Biazar Esmaeil, Baradaran-Rafii Alireza, Heidari-keshel Saeed, Tavakolifard Sara
a Department of Biomaterials Engineering , Tonekabon Branch, Islamic Azad University , Tonekabon , Iran.
b Ophthalmic Research Center , Shahid Beheshti University of Medical Sciences , Tehran , Iran.
J Biomater Sci Polym Ed. 2015;26(16):1139-51. doi: 10.1080/09205063.2015.1078930. Epub 2015 Sep 1.
The aim of this study was to develop nanofibrous silk substrates for limbal stem cell expansion that can serve as a potential alternative substrate to replace human amniotic membrane. The human limbal stem cell was used to evaluate the biocompatibility of substrates (random and oriented nanofibrous mats, and human amniotic membrane) based on their phenotypic profile, viability, proliferation, and attachment ability. Biocompatibility results indicated that all substrates were highly biocompatible, as limbal stem cells could favorably attach and proliferate on the nanofibrous surfaces. Microscopic figures showed that the human limbal stem cells were firmly anchored to the substrates and were able to retain a normal corneal stem cell phenotype. Microscopic analyses illustrated that cells infiltrated the nanofibers and successfully formed a three-dimensional corneal epithelium, which was viable for 15 days. Immunocytochemistry and real-time PCR results revealed no change in the expression profile of limbal stem cells grown on nanofibrous substrates when compared to those grown on human amniotic membrane. In addition, electrospun nanofibrous silk substrates especially oriented mat provides not only a milieu supporting limbal stem cells expansion, but also serve as a useful alternative carrier for ocular surface tissue engineering and could be used as an alternative substrate to amniotic membrane.
本研究的目的是开发用于角膜缘干细胞扩增的纳米纤维丝基质,其可作为替代人羊膜的潜在替代基质。使用人角膜缘干细胞基于其表型特征、活力、增殖和附着能力来评估基质(随机和定向纳米纤维垫以及人羊膜)的生物相容性。生物相容性结果表明,所有基质都具有高度生物相容性,因为角膜缘干细胞能够在纳米纤维表面良好地附着和增殖。显微镜图像显示,人角膜缘干细胞牢固地锚定在基质上,并能够保持正常的角膜干细胞表型。显微镜分析表明,细胞浸润纳米纤维并成功形成三维角膜上皮,其在 15 天内保持活力。免疫细胞化学和实时 PCR 结果显示,与在人羊膜上生长的角膜缘干细胞相比,在纳米纤维基质上生长的角膜缘干细胞的表达谱没有变化。此外,电纺纳米纤维丝基质尤其是定向垫不仅提供了支持角膜缘干细胞扩增的环境,而且还可作为眼表组织工程的有用替代载体,并可作为羊膜的替代基质。