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Characterization of extracellular matrix modified poly(epsilon-caprolactone) electrospun scaffolds with differing fiber orientations for corneal stroma regeneration

机译:细胞外基质改性聚(ε-己内酯)电纺支架具有不同纤维取注的细胞外基质改性聚(ε-己内酯)电纺支架

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摘要

Alternatives to donor cornea transplantation based on tissue engineering are desirable to overcome the current severe donor tissue shortage. Many natural polymers have good biological properties but poor mechanical properties and degradation resistance; while synthetic polymers have good mechanical properties but do not contain biochemical molecules normally found in the real tissue. In addition, both fiber orientation and composition play a key role in dictating cell behavior within a scaffold. In this study, the effect on corneal stromal cells of adding decellularized corneal extracellular matrix (ECM) to an electrospun polymer with differing fiber organizations was explored. Electrospun matrices were generated using polycaprolactone (PCL) and PCL combined with ECM and electrospun into random, radial and perpendicularly aligned fiber scaffolds. Human corneal stromal cells were seeded onto these scaffolds and the effect of composition and orientation on the cells phenotype was assessed. Incorporation of ECM into PCL increased hydrophilicity of scaffolds without an adverse effect on Young's modulus. Cells seeded on these matrices adopted different morphologies that followed the orientation of the fibers. Keratocyte markers were increased in all types of scaffolds compared to tissue culture plastic. Scaffolds with radial and perpendicularly aligned fibers promoted enhanced cell migration. Aligned scaffolds with incorporated ECM show promise for their use as cell-free implants that promote endogenous repopulation by neighboring cells.
机译:基于组织工程的供体角膜移植的替代方案是理想的,以克服目前的严重施主组织短缺。许多天然聚合物具有良好的生物特性,但机械性能差和降解抗性;虽然合成聚合物具有良好的机械性能,但不含通常在真实组织中发现的生物化学分子。此外,纤维取向和组成均为在脚手架内的细胞行为中起关键作用。在该研究中,探讨了对具有不同纤维组织的脱细胞角膜细胞外基质(ECM)的角膜基质细胞的影响。使用聚己内酯(PCL)和PCL与ECM和ElecturpUp结合为随机,径向和垂直对准的纤维支架产生电纺基质。将人的角膜基质细胞接种在这些支架上,并评估组合物和取向对细胞表型的作用。将ECM掺入PCL增加了支架的亲水性,而不是对杨氏模量不良影响。在这些基质上种植的细胞采用不同的形态,其遵循纤维的取向。与组织培养塑料相比,所有类型的支架中,Keratocyte标记增加。具有径向和垂直对齐的纤维的支架促进了增强的细胞迁移。与已掺入的ECM的对齐支架表明他们用作无细胞植入物的承诺,可通过邻近细胞促进内源性重新灌注。

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