Mechanical and Industrial Engineering Department, University of Illinois Chicago, Chicago, IL, USA.
Mechanical and Industrial Engineering Department, University of Illinois Chicago, Chicago, IL, USA.
Exp Eye Res. 2024 Sep;246:110005. doi: 10.1016/j.exer.2024.110005. Epub 2024 Jul 18.
The stiffening effect of corneal crosslinking (CXL) treatment, a therapeutic approach for managing the progression of keratoconus, has been primarily investigated using uniaxial tensile experiments. However, this testing technique has several drawbacks and is unable to measure the mechanical response of cornea under a multiaxial loading state. In this work, we used biaxial mechanical testing method to characterize biomechanical properties of porcine cornea before and after CXL treatment. We also investigated the influence of preconditioning on measured properties and used TEM images to determine microstructural characteristics of the extracellular matrix. The conventional method of CXL treatment was used for crosslinking the porcine cornea. The biaxial experiments were done by an ElectroForce TestBench system at a stretch ratio of 1:1 and a displacement rate of 2 mm/min with and without preconditioning. The experimental measurements showed no significant difference in the mechanical properties of porcine cornea along the nasal temporal (NT) and superior inferior (SI) direction. Furthermore, the CXL therapy significantly enhanced the mechanical properties along both directions without creating anisotropic response. The samples tested with preconditioning showed significantly stiffer response than those tested without preconditioning. The TEM images showed that the CXL therapy did not increase the diameter of collagen fibers but significantly decreased their interfibrillar spacing, consistent with the mechanical property improvement of CXL treated samples.
角膜交联(CXL)治疗是一种治疗圆锥角膜进展的方法,其增强效果主要通过单轴拉伸实验进行研究。然而,这种测试技术有几个缺点,无法测量角膜在多轴加载状态下的机械响应。在这项工作中,我们使用双轴力学测试方法来表征 CXL 治疗前后猪眼角膜的生物力学特性。我们还研究了预处理对测量特性的影响,并使用 TEM 图像来确定细胞外基质的微观结构特征。使用传统的 CXL 处理方法对猪眼角膜进行交联。双轴实验在 1:1 的拉伸比和 2mm/min 的位移率下,通过 ElectroForce TestBench 系统进行,有无预处理两种情况。实验测量结果表明,猪眼角膜在鼻颞(NT)和上下面(SI)方向的力学性能没有显著差异。此外,CXL 治疗在不产生各向异性响应的情况下,显著增强了两个方向的力学性能。经过预处理的样品的测试结果显示出比未经预处理的样品更硬的响应。TEM 图像显示,CXL 治疗并没有增加胶原纤维的直径,而是显著减小了它们的纤维间间距,这与 CXL 处理样品力学性能的提高是一致的。