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The in vitro and in vivo biocompatibility evaluation of electrospun recombinant spider silk protein/PCL/gelatin for small caliber vascular tissue engineering scaffolds

机译:电纺重组蜘蛛丝蛋白/ PCL /明胶的体外和体内生物相容性评价为小口径血管组织工程支架

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Recombinant spider silk protein (pNSR32) and gelatin (Gt) were demonstrated to enhance cytocompatibility of electrospun pNSR32/PCL/Gt scaffold. However, its potential pro-inflammatory effects and interactions with tissue and blood are unknown. In this study, the physicochemical properties and in vitro and in vivo biocompatibility of such scaffolds were evaluated. The results showed that the pNSR32/PCL/Gt scaffold possessed larger average fiber diameters, wider fiber diameter distribution and faster degradation rate than that of pNSR32/PCL and PCL scaffolds. The addition of pNSR32 and Gt had little influence on the hemolysis and plasma re-calcification time, but prolonged kinetic clotting time and reduced the platelet adhesion. The Il-6 and Tnf-alpha mRNA expression levels were up-regulated in macrophages seeded on the PCL and pNSR32/PCL scaffolds. The lowest release of IL-6 and TNF-alpha appeared in the pNSR32/PCL/Gt scaffold. Histological results revealed that the PCL and pNSR32/PCL scaffolds elicited severe host tissue responses after implantation, while prominent ingrowth of host cells were observed in the pNSR32/PCL and pNSR32/PCL/Gt scaffolds. The comet assay and bone marrow micronucleus test demonstrated that the pNSR32/PCL/Gt scaffold did not increase the frequency of DNA damage or bone marrow micronucleus. In short, this study confirmed that the pNSR32/PCL/Gt scaffold exhibited better blood and tissue compatibility than pNSR32/PCL and PCL scaffolds. No induction of genotoxicity and inflammatory factor releases makes the pNSR32/PCL/Gt scaffold a good candidate for engineering small diameter vascular tissue. (C) 2017 Published by Elsevier B.V.
机译:证明重组蜘蛛丝蛋白(PNSR32)和明胶(GT)增强了Electur纺器PNSR32 / PCL / GT支架的细胞相容性。然而,其潜在的促炎效应和与组织和血液的相互作用是未知的。在该研究中,评估了物理化学性质和体外和体内这种支架的生物相容性。结果表明,PNSR32 / PCL / GT支架具有较大的平均纤维直径,较宽的纤维直径分布和比PNSR32 / PCL和PCL支架的更快的降解速率。添加PNSR32和GT对溶血和血浆重新钙化时间几乎没有影响,但延长动力学凝血时间并降低了血小板粘附。在PCL和PNSR32 / PCL支架上接种的巨噬细胞上调节IL-6和TNF-αmRNA表达水平。 IL-6和TNF-α的最低释放出现在PNSR32 / PCL / GT支架中。组织学结果表明,PCL和PNSR32 / PCL支架在植入后引发严重宿主组织反应,而在PNSR32 / PCL和PNSR32 / PCL / GT支架中观察到宿主细胞的突出环境。 COMET测定和骨髓微核试验证明PNSR32 / PCL / GT支架没有增加DNA损伤或骨髓微核的频率。简而言之,该研究证实,PNSR32 / PCL / GT支架表现出比PNSR32 / PCL和PCL支架的更好的血液和组织相容性。无诱导遗传毒性和炎症因子释放使得PNSR32 / PCL / GT支架是工程小直径血管组织的良好候选者。 (c)2017年由Elsevier B.V发布。

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