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A possible mechanism of X-ray-induced injury in rat lens.

机译:X射线诱发大鼠晶状体损伤的可能机制。

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PURPOSE: X-ray and other radiation can cause cataract, but the pathogenic mechanism is largely unknown. The aim of this study was to investigate the accumulation of iron in the x-ray-exposed rat lens and its relationship to lens injury. METHODS: Fifty male Wistar rats were divided randomly into five groups of 10. Groups 2 and 4 rats were sham-exposed, groups 3 and 5 were x-ray-treated, and group 1 served as control. X-ray radiation and sham exposure were performed in a similar manner. After 10 and 30 days of exposure, a lens from each rat in groups 2 and 3, and 3 and 5, respectively, were analyzed by flame atomic absorption technique for the assessment of metal content. RESULTS: Significantly decreased zinc and increased iron and calcium concentrations were detected in the lens samples of groups 3 and 5 compared with groups 2 and 4 and controls. Similar results were obtained comparing groups 5 and 3. CONCLUSIONS: We propose that x-ray exposure may cause toxic cell injury of the rat lens via Fenton metals catalyzed damage. Initial lens membrane damage in the radiolytic phase may permit the access of iron resulting in lens damage.
机译:目的:X射线和其他辐射可引起白内障,但其致病机理尚不清楚。这项研究的目的是调查铁在X射线暴露的大鼠晶状体中的蓄积及其与晶状体损伤的关系。方法:将50只雄性Wistar大鼠随机分为5组,每组10只。对第2和4组大鼠进行假暴露,对第3和5组进行X射线处理,第1组作为对照组。以类似方式进行X射线辐射和假暴露。暴露10天和30天后,分别通过火焰原子吸收技术分析了第2组和第3组,第3组和第5组中每只大鼠的晶状体,以评估金属含量。结果:与第2组,第4组和对照组相比,第3组和第5组的晶状体样品中锌含量显着降低,铁和钙浓度升高。比较第5组和第3组获得了相似的结果。结论:我们认为X射线暴露可能通过Fenton金属催化的损伤而引起大鼠晶状体的毒性细胞损伤。在辐射分解阶段,最初的晶状体膜损坏可能会允许铁进入,从而导致晶状体损坏。

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