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角膜组织中交联的诱导。

Induction of cross-links in corneal tissue.

作者信息

Spoerl E, Huhle M, Seiler T

机构信息

Department of Ophthalmology, University of Dresden, Dresden, Germany.

出版信息

Exp Eye Res. 1998 Jan;66(1):97-103. doi: 10.1006/exer.1997.0410.

Abstract

The aim of this study was to investigate the possibility of induction of cross-links in corneal tissue in order to increase the stiffness as a basis for a future conservative treatment of keratectasia. Collagenous biomaterials can be stabilized by chemical and physical agents. The epithelium of enucleated porcine eyes was removed. Eight test groups, 10 eyes each, were treated with UV-light (lambda=254 nm), 0.5% riboflavin, 0.5% riboflavin and UV-light (365 nm) blue light (436 nm) and sunlight, and the chemical agents-glutaraldehyde (1% and 0.1%, 10 min) and Karnovsky's solution (0.1%, 10 min). Strips of 5 mm in width and 9 mm in length were cut from each cornea and the stress-strain behaviour of the strips was measured to assess the cross-linking process. For comparison, ten untreated corneas were measured by the same method. Compared to untreated corneas treatment with riboflavin and UV-irradiation as well as weak glutaraldehyde or Karnovsky's solutions resulted in an increased stiffness of the cornea. The biomechanical behaviour of the cornea can be altered by glutaraldehyde, Karnovsky's solution, and with riboflavin and UV-irradiation which offers the potential of a conservative treatment of keratoconus. To optimize this effect further investigation is necessary regarding the dose-response and in-vivo application.

摘要

本研究的目的是探讨诱导角膜组织交联以增加硬度的可能性,以此作为未来圆锥角膜保守治疗的基础。胶原生物材料可通过化学和物理试剂进行稳定化处理。摘除猪眼的上皮组织。八个试验组,每组10只眼,分别用紫外线(波长=254nm)、0.5%核黄素、0.5%核黄素与紫外线(365nm)、蓝光(436nm)以及阳光进行处理,还有化学试剂——戊二醛(1%和0.1%,10分钟)和卡诺夫斯基溶液(0.1%,10分钟)。从每个角膜上切下宽5mm、长9mm的条带,测量条带的应力-应变行为以评估交联过程。作为对照,用相同方法测量10个未处理的角膜。与未处理的角膜相比,用核黄素和紫外线照射以及低浓度戊二醛或卡诺夫斯基溶液处理可使角膜硬度增加。角膜的生物力学行为可通过戊二醛、卡诺夫斯基溶液以及核黄素和紫外线照射改变,这为圆锥角膜的保守治疗提供了可能。为优化这种效果,有必要进一步研究剂量反应和体内应用情况。

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