囊的二维和三维参数,研究了这种可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of vitreous humor on the organ cultured rabbit ocular lens. III. Morphology and elemental analysis.

Distribution of ions and volume regulation of epithelial cells of lenses cultured in the presence and absence of vitreous humor were examined. Ion levels of the epithelial cells were measured using energy dispersive x-ray analysis(EDX) and computer-assisted morphometry was used for volume measurements. Data from these experiments revealed that the epithelial cells in the pre-equatorial region of lenses cultured without attached vitreous humor are larger and have significantly altered ionic balance. The cell volumes and ionic balances of central epithelial cells of the lenses cultured without attached vitreous humor also displayed discernible changes. However, overall data indicated that the epithelial cells in the pre-equatorial regions of the lenses are most susceptible to the effects of vitreous humor. Experiments performed in our laboratory have demonstrated that vitreous humor contains some factor(s) which can effectively inhibit protein synthesis. It was also reported that this factor(s) is not a direct inhibitor of protein synthesis. Therefore it was assumed that the inhibition of protein synthetic activity was mediated via some other pathway. One of these possible routes could be altered cytoplasmic ion fluxes. Earlier we reported that the ion levels of the lenses cultured with or without adhered vitreous humor were similar. Ion levels were measured from intact lenses. It is possible that there were regional differences in ion levels, which could be masked in whole lenses. It is also known that the epithelial cells are major participant in ion-pump activity, whereas cortical and nuclear areas of the lens may not contribute significantly to the ion transport. It has also been proposed that the epithelial cells of the pre-equatorial region are the main site of the Na+, K+ pump. Variation in ion levels of the epithelial cells could also affect protein synthesis activities of the lens. To test these possibilities, experiments were performed to measure ion levels in various areas of the lenses by energy dispersive x-ray analysis techniques. Altered cytoplasmic ion level can also change the volumes of the epithelial cells. This possibility was investigated by employing computer-assisted morphometry in measurements of two- and three-dimensional parameters of the lens epithelial cells and capsule.

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