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首页> 外文期刊>Biotechnology and Applied Biochemistry >Optimization of nanofibrous silk fibroin scaffold as a delivery system for bone marrow adherent cells: in vitro and in vivo studies
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Optimization of nanofibrous silk fibroin scaffold as a delivery system for bone marrow adherent cells: in vitro and in vivo studies

机译:纳米纤维丝素蛋白支架作为骨髓黏附细胞递送系统的优化:体外和体内研究

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摘要

Electrospun silk fibroin nanofibrous scaffolds (ESFNSs) were successfully prepared by electrospinning of various Bombyx mori silk fibroin concentrations (10, 12, and 14% in formic acid). After characterizing the purified silk fibroin, the morphology, porosity, fibers' diameter, and uniformity of the prepared scaffolds were examined in detail. In addition, biological responses such as effects on bone marrow cell viability, cytotoxicity, and cell adhesion were evaluated in vitro. Biocompatibility and bioactivity properties of the ESFNSs were evaluated in vitro and in vivo by cell culturing and subcutaneous implantation in rat models for 7 and 28 days, respectively. According to the obtained results, no beaded fibers were seen in any of the prepared scaffolds, whereas ESFNS-10% provided more uniformity and porosity with nanoscaled fibers (90 +/- 0.021 nm). Furthermore, the scaffolds also showed good cell adhesion and spreading (68.7 +/- 11.8 and 7.6 +/- 3.3 total length and width, respectively) with no detectable effect on cell viability and cytotoxicity. The in vivo biocompatibility evaluation indicated that the scaffolds did not stimulate detectable cellular inflammatory response (lymphocytes) and increased the total cell number (cellularity) in the implantation area. Furthermore, the results suggest the potential use of the prepared ESFNS-10% bone marrow cell constructs in direct implantation for tissue engineering applications. (C) 2014 International Union of Biochemistry and Molecular Biology, Inc.
机译:通过静电纺丝各种家蚕丝素蛋白浓度(甲酸中10%,12%和14%)成功制备了静电丝素蛋白纳米纤维支架(ESFNS)。在表征纯化的丝素蛋白后,详细检查了所制备支架的形态,孔隙率,纤维直径和均匀性。此外,在体外评估了生物学反应,例如对骨髓细胞活力,细胞毒性和细胞粘附的影响。通过在大鼠模型中分别进行7天和28天的细胞培养和皮下植入,在体外和体内评估ESFNS的生物相容性和生物活性。根据获得的结果,在任何制备的支架中均未观察到串珠纤维,而ESFNS-10%的纳米级纤维(90 +/- 0.021 nm)提供了更高的均匀性和孔隙率。此外,支架还显示出良好的细胞粘附和扩散(总长度和宽度分别为68.7 +/- 11.8和7.6 +/- 3.3),而对细胞活力和细胞毒性没有可检测的影响。体内生物相容性评估表明,支架没有刺激可检测的细胞炎症反应(淋巴细胞),并增加了植入区域的总细胞数(细胞数)。此外,结果表明所制备的ESFNS-10%骨髓细胞构建体在直接植入中可用于组织工程应用。 (C)2014国际生物化学与分子生物学联合会

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