首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Structural and biomechanical effects of photooxidative collagen cross-linking with photosensitizer riboflavin and 370 nm UVA light on human corneoscleral tissues
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Structural and biomechanical effects of photooxidative collagen cross-linking with photosensitizer riboflavin and 370 nm UVA light on human corneoscleral tissues

机译:光敏胶原与光敏剂核黄素和370 nm UVA光交联对人角膜巩膜组织的结构和生物力学作用

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摘要

This study quantitatively investigated the immediate effects of a photooxidative collagen cross-linking treatment with photosensitizer riboflavin (RF) and 370 nm UVA light in in vitro human corneoscleral collagen fibrils using histology, thickness, scanning electron microscopy, and atomic force microscopy analyses. Twenty 8 × 2 mm corneoscleral strips were dissected sagittally from donor tissue using a scalpel. Four parameters were investigated, including the density, thickness, adhesion force, and stiffness of corneoscleral tissues before and after the collagen cross-linking treatment. The RFUVA-catalyzed collagen cross-linking treatment led to an increase in the density of both corneal (8%) and scleral (23%) stromal collagens. However, there was no difference in corneoscleral thickness. Furthermore, RFUVA-catalyzed collagen cross-linking treatment led to an increased biomechanical response of corneosclera: 25 and 8% increases in corneoscleral stiffness, and 24 and 22% increases in corneoscleral adhesion force. The collagen cross-linking treatment through RF-sensitized photoreaction may cause structural and biomechanical changes in the collagen fibril network of the cornea and the sclera. This is due to narrowing of the interfibrillar spacing and the stromal edema.
机译:这项研究使用组织学,厚度,扫描电子显微镜和原子力显微镜分析定量研究了光敏剂核黄素(RF)和370 nm UVA光在体外人角膜巩膜胶原纤维中的光氧化胶原交联处理的即时效果。用手术刀从供体组织矢状切开二十八个8×2mm角膜巩膜带。研究了四个参数,包括胶原交联处理前后角膜巩膜组织的密度,厚度,粘附力和刚度。 RFUVA催化的胶原蛋白交联处理导致角膜基质胶原(8%)和巩膜基质(23%)的密度增加。但是,角膜巩膜厚度没有差异。此外,RFUVA催化的胶原蛋白交联处理导致角膜巩膜的生物力学响应增加:角膜巩膜硬度增加25%和8%,而角膜巩膜粘附力增加24和22%。通过RF敏化光反应进行的胶原蛋白交联处理可能会导致角膜和巩膜的胶原蛋白原纤维网络发生结构和生物力学变化。这是由于纤维间间距和基质水肿变窄。

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