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Light-induced damage and its diagnosis in two-photon excited autofluorescence imaging of retinal pigment epithelium cells

机译:视网膜色素上皮细胞两光炎兴奋自荧光成像中的光致损伤及其诊断

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In this paper, a novel method for the differentiation of the retinal pigment epithelium (RPE) cells after light-induced damage by two-photon excitation is presented. Fresh samples of RPE cells of pig eyes are obtained from local slaughterhouse. Light-induced damage is produced by the output from Ti: sapphire laser which is focused onto the RPE layer. We study the change of the autofluorescence properties of RPE after two-photon excitation with the same wavelength. Preliminary results show that after two-photon excitation, there are two clear changes in the emission spectrum. The first change is the blue-shift of the emission peak. The emission peak of the intact RPE is located at 592nm, and after excitation, it shifts to 540nm. It is supposed that the excitation has led to the increased autofluorescence of flavin whose emission peak is located at 540nm. The second change is the increased intensity of the emission peak, which might be caused by the accelerated aging because the autofluorescence of RPE would increase during aging process. Experimental results indicate that two-photon excitation could not only lead to the damage of the RPE cells in multiphoton RPE imaging, but also provide an evaluation of the light-induced damage.
机译:本文介绍了通过双光子激发在光诱导损伤后视网膜颜料上皮(RPE)细胞分化的新方法。从局部屠宰场获得猪眼的RPE细胞的新鲜样品。通过Ti的输出产生光致损伤:Sapphire激光聚焦到RPE层上。在具有相同波长之后,研究双光子激发后RPE的自发荧光性能的变化。初步结果表明,在两光晶激励后,发射光谱有两个明显的变化。第一次改变是发射峰的蓝班。完整RPE的排放峰位于592nm,并在激励后,它转移到540nm。假设激发引起了发射峰位于540nm的黄素的自发荧光增加。第二种变化是发射峰的增强强度,这可能是由加速老化引起的,因为RPE的自发荧光在老化过程中会增加。实验结果表明,双光子激发不仅可以导致多光子RPE成像中RPE细胞的损害,而且还提供了对光诱导的损伤的评估。

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