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Age-related changes in eye lens biomechanics morphology refractive index and transparency

机译:与年龄有关的晶状体生物力学形态折射率和透明度的变化

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摘要

Life-long eye lens function requires an appropriate gradient refractive index, biomechanical integrity and transparency. We conducted an extensive study of wild-type mouse lenses 1-30 months of age to define common age-related changes. Biomechanical testing and morphometrics revealed an increase in lens volume and stiffness with age. Lens capsule thickness and peripheral fiber cell widths increased between 2 to 4 months of age but not further, and thus, cannot account for significant age-dependent increases in lens stiffness after 4 months. In lenses from mice older than 12 months, we routinely observed cataracts due to changes in cell structure, with anterior cataracts due to incomplete suture closure and a cortical ring cataract corresponding to a zone of compaction in cortical lens fiber cells. Refractive index measurements showed a rapid growth in peak refractive index between 1 to 6 months of age, and the area of highest refractive index is correlated with increases in lens nucleus size with age. These data provide a comprehensive overview of age-related changes in murine lenses, including lens size, stiffness, nuclear fraction, refractive index, transparency, capsule thickness and cell structure. Our results suggest similarities between murine and primate lenses and provide a baseline for future lens aging studies.
机译:终身眼镜功能需要适当的梯度折射率,生物力学完整性和透明度。我们对1-30个月大的野生型小鼠晶状体进行了广泛的研究,以定义与年龄相关的常见变化。生物力学测试和形态计量学表明,随着年龄的增长,晶状体体积和硬度会增加。晶状体囊的厚度和周围纤维细胞宽度在2至4个月大时有所增加,但并没有进一步增加,因此,不能解释4个月后晶状体刚度的明显年龄依赖性增长。在12个月以上小鼠的晶状体中,我们常规观察到由于细胞结构变化引起的白内障,由于缝合线闭合不完全和皮质环性白内障导致的白内障与皮质晶状体纤维细胞的压迫区域相对应。折射率测量结果表明,在1至6个月大时,峰值折射率会快速增长,并且最高折射率的面积与晶状体核尺寸随年龄的增长而相关。这些数据提供了鼠晶状体中与年龄相关的变化的全面概述,包括晶状体大小,刚度,核分数,折射率,透明度,胶囊厚度和细胞结构。我们的研究结果表明鼠类和灵长类动物晶状体之间的相似性,并为将来的晶状体老化研究提供了基准。

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