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The ageing lens and cataract: a model of normal and pathological ageing

机译:晶状体和白内障老化:正常和病理性老化的模型

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摘要

Cataract is a visible opacity in the lens substance, which, when located on the visual axis, leads to visual loss. Age-related cataract is a cause of blindness on a global scale involving genetic and environmental influences. With ageing, lens proteins undergo non-enzymatic, post-translational modification and the accumulation of fluorescent chromophores, increasing susceptibility to oxidation and cross-linking and increased light-scatter. Because the human lens grows throughout life, the lens core is exposed for a longer period to such influences and the risk of oxidative damage increases in the fourth decade when a barrier to the transport of glutathione forms around the lens nucleus. Consequently, as the lens ages, its transparency falls and the nucleus becomes more rigid, resisting the change in shape necessary for accommodation. This is the basis of presbyopia. In some individuals, the steady accumulation of chromophores and complex, insoluble crystallin aggregates in the lens nucleus leads to the formation of a brown nuclear cataract. The process is homogeneous and the affected lens fibres retain their gross morphology. Cortical opacities are due to changes in membrane permeability and enzyme function and shear-stress damage to lens fibres with continued accommodative effort. Unlike nuclear cataract, progression is intermittent, stepwise and non-uniform.
机译:白内障是晶状体中可见的不透明物,当位于视轴上时会导致视力下降。与年龄有关的白内障是导致遗传和环境影响的全球失明的原因。随着老化,晶状体蛋白质经历非酶的,翻译后的修饰和荧光发色团的积累,增加了对氧化和交联的敏感性,并增加了光散射。由于人类晶状体在整个生命中都在生长,因此晶状体核在较长时间内会受到此类影响,并且当在晶状体核周围形成谷胱甘肽运输的障碍时,氧化损伤的风险会在第四个十年中增加。因此,随着晶状体的老化,其透明度下降并且核变得更坚硬,抵抗了容纳所需的形状变化。这是老花眼的基础。在某些个体中,发色团的稳定积累和晶状体核中复杂的不溶性晶状体蛋白聚集体导致形成褐色核白内障。该过程是均匀的,受影响的晶状体纤维保持其总体形态。皮质混浊是由于膜通透性和酶功能的变化以及在持续调节下对晶状体纤维的剪切应力损伤所致。与核性白内障不同,疾病进展是间歇性,逐步和不均匀的。

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