Ismail Hesham M, Zamani Somayeh, Elrayess Mohamed A, Kafienah Wael, Younes Husam M
Pharmaceutics & Polymeric Drug Delivery Research Laboratory, College of Pharmacy, Qatar University, P.O. Box 2713, Doha, Qatar.
Anti-Doping Lab Qatar, Sports City Road, P.O. Box 2713, Doha, Qatar.
Polymers (Basel). 2018 Apr 19;10(4):455. doi: 10.3390/polym10040455.
Reactive electrospinning is capable of efficiently producing in situ crosslinked scaffolds resembling the natural extracellular matrix with tunable characteristics. In this study, we aimed to synthesize, characterize, and investigate the in vitro cytocompatibility of electrospun fibers of acrylated poly(1,10-decanediol--tricarballylate) copolymer prepared utilizing the photoreactive electrospinning process with ultraviolet radiation for crosslinking, to be used for cardiac tissue engineering applications. Chemical, thermal, and morphological characterization confirmed the successful synthesis of the polymer used for production of the electrospun fibrous scaffolds with more than 70% porosity. Mechanical testing confirmed the elastomeric nature of the fibers required to withstand cardiac contraction and relaxation. The cell viability assay showed no significant cytotoxicity of the fibers on cultured cardiomyoblasts and the cell-scaffolds interaction study showed a significant increase in cell attachment and growth on the electrospun fibers compared to the reference. This data suggests that the newly synthesized fibrous scaffold constitutes a promising candidate for cardiac tissue engineering applications.
反应性静电纺丝能够高效地原位制备具有可调特性的、类似天然细胞外基质的交联支架。在本研究中,我们旨在合成、表征并研究利用光反应性静电纺丝工艺及紫外线辐射进行交联制备的丙烯酸化聚(1,10-癸二醇-三羧酸甘油酯)共聚物电纺纤维的体外细胞相容性,该纤维将用于心脏组织工程应用。化学、热学和形态学表征证实了用于制备电纺纤维支架的聚合物已成功合成,其孔隙率超过70%。力学测试证实了纤维具有承受心脏收缩和舒张所需的弹性体性质。细胞活力测定表明,该纤维对培养的心肌成纤维细胞无明显细胞毒性,且细胞-支架相互作用研究表明,与对照组相比,电纺纤维上的细胞附着和生长显著增加。这些数据表明,新合成的纤维支架是心脏组织工程应用的一个有前景的候选材料。