首页> 外文期刊>International Journal of Polymeric Materials >RGD functionalized poly(epsilon-caprolactone)/poly(m-anthranilic acid) electrospun nanofibers as high-performing scaffolds for bone tissue engineering RGD functionalized PCL/P3ANA nanofibers
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RGD functionalized poly(epsilon-caprolactone)/poly(m-anthranilic acid) electrospun nanofibers as high-performing scaffolds for bone tissue engineering RGD functionalized PCL/P3ANA nanofibers

机译:RGD官能化聚(ε-己内酮)/聚(M-炭酸)电纺纳米纤维作为骨组织工程的高性能支架RGD官能化PCL / P3ANA纳米纤维

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摘要

RGD functionalized nanofibers of poly(epsilon-caprolactone)/poly(m-anthranilic acid) (PCL/P3ANA) were fabricated to address the mechanical, structural and functional requirements of bone tissue engineering. Nanofibers containing the highest amount of P3ANA with more carboxyl groups for functionalization have exhibited higher surface area and better mechanical properties. FTIR-ATR and UV-visible measurements evidenced the covalent RGD immobilization. After RGD peptide immobilization, the surface properties of nanofibers changed as evidenced by contact angle and electrochemical impedance spectroscopy (EIS). The effects of RGD functionalized nanofibers (PCL/P3ANA-RGD) on Saos-2 cell attachment, proliferation, and osteogenic activity were investigated. PCL/P3ANA-RGD nanofibers favored cell attachment, proliferation, and osteogenic activity.
机译:制备聚(ε-己内酯)/聚(M-炭酸)(PCL / P3ANA)的RGD官能化纳米纤维,以解决骨组织工程的机械,结构和功能性要求。 含有最高量的p3Ana具有更多羧基的纳脂纤维具有更高的表面积和更好的机械性能。 FTIR-ATR和UV可见测量证明了共价RGD固定化。 在RGD肽固定化之后,纳米纤维的表面性质如接触角和电化学阻抗谱(EIS)所证明的。 研究了RGD官能化纳米纤维(PCL / P3ANA-RGD)对SAOS-2细胞附着,增殖和成骨活性的影响。 PCL / P3ANA-RGD纳米纤维有利于细胞附着,增殖和成骨活性。

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