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首页> 外文期刊>Biofabrication >Development of novel silk fibroin/polyvinyl alcohol/sol-gel bioactive glass composite matrix by modified layer by layer electrospinning method for bone tissue construct generation
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Development of novel silk fibroin/polyvinyl alcohol/sol-gel bioactive glass composite matrix by modified layer by layer electrospinning method for bone tissue construct generation

机译:通过层静电纺丝法通过改性层进行新型丝丝素/聚乙烯醇/溶胶 - 凝胶生物活性玻璃复合基质骨组织构建一代

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摘要

The worldwide occurrence of bone tissue related defects as well as diseases and lack of successful perpetual cure has attracted attention and accelerated exploration of composite scaffolding material with superior bioactivity, osteoinductivity and osteoconductivity properties. Among such biomaterials, silk fibroin and bioglass composite attained special emphasis to develop tissue engineered construct with a hierarchical structure ranging from nano to microscale thereby mimicking bone tissue extracellular matrix. In the present study, a bilayer deposition of natural biopolymer (silk fibroin) and synthetic polymer (polyvinyl alcohol) solution with 58s bioactive glass sol was done by free liquid surface electrospinning and further stabilized through ethanol washing to fabricate novel nanofibrous composite scaffold. The fabricated composite scaffold possesses superior stiffness, hydrophilicity, bioactivity and superior osteogenic potential. The scaffolds were characterized for its fiber diameter distribution, hydrophilicity, tensile strength and apatite forming ability. Field emission scanning electron microscope and transmission electron microscope analysis demonstrate the apatite like particle formation over the scaffold after treatment with simulated body fluid, which improved osteogenicity of the developed scaffold. The biocompatibility, biomineralization and osteogenic potential of composite scaffold were evaluated by cell culture study using cord blood derived mesenchymal stem cells, proving that the developed composite scaffold is biocompatible and possess excellent osteogenic potential for neo bone tissue regeneration. Thus, the developed nanobiocomposite scaffold has been proven to be potential for developing bone tissue grafts for future clinical applications.
机译:全球骨组织相关缺陷以及疾病和缺乏成功的永久性治疗引起了对复合脚手架材料的关注和加速探索,具有优异的生物活性,骨诱导性和骨导电性能。在这种生物材料中,丝素蛋白和生物胶囊复合材料达到特殊地强调,用从纳米到微观的分层结构形成组织工程化构造,从而模仿骨组织细胞外基质。在本研究中,通过游离液体表面静电素通过自由液面静电纺丝进行天然生物聚合物(丝绸纤维素)和合成聚合物(聚乙烯醇)溶液的双层沉积,并通过乙醇洗涤进一步稳定,以制造新的纳米纤维复合支架。制造的复合支架具有优异的刚度,亲水性,生物活性和优异的成骨潜力。支架的特征在于其纤维直径分布,亲水性,拉伸强度和磷灰石形成能力。场发射扫描电子显微镜和透射电子显微镜分析证明了用模拟体液处理后支架上的磷灰石,其在模拟体液中改善了发育支架的成骨。通过使用脐带血衍生的间充质干细胞的细胞培养研究评估复合支架的生物相容性,生物醛和成骨型潜力,证明了发育的复合支架是生物相容性的并且具有优异的新骨组织再生潜力。因此,已被证明发育的纳米纤维复合材料支架是发育未来临床应用的骨组织移植物的可能性。

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