首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Photoluminescent functionalized carbon quantum dots loaded electroactive Silk fibroin/PLA nanofibrous bioactive scaffolds for cardiac tissue engineering
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Photoluminescent functionalized carbon quantum dots loaded electroactive Silk fibroin/PLA nanofibrous bioactive scaffolds for cardiac tissue engineering

机译:光致发光官能化碳量子点加载电活性丝纤维素/ PLA纳米纤维生物活性支架,用于心脏组织工程

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Tissue engineering and stem cell rehabilitation are the hopeful aspects that are being investigated for the management of Myocardial Infarction (MI); cardiac patches have been used to start myocardial rejuvenation. In this study, we engineered p-phenylenediamine surface functionalized (modif-CQD) into the Silk fibroin/PLA (SF/PLA) nanofibrous bioactive scaffolds with improved physico-chemical abilities, mechanical and cytocompatibility to cardiomyocytes. The micrograph results visualized the morphological improved spherical modif-CQD have been equivalently spread throughout the SF/PLA bioactive cardiac scaffolds. The fabricated CQD@SF/PLA nanofibrous bioactive scaffolds were highly porous with fully consistent pores; effectively improved young modulus and swelling asset for the suitability and effective implantation efficacy. The scaffolds were prepared with rat cardiomyocytes and cultured for up to 7 days, without electrical incentive. After 7 days of culture, the scaffold pores all over the construct volume were overflowing with cardiomyocytes. The metabolic activity and viability of the cardiomyocytes in CQD@SF/PLA scaffolds were significantly higher than cardiomyocytes in Silk flbroin /PLA scaffolds. The integration of CQD also influenced greatly and increases the expression of cardiac-marker genes. The results of the present investigations evidently recommended that well-organized cardiac nanofibrous scaffold with greater cardiac related mechanical abilities and biocompatibilities for cardiac tissue engineering and nursing care applications.
机译:组织工程和干细胞康复是对心肌梗死(MI)的管理正在研究的充满希望的方面;心脏贴片已被用于开始心肌重新焕发活力。在本研究中,我们将官能化(MODIF-CQD)设计为丝纤维蛋白/ PLA(SF / PLA)纳面纤维生物活性支架,并改善了对心肌细胞的机械和细胞粘合性的纳面纤维素/ PLA(SF / PLA)纳米纤维生物活性支架。显微照片结果可视化形态改善的球形MODIF-CQD在整个SF / PLA生物活性心脏支架上等同地分布。制造的CQD / PLA纳米纤维生物活性支架高度多孔,具有完全一致的孔隙;有效地改善了幼年模量和肿胀资产的适用性和有效的植入疗效。使用大鼠心肌细胞制备支架,并培养长达7天,没有电激励。在培养7天后,覆盖结构体积的支架孔隙溢出含有心肌细胞。 CQD / PLA支架中心肌细胞的代谢活性和活力显着高于丝绸/ PLA支架中的心肌细胞。 CQD的整合也会大大影响并增加心脏标记基因的表达。本研究的结果显着推荐,具有更大的心脏相关机械能力和心脏组织工程和护理护理应用的心脏相关机械能力和生物相容性良好组织的心脏纳米纤维支架。

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