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锶洗脱纳米纤维增强干细胞成骨作用以促进骨组织再生。

Strontium eluting nanofibers augment stem cell osteogenesis for bone tissue regeneration.

作者信息

Meka Sai Rama Krishna, Jain Shubham, Chatterjee Kaushik

机构信息

Department of Materials Engineering, Indian Institute of Science, Bangalore 560012, India.

Department of Materials Engineering, Indian Institute of Science, Bangalore 560012, India.

出版信息

Colloids Surf B Biointerfaces. 2016 Oct 1;146:649-56. doi: 10.1016/j.colsurfb.2016.07.012. Epub 2016 Jul 7.

Abstract

Strontium is known to offer a therapeutic benefit to osteoporotic patients by promoting bone formation. Thus, toward engineering scaffolds for bone tissue regeneration we have prepared polymer nanocomposite scaffolds by electrospinning. Strontium carbonate nanoparticles (nSrCO3) were added to poly(ε-caprolactone) (PCL) at 10 and 20wt% to develop nanocomposite fibrous scaffolds (PCL/SrC10 and PCL/SrC20) with fiber diameter in the range of 300-500nm. Incorporation of nSrCO3 decreased crystallinity and the elastic modulus of PCL. The composite scaffolds released Sr(2+) ions with up to 65ppm in 4days from the PCL/SrC20 scaffolds. Cell studies confirmed that the composite scaffold with 20% nSrCO3 enhanced proliferation of human mesenchymal stem cells in vitro. There was marked increase in mineral deposition up to four folds in PCL/SrC20 suggesting enhanced osteogenesis. This was corroborated by increased mRNA and protein expression of various osteogenic markers such as BMP-2, Osterix and Runx2 in the PCL/SrC20 fibers. Thus, incorporation of nSrCO3 in polymer scaffolds is a promising strategy for bone tissue engineering as an alternative to the use of labile growth factors to impart bioactivity to polymer scaffolds.

摘要

已知锶通过促进骨形成对骨质疏松患者具有治疗益处。因此,为了构建用于骨组织再生的支架,我们通过静电纺丝制备了聚合物纳米复合支架。将碳酸锶纳米颗粒(nSrCO3)以10wt%和20wt%的比例添加到聚(ε-己内酯)(PCL)中,以制备纤维直径在300 - 500nm范围内的纳米复合纤维支架(PCL/SrC10和PCL/SrC20)。nSrCO3的加入降低了PCL的结晶度和弹性模量。复合支架在4天内从PCL/SrC20支架中释放出高达65ppm的Sr(2+)离子。细胞研究证实,含有20% nSrCO3的复合支架在体外增强了人间充质干细胞的增殖。PCL/SrC20中矿物质沉积显著增加了四倍,表明成骨作用增强。PCL/SrC20纤维中各种成骨标记物如BMP - 2、Osterix和Runx2的mRNA和蛋白质表达增加,证实了这一点。因此,在聚合物支架中加入nSrCO3是骨组织工程的一种有前景的策略,可替代使用不稳定的生长因子来赋予聚合物支架生物活性。

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