Crabb Rachael A B, Chau Eric P, Evans Michael C, Barocas Victor H, Hubel Allison
Department of Biomedical Engineering, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Tissue Eng. 2006 Jun;12(6):1565-75. doi: 10.1089/ten.2006.12.1565.
The growth in refractive surgeries and corneal replacements has fueled interest in the development of a tissue-engineered cornea. This study characterizes the microstructure and biomechanical properties of film-based corneal stroma equivalents over time in culture. The increased collagen density in the films was hypothesized to result in improved mechanical properties both initially and over time. The microstructure of the film-based stromal equivalent was examined using atomic force microscopy and scanning electron microscopy; the mechanical properties, relaxed modulus, and ultimate tensile strength were quantified using uniaxial tensile testing. The dense, film-based stromal equivalent had a lamellae-like microstructure, which was notably different than the porous structure of sponges used previously. Seeded human corneal stromal fibroblasts remained on the surface of the film rather than migrating into the film and produced fibers of extracellular matrix with diameters of 35-75 nm. After an initial decrease during hydration, the relaxed modulus and ultimate tensile strength for fully hydrated collagen films were 0.4 +/- 0.2 MPa and 0.3 +/- 0.1 MPa, respectively. The mechanical properties of cell-seeded films mimicked those of control films. While further studies are needed to quantify the optical properties, the dense, lamellae-like structure of collagen films is a feasible scaffold for the development of tissue-engineered stroma.
屈光手术和角膜置换术的发展激发了人们对组织工程角膜研发的兴趣。本研究对培养过程中基于薄膜的角膜基质等效物的微观结构和生物力学特性随时间的变化进行了表征。研究假设薄膜中胶原蛋白密度的增加会在初始阶段以及随着时间的推移导致机械性能的改善。使用原子力显微镜和扫描电子显微镜检查了基于薄膜的基质等效物的微观结构;使用单轴拉伸试验对机械性能、松弛模量和极限拉伸强度进行了量化。致密的基于薄膜的基质等效物具有片状微观结构,这与先前使用的海绵的多孔结构明显不同。接种的人角膜基质成纤维细胞停留在薄膜表面,而不是迁移到薄膜中,并产生直径为35 - 75纳米的细胞外基质纤维。在水合过程中初始下降之后,完全水合的胶原蛋白薄膜的松弛模量和极限拉伸强度分别为0.4±0.2兆帕和0.3±0.1兆帕。接种细胞的薄膜的机械性能与对照薄膜相似。虽然需要进一步研究来量化光学性能,但胶原蛋白薄膜的致密片状结构是组织工程基质开发的一种可行支架。