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Preparation of antibacterial degummed silk fiber/nano-hydroxyapatite/polylactic acid composite scaffold by degummed silk fiber loaded silver nanoparticles

机译:用脱胶丝纤维负载银纳米颗粒制备抗菌脱胶纤维/纳米羟基磷灰石/聚乳酸复合支架

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摘要

In this study, an antibacterial degummed silk fiber (ADSF)nano-hydroxyapatite/polylactic acid (ADSF/nHA/PLA) porous scaffold with antibacterial properties was prepared by using degummed silk fiber (DSF) loaded with silver nano-particles (Ag NPs) as a reinforcing material. In the experiment, ADSF and nHA were used as the main variables to investigate the effect of the change of the composition ratio on the performance of the composite scaffold, and a composite scaffold with excellent performance was obtained. Firstly, the DSFs were treated with dopamine (DA) and the silver ions were reduced to Ag NPs using the strong reducibility of polydopamine (PDA) to prepare ADSF loaded with Ag NPs. Finally, ADSF/nHA/PLA composite scaffolds with antibacterial properties were prepared using ADSF as a reinforcing material. In addition, samples were found to have good mineralization capacity in in vitro mineralization experiments. At the same time, in cell culture and antibacterial experiments, ADSF/nHA/PLA scaffolds were found to have good bioactivity, biocompatibility and antibacterial properties. All the results showed that the Ag NPs loaded DSF improved the performance of the nHA/PLA composite scaffold, while the ADSF/nHA/PLA had good bioactivity and antibacterial properties, making the antibacterial ADSF/nHA/PLA composite scaffold has a great potential for bone tissue engineering.
机译:在该研究中,通过使用脱胶的丝纤维(DSF)用含有银纳米颗粒(Ag NPS)的脱胶丝纤维制备具有抗菌性质的抗菌脱胶丝纤维(ADSF)纳米羟基磷灰石/聚乳酸(ADSF / NHA / PLA)多孔支架作为增强材料。在实验中,ADSF和NHA被用作主要变量,以研究组合物比变化对复合支架的性能的影响,并获得具有优异性能的复合支架。首先,使用多巴胺(DA)处理DSF,并使用多碳胺(PDA)的强的重复性将银离子降低至Ag NPS,以制备装有Ag NPS的ADSF。最后,使用ADSF作为增强材料制备具有抗菌性能的ADSF / NHA / PLA复合支架。此外,发现样品在体外矿化实验中具有良好的矿化能力。同时,在细胞培养和抗菌实验中,发现ADSF / NHA / PLA支架具有良好的生物活性,生物相容性和抗菌性。所有结果表明,AG NPS加载的DSF改善了NHA / PLA复合支架的性能,而ADSF / NHA / PLA具有良好的生物活性和抗菌性能,使抗菌ADSF / NHA / PLA复合脚手架具有很大的潜力骨组织工程。

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