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Collagen Fiber Diameter in the Rabbit Cornea After Collagen Crosslinking by Riboflavin/UVA.

机译:核黄素/ UVA交联胶原后兔角膜中的胶原纤维直径。

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OBJECTIVE:: Collagen crosslinking of the cornea has been developed recently as a quasiconservative treatment of keratoconus. Biomechanical in vitro measurements have demonstrated a significant increase in biomechanical stiffness of the crosslinked cornea. The aim of the present study was to evaluate the effect of this new procedure on the collagen fiber diameter of the rabbit cornea. METHODS:: The corneas of the right eyes of 10 New Zealand White albino rabbits were crosslinked by application of the photosensitizer riboflavin and exposure to UVA light (370 nm, 3 mW/cm) for 30 minutes. The left fellow control eyes were either left untreated (rabbits 1-4), deepithelialized (rabbits 5-7), or deepithelialized and treated with riboflavin/dextran solution (rabbits 8-10) to exclude an influence of epithelial debridement or hydration changes on the fiber diameter. On ultrathin sections of samples from the anterior and posterior cornea, the collagen fiber diameter was measured semiautomatically with the help ofmorphometric computer software. RESULTS:: In the anterior stroma, the collagen fiber diameter in the treated corneas was significantly increased by 12.2% (3.96 nm), and in the posterior stroma by 4.6% (1.63 nm), compared with the control fellow eyes. In the crosslinked eyes, the collagen fiber diameter was also significantly increased by, on average, 9.3% (3.1 nm) in the anterior compared with the posterior stroma within the same eye. CONCLUSIONS:: Collagen crosslinking using riboflavin and UVA leads to a significant increase in corneal collagen diameter. This alteration is the morphologic correlate of the crosslinking process leading to an increase in biomechanical stability. The crosslinking effect is strongest in the anterior half of the stroma because of the rapid decrease in UVA irradiance across the corneal stroma as a result of riboflavin-enhanced UVA absorption.
机译:目的:角膜的胶原蛋白交联最近已被开发为圆锥角膜的准保守治疗方法。生物力学体外测量表明交联角膜的生物力学刚度显着提高。本研究的目的是评估这种新方法对兔角膜胶原纤维直径的影响。方法:通过应用光敏剂核黄素并暴露于UVA光(370 nm,3 mW / cm)30分钟,使10只新西兰白化白兔的右眼角膜交联。左同侧对照眼未经治疗(兔1-4),深层鞘化(兔5-7)或深层鞘化,并用核黄素/右旋糖酐溶液(兔8-10)治疗,以排除上皮清创或水合作用对纤维直径。在形态学计算机软件的帮助下,在来自前角膜和后角膜的样品的超薄切片上,半自动测量胶原纤维的直径。结果:与对照组相比,在前基质中,治疗后的角膜的胶原纤维直径显着增加了12.2%(3.96 nm),在后基质中的胶原纤维直径增加了4.6%(1.63 nm)。在交联的眼睛中,与同一只眼睛的后部基质相比,前部的胶原纤维直径也平均显着增加了9.3%(3.1 nm)。结论:使用核黄素和UVA进行胶原蛋白交联会导致角膜胶原蛋白直径显着增加。这种改变是交联过程的形态相关性,导致生物力学稳定性的提高。交联效应在基质的前半部最强,这是由于核黄素增强的UVA吸收导致跨角膜基质的UVA辐射迅速降低。

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