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基质处理对角膜基质等效物光学和生物力学特性的影响。

Influence of matrix processing on the optical and biomechanical properties of a corneal stroma equivalent.

作者信息

Crabb Rachael A B, Hubel Allison

机构信息

Department of Biomedical Engineering, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

Tissue Eng Part A. 2008 Jan;14(1):173-82. doi: 10.1089/ten.a.2007.0139.

Abstract

Interest in developing tissue-engineered cornea has increased with the decrease in the supply of donor tissue; however, the high strength and transparency of the cornea present a challenge. Both the collagen processing and crosslinking methods were hypothesized to influence the optical and biomechanical properties of collagen matrices, while regular surface topography was hypothesized to align stromal fibroblasts. Improved transparency and strength were observed when soluble tropocollagen was added to the insoluble collagen and when glucose-mediated ultraviolet (UV) crosslinking as opposed to dehydrothermal crosslinking was used. The fraction of transmittance of the collagen films fabricated from insoluble collagen and soluble tropocollagen and glucose-mediated UV crosslinking was initially 0.91 +/- 0.02 and 0.98 +/- 0.01 for the smooth films and 0.90 +/- 0.02 and 0.97 +/- 0.02 for the microgrooved films at 400 and 700 nm and was comparable to that of the native cornea, while the relaxed modulus and ultimate tensile strength ranged from 0.9 to 9.4 MPa and from 0.7 to 4.1 MPa, respectively, over the 3 weeks of culture and were initially at or below the range of values for the native cornea. These collagen scaffolds were significantly stronger and more transparent than previous scaffolds, and aligned stromal fibroblasts were observed on microgrooved surfaces.

摘要

随着供体组织供应的减少,人们对开发组织工程角膜的兴趣日益增加;然而,角膜的高强度和透明度带来了挑战。胶原加工和交联方法均被认为会影响胶原基质的光学和生物力学性能,而规则的表面形貌被认为会使基质成纤维细胞排列整齐。当将可溶性原胶原蛋白添加到不溶性胶原蛋白中,以及使用葡萄糖介导的紫外线(UV)交联而非脱水热交联时,观察到透明度和强度得到了改善。由不溶性胶原蛋白和可溶性原胶原蛋白以及葡萄糖介导的UV交联制成的胶原膜,在400和700nm处,光滑膜的初始透光率分别为0.91±0.02和0.98±0.01,微槽膜的初始透光率分别为0.90±0.02和0.97±0.02,与天然角膜相当,而在3周的培养过程中,松弛模量和极限拉伸强度分别为0.9至9.4MPa和0.7至4.1MPa,最初处于或低于天然角膜的值范围。这些胶原支架比以前的支架明显更强且更透明,并且在微槽表面观察到排列整齐的基质成纤维细胞。

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