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通过动态剪切流变学探究蓝光和核黄素处理对兔巩膜组织的剂量依赖性胶原交联作用。

Dose-dependent collagen cross-linking of rabbit scleral tissue by blue light and riboflavin treatment probed by dynamic shear rheology.

作者信息

Schuldt Carsten, Karl Anett, Körber Nicole, Koch Christian, Liu Qing, Fritsch Anatol W, Reichenbach Andreas, Wiedemann Peter, Käs Josef A, Francke Mike, Iseli Hans Peter

机构信息

Soft Matter Physics Division, Institute for Experimental Physics I, Department of Physics and Earth Science, Leipzig University, Leipzig, Germany.

Translational Centre for Regenerative Medicine, Leipzig University, Leipzig, Germany.

出版信息

Acta Ophthalmol. 2015 Aug;93(5):e328-e336. doi: 10.1111/aos.12621. Epub 2014 Dec 16.

Abstract

PURPOSE

To determine the visco-elastic properties of isolated rabbit scleral tissue and dose-dependent biomechanical and morphological changes after collagen cross-linking by riboflavin/blue light treatment.

MATERIAL

Scleral patches from 87 adult albino rabbit eyes were examined by dynamic shear rheology. Scleral patches were treated by riboflavin and different intensities of blue light (450 nm), and the impact on the visco-elastic properties was determined by various rheological test regimes. The relative elastic modulus was calculated from non-treated and corresponding treated scleral patches, and treatments with different blue light intensities were compared.

RESULTS

Shear rheology enables us to study the material properties of scleral tissue within physiological relevant parameters. Cross-linking treatment increased the viscous as well as the elastic modulus and changed the ratio of the elastic versus viscous proportion in scleral tissue. Constant riboflavin application combined with different blue light intensities from 12 mW/cm(2) up to 100 mW/cm(2) increased the relative elastic modulus of scleral tissue by factors up to 1.8. Further enhancement of the applied light intensity caused a decline of the relative elastic modulus. This might be due to destructive changes of the collagen bundle structure at larger light intensities, as observed by histological examination.

CONCLUSION

Collagen cross-linking by riboflavin/blue light application increases the biomechanical stiffness of the sclera in a dose-dependent manner up to certain light intensities. Therefore, this treatment might be a suitable therapeutic approach to stabilize the biomechanical properties of scleral tissue in cases of pathological eye expansion.

摘要

目的

确定离体兔巩膜组织的粘弹性特性,以及核黄素/蓝光治疗胶原交联后剂量依赖性的生物力学和形态学变化。

材料

对87只成年白化兔眼的巩膜片进行动态剪切流变学检测。用核黄素和不同强度的蓝光(450nm)处理巩膜片,通过各种流变学测试方法确定其对粘弹性特性的影响。从未处理和相应处理的巩膜片中计算相对弹性模量,并比较不同蓝光强度的处理效果。

结果

剪切流变学使我们能够在生理相关参数范围内研究巩膜组织的材料特性。交联处理增加了粘性和弹性模量,并改变了巩膜组织中弹性与粘性比例。持续应用核黄素并结合12mW/cm²至100mW/cm²的不同蓝光强度,可使巩膜组织的相对弹性模量增加至1.8倍。进一步提高光照强度会导致相对弹性模量下降。这可能是由于在较高光照强度下胶原束结构的破坏,组织学检查观察到了这一点。

结论

应用核黄素/蓝光进行胶原交联可在一定光照强度范围内以剂量依赖方式增加巩膜的生物力学硬度。因此,这种治疗方法可能是一种合适的治疗手段,用于在病理性眼球扩张情况下稳定巩膜组织的生物力学特性。

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