McGowan Institute for Regenerative Medicine, University of Pittsburgh School of Medicine, Pittsburgh, PA 15219, USA.
Biomaterials. 2012 Feb;33(5):1343-52. doi: 10.1016/j.biomaterials.2011.10.055. Epub 2011 Nov 10.
Corneal stroma is an avascular connective tissue characterized by layers of highly organized parallel collagen fibrils, mono-disperse in diameter with uniform local interfibrillar spacing. Reproducing this level of structure on a nano- and micro-scale may be essential to engineer corneal tissue with strength and transparency similar to that of native cornea. A substrate of aligned poly(ester urethane) urea (PEUU) fibers, 165 ± 55 nm in diameter, induced alignment of cultured human corneal stromal stem cells (hCSSCs) which elaborated a dense collagenous matrix, 8-10 μm in thickness, deposited on the PEUU substratum. This matrix contained collagen fibrils with uniform diameter and regular interfibrillar spacing, exhibiting global parallel alignment similar to that of native stroma. The cells expressed high levels of gene products unique to keratocytes. hCSSCs cultured on PEUU fibers of random orientation or on a cast film of PEUU also differentiated to keratocytes and produced abundant matrix, but lacked matrix organization. These results demonstrate the importance of topographic cues in instructing organization of the transparent connective tissue of the corneal stroma by differentiated keratocytes. This important information will help with design of biomaterials for a bottom-up strategy to bioengineer spatially complex, collagen-based nano-structured constructs for corneal repair and regeneration.
角膜基质是一种无血管的结缔组织,其特征是具有高度组织化的平行胶原纤维层,直径单一分散,具有均匀的局部纤维间间距。在纳米和微米尺度上复制这种结构水平对于用类似于天然角膜的强度和透明度来工程化角膜组织可能是至关重要的。直径为 165±55nm 的定向排列的聚(酯脲)尿素(PEUU)纤维基底诱导培养的人角膜基质干细胞(hCSSC)的排列,这些细胞在 PEUU 基底上分泌出 8-10μm 厚的密集胶原基质。该基质包含具有均匀直径和规则纤维间间距的胶原纤维,表现出类似于天然基质的整体平行排列。细胞表达高水平的角质细胞特有的基因产物。在随机取向的 PEUU 纤维或 PEUU 铸膜上培养的 hCSSC 也分化为角质细胞并产生丰富的基质,但缺乏基质组织。这些结果表明,在指导由分化的角质细胞组织角膜基质的透明结缔组织方面,形貌线索非常重要。这些重要信息将有助于设计生物材料,用于从下到上的策略来生物工程化具有空间复杂性的、基于胶原蛋白的纳米结构构建体,用于角膜修复和再生。