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Fibronectin Functionalized Electrospun Fibers by Using Benign Solvents: Best Way to Achieve Effective Functionalization

机译:使用良性溶剂的纤连蛋白功能化电纺纤维:实现有效功能化的最佳方法

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摘要

The aim of this study is to demonstrate the feasibility of different functionalization methods for electrospun fibers developed using benign solvents. In particular three different approaches were investigated to achieve the functionalization of poly(epsilon caprolactone) (PCL) electrospun fibers with fibronectin. Protein surface entrapment, chemical functionalization and coaxial electrospinning were performed and compared. Moreover, bilayered scaffolds, with a top patterned and functionalized layer with fibronectin and a randomly oriented not functionalized layer were fabricated, demonstrating the versatility of the use of benign solvents for electrospinning also for the fabrication of complex graded structures. Besides the characterization of the morphology of the obtained scaffolds, ATR-FTIR and ToF-SIMS were used for the surface characterization of the functionalized fibers. Cell adhesion and proliferation were also investigated by using ST-2 cells. Positive results were obtained from all functionalized scaffolds and the most promising results were obtained with bilayered scaffolds, in terms of cells infiltration inside the fibrous structure.
机译:这项研究的目的是证明使用良性溶剂开发的电纺纤维采用不同功能化方法的可行性。特别地,研究了三种不同的方法以实现用纤连蛋白实现聚ε-己内酯(PCL)电纺纤维的功能化。进行了蛋白质表面截留,化学功能化和同轴静电纺丝并进行了比较。此外,制造了双层支架,该双层支架具有带有纤连蛋白的顶部图案化和功能化层以及随机取向的未功能化层,证明了良性溶剂用于静电纺丝以及制造复杂渐变结构的多功能性。除了表征所获得的支架的形态外,还使用ATR-FTIR和ToF-SIMS进行功能化纤维的表面表征。还通过使用ST-2细胞研究了细胞粘附和增殖。从所有功能化的支架中获得了积极的结果,就细胞在纤维结构内部的浸润而言,双层支架获得了最有希望的结果。

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