首页> 外文期刊>ACS Omega >Synergistic Effect of Porous Hydroxyapatite Scaffolds Combined with Bioactive Glass/Poly(lactic-co-glycolic acid) Composite Fibers Promotes Osteogenic Activity and Bioactivity
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Synergistic Effect of Porous Hydroxyapatite Scaffolds Combined with Bioactive Glass/Poly(lactic-co-glycolic acid) Composite Fibers Promotes Osteogenic Activity and Bioactivity

机译:多孔羟基磷灰石支架与生物活性玻璃/聚(乳酸 - 共乙醇酸)复合纤维联合的协同作用促进了骨质发生活性和生物活性

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Porous hydroxyapatite (HAp) scaffolds are commonly used for hard tissue regeneration because of their biocompatibility and osteoconduction properties, but they are limited in terms of bioactivity and osteoinduction. This study investigated the fabrication of HAp scaffolds coated with poly(lactic-co-glycolic acid)/45S5 bioactive glass (PLGA/BG) composite microfibers using the sponge replica method and electrospinning process for improved bioactivity and osteoinductivity during osteogenesis. Characterization of the HAp/PLGA/BG (HPB) scaffold was carried out by examining morphology and ion release. The biological evaluation of HPB scaffolds was carried out by assessing cytotoxicity, cell proliferation, and cell differentiation using MC3T3-E1 preosteoblasts. The results showed that all HPB scaffolds exhibited a high porosity of 89.2% and had porous structures coated with a layer of composite containing BG ions (Si–Ca–Na–P). These scaffolds enabled controlled release of Si, Ca, Na, and P ions for up to 28 days. There was no significant difference in cytotoxicity between the scaffolds. Cell proliferation on HPB scaffolds was increased from day 1 to 3. In addition, cell viability on the HPB scaffolds was confirmed with LIVE/DEAD assay. Cell differentiation, as shown by alkaline phosphatase activity and western blot analyses, indicated that HPB scaffolds with 20 and 30 min of coating induced higher levels of osteogenesis-related markers compared to other scaffolds. Furthermore, immunocytochemistry indicated osteopontin expression. Alizarin red staining indicated that HPB scaffolds with 20 min of coating were more effective than the HAp scaffold in terms of mineralization. In conclusion, HAp scaffolds coated with PLGA/BG for 20 min are promising materials for osteogenic activity and may be a potential bone substitute for tissue engineering.
机译:多孔羟基磷灰石(HAP)支架通常用于硬组织再生,因为它们的生物相容性和骨质化性能,但它们是有限的生物活性和骨液。本研究研究了使用海绵复制品方法和静电纺丝方法的聚(乳酸二乙醇酸)/ 45S5生物活性玻璃(PLGA / BG)复合微纤维的HAP支架的制备,用于改善骨肉内的生物活性和骨诱导性。通过检查形态和离子释放来进行HAP / PLGA / BG(HPB)支架的表征。通过评估使用MC3T3-E1预卵细胞来评估细胞毒性,细胞增殖和细胞分化来进行HPB支架的生物学评价。结果表明,所有HPB支架都表现出89.2%的高孔隙率,并且具有涂覆含有Bg离子层的复合材料层的多孔结构(Si-Ca-Na-P)。这些支架使能释放Si,Ca,Na和P离子长达28天。支架之间的细胞毒性没有显着差异。 HPB支架上的细胞增殖从第1天增加。此外,HPB支架上的细胞活力用活/死导证实。通过碱性磷酸酶活性和Western印迹分析所示,细胞分化表明,与其他支架相比,HPB支架诱导了20和30分钟的涂层诱导较高水平的骨开发相关标志物。此外,免疫细胞化学表达骨桥蛋白表达。茜素红染色表明,在矿化方面,具有20分钟的涂层的HPB支架比Hap脚手架更有效。总之,涂有PLGA / BG 20分钟的HAP支架是对骨质发生活性的有希望的材料,并且可以是组织工程的潜在骨骼替代品。

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