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眼底自发荧光模式的光谱分析作为一种检测视网膜和视网膜色素上皮早期变性的工具。

Spectral analysis of fundus autofluorescence pattern as a tool to detect early stages of degeneration in the retina and retinal pigment epithelium.

机构信息

Department of Molecular Physiology, Biological Faculty, Lomonosov Moscow State University, Leninskie Gory 1, Moscow, Russia, 119991.

Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, Kosygin st.4, Moscow, Russia, 119334.

出版信息

Eye (Lond). 2018 Sep;32(9):1440-1448. doi: 10.1038/s41433-018-0109-0. Epub 2018 May 22.

Abstract

PURPOSE

The aim of this work is the determination of quantitative diagnostic criteria based on the spectral characteristics of fundus autofluorescence to detect early stages of degeneration in the retina and retinal pigment epithelium (RPE).

METHODS

RPE cell suspension samples were obtained from the cadaver eyes with and without signs of age-related macular degeneration (AMD). Fluorescence analysis at an excitation wavelength of 488 nm was performed. The fluorescence lifetimes of lipofuscin-granule fluorophores were measured by counting time-correlated photon method.

RESULTS

Comparative analysis of fluorescence spectra of RPE cell suspensions from the cadaver eyes with and without signs of AMD showed a significant difference in fluorescence intensity at 530-580 nm in response to fluorescence excitation at 488 nm. It was notably higher in eyes with visual pathology than in normal eyes regardless of the age of the eye donor. Measurements of fluorescence lifetimes of lipofuscin fluorophores showed that the contribution of photooxidation and photodegradation products of bisretinoids to the total fluorescence at 530-580 nm of RPE cell suspensions was greater in eyes with visual pathology than in normal eyes.

CONCLUSION

Because photooxidation and photodegradation products of bisretinoids are markers of photodestructive processes, which can cause RPE cell death and initiate degenerative processes in the retina, quantitative determination of increases in these bisretinoid products in lipofuscin granules may be used to establish quantitative diagnostic criteria for degenerative processes in the retina and RPE.

摘要

目的

本研究旨在基于眼底自发荧光的光谱特征,确定定量诊断标准,以检测视网膜和视网膜色素上皮(RPE)的早期变性。

方法

从有或无年龄相关性黄斑变性(AMD)迹象的尸体眼球中获得 RPE 细胞悬浮样本。在 488nm 的激发波长下进行荧光分析。通过时间相关光子计数法测量脂褐素颗粒荧光团的荧光寿命。

结果

对有或无 AMD 迹象的尸体眼球 RPE 细胞悬浮液的荧光光谱进行比较分析,发现在 488nm 荧光激发下,530-580nm 处的荧光强度存在显著差异。在有视觉病变的眼睛中,无论供体眼球的年龄如何,其荧光强度都显著高于正常眼睛。脂褐素荧光团荧光寿命的测量表明,在有视觉病变的眼睛中,双视黄醇的光氧化和光降解产物对 RPE 细胞悬浮液在 530-580nm 处的总荧光的贡献大于正常眼睛。

结论

由于双视黄醇的光氧化和光降解产物是光破坏过程的标志物,这些过程可能导致 RPE 细胞死亡,并引发视网膜的退行性过程,因此定量测定这些双视黄醇产物在脂褐素颗粒中的增加,可能用于建立视网膜和 RPE 退行性过程的定量诊断标准。

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