首页> 外文期刊>Biologicals: Journal of the International Association of Biological Standardization >Poly(lactic-co-glycolic acid)(PLGA)/TiO2 nanotube bioactive composite as a novel scaffold for bone tissue engineering: In vitro and in vivo studies
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Poly(lactic-co-glycolic acid)(PLGA)/TiO2 nanotube bioactive composite as a novel scaffold for bone tissue engineering: In vitro and in vivo studies

机译:聚(乳酸二乙醇酸)(PLGA)/ TiO2纳米管生物活性复合材料作为骨组织工程的新型支架:体外和体内研究

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摘要

The aim of this study was to synthesize and characterize novel three-dimensional porous scaffolds made of poly (lactic-co-glycolic acid)/TiO2 nanotube (TNT) composite microspheres for bone tissue engineering applications. The incorporation of TNT greatly increases mechanical properties of PLGA/TNT microsphere-sintered scaffold. The experimental results exhibit that the PLGA/0.5 wt% TNT scaffold sintered at 100 degrees C for 3 h showed the best mechanical properties and a proper pore structure for tissue engineering. Biodegradation test ascertained that the weight of both PLGA and PLGA/PLGA/0.5 wt% TiO2 nanotube composites slightly reduced during the first 4 weeks following immersion in SBF solution. Moreover, the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) assay and alkaline phosphatase activity (ALP activity) results represent increased cell viability for PLGA/0.5%TNT composite scaffold in comparison to the control group. In vivo studies show the amount of bone formation for PLGA/TNT was approximately twice of pure PLGA. Vivid histologic images of the newly generated bone on the implants further supported our test results. Eventually, a mathematical model showed that both PLGA and PLGA/TNT scaffolds' mechanical properties follow an exponential trend with time as their degradation occurs. By a three-dimensional finite element model, a more monotonous distribution of stress was present in the scaffold due to the presence of TNT with a reduction in maximum stress on bone.
机译:该研究的目的是合成和表征由聚(乳酸二乙醇酸)/ TiO2纳米管(TNT)复合微球制成的新型三维多孔支架,用于骨组织工程应用。 TNT的掺入大大增加了PLGA / TNT微球烧结支架的机械性能。实验结果表明,在100摄氏度下烧结的PLGA / 0.5wt%TNT支架3小时显示了组织工程的最佳机械性能和适当的孔隙结构。生物降解试验确定PLGA和PLGA / PLGA / 0.5wt%TiO2纳米管复合材料在浸入SBF溶液后的前4周内略微降低。此外,3-(4,5-二甲基噻唑-2-基)-2,5-二苯基-2H-四溴呢溴(MTT)测定和碱性磷酸酶活性(ALP活性)结果表示PLGA / 0.5%TNT的增加的细胞活力复合脚手架与对照组相比。在体内研究表明,PLGA / TNT的骨形成量大约是纯PLGA的两倍。植入物上新生成的骨骼的生动组织学图像进一步支持了我们的测试结果。最终,数学模型表明,PLGA和PLGA / TNT支架的机械性能遵循指数趋势随着它们的降解而发生的时间。通过三维有限元模型,由于TNT的存在,在支架中存在更单调的应力分布,其在骨上的最大应力降低。

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