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首页> 外文期刊>Journal of biomedical materials research, Part A >Fabrication of multilayered electrospun poly(lactic-co-glycolic acid)/polyvinyl pyrrolidone plus poly(ethylene oxide) scaffolds and biocompatibility evaluation
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Fabrication of multilayered electrospun poly(lactic-co-glycolic acid)/polyvinyl pyrrolidone plus poly(ethylene oxide) scaffolds and biocompatibility evaluation

机译:多层静电纺织聚(乳酸 - 共乙醇酸)/聚乙烯吡咯烷酮加上聚(环氧乙烷)支架和生物相容性评价的制备

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Poly(lactic-co-glycolic acid)/polyvinyl pyrrolidone + poly(ethylene oxide) [PLGA/(PVP + PEO)] scaffolds with different polymer concentrations were fabricated using multilayered electrospinning, and their physicochemical properties and biocompatibility were examined to screen for scaffolds with excellent performance in tissue engineering (TE). PLGA solution (15% w/v) was used as the bottom solution, and a mixed solution of 12% w/v PVP + PEO was applied as the surface layer solution. The mass ratios of PVP vs. PEO in each 10 ml surface layer mixed solution were 1.08 g: 0.12 g; 0.96 g: 0.24 g; and 0.84 g: 0.36 g. Compared to the conventional electrospinning method used to fabricate the pure PVP + PEO (0.96 g: 0.24 g, Group A) scaffold and pure PLGA (Group E) scaffold, the multilayer electrospinning technique of alternating sprays of the bottom layer solution and the surface layer solution was adopted to fabricate multilayer nanofiber scaffolds, including PLGA/(PVP + PEO) (1.08 g: 0.12 g, Group B), PLGA/(PVP + PEO) (0.96 g: 0.24 g, Group C), and PLGA/(PVP + PEO) (0.84 g: 0.36 g, Group D). The morphology and characteristics of the five scaffolds were analyzed, and the biocompatibilities of the cell-scaffold composites were assessed through methods including Cell Counting Kit-8 (CCK8) analysis, 4 ',6-diamidino-2-phenylindole (DAPI) staining, and scanning electron microscopy. Therefore, with a PVP-to-PEO mass ratio of 0.96 g: 0.24 g, an optimal multilayer nanofiber scaffold was fabricated by the multilayer electrospinning technique. The excellent biocompatibility and mechanical properties of the scaffold were confirmed by in vitro experiments, which demonstrated the scaffold's promising application potential in the field of TE.
机译:采用多层静电纺丝技术制备了不同聚合物浓度的聚乳酸-羟基乙酸/聚乙烯吡咯烷酮+聚环氧乙烷[PLGA/(PVP+PEO)]支架,并对其理化性质和生物相容性进行了研究,以筛选出在组织工程(TE)中具有优异性能的支架。PLGA溶液(15%w/v)用作底层溶液,12%w/v PVP+PEO的混合溶液用作表层溶液。每10ml表层混合溶液中PVP与PEO的质量比为1.08g:0.12g;0.96克:0.24克;和0.84 g:0.36 g。与传统的静电纺丝方法用于制备纯PVP+PEO(0.96 g:0.24 g,A组)支架和纯PLGA(E组)支架相比,采用了交替喷射底层溶液和表层溶液的多层静电纺丝技术来制备多层纳米纤维支架,包括PLGA/(PVP+PEO)(1.08g:0.12g,B组)、PLGA/(PVP+PEO)(0.96g:0.24g,C组)和PLGA/(PVP+PEO)(0.84g:0.36g,D组)。分析五种支架的形态和特征,并通过细胞计数试剂盒-8(CCK8)分析、4',6-二氨基-2-苯基吲哚(DAPI)染色和扫描电镜等方法评估细胞支架复合材料的生物相容性。因此,在PVP与PEO质量比为0.96g:0.24g的情况下,通过多层静电纺丝技术制备了最佳的多层纳米纤维支架。体外实验证实了该支架具有良好的生物相容性和力学性能,表明该支架在生物工程领域具有广阔的应用前景。

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