首页> 外文期刊>Journal of nanoscience and nanotechnology >Synthesis and Characterization of Calcium Phosphate Ceramic/(Poly(vinyl alcohol)-Polycaprolactone) Bilayer Nanocomposites-A Bone Tissue Regeneration Scaffold
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Synthesis and Characterization of Calcium Phosphate Ceramic/(Poly(vinyl alcohol)-Polycaprolactone) Bilayer Nanocomposites-A Bone Tissue Regeneration Scaffold

机译:磷酸钙陶瓷/(聚(乙烯醇) - 聚己内酯)双层纳米复合材料的合成与表征 - 骨组织再生支架

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摘要

beta Tricalcium phosphate ceramic was used to reinforce nanofibers in composite mats produced via electrospinning of poly(vinyl alcohol) (PVA), polycaprolactone (PCL) and (PVA: PCL) bilayers. The role of TCP ceramic on morphology of nanocomposites, crystalline structure, functional groups and thermal behaviour of nanocomposites were characterized by SEM, EDAX, XRD, FTIR and DSC analysis. Ultrathin cross-sections of the obtained nanocomposites were morphologically investigated with SEM and all fabricated composites consisted of fibers with average fiber diameter (AFD) around 100 nm except PCL-TCP fibers having AFD in the range of 608 nm. XRD profile presented the main peaks of beta-TCP (JCPDS 090169 and JCPDS 70-2065). The characteristic absorption bands of TCP were also identified by FTIR in all the composites. The thermal stability was enhanced after adding TCP filler particles in all the polymer composites. The porosity of PCL-TCP was found around 63% and (PVA-PCL: TCP) composite was found to be 58%. The biocompatibility of the (PVA-PCL: TCP) composite scaffold has also been investigated by culturing MG-63 osteoblast cells on it; primary results showed that the cells adhered and proliferated well on the composite scaffold.
机译:β-磷酸钙陶瓷用于加强通过电(乙烯醇)(PVA),聚己内酯(PCL)和(PVA:PCL)双层的静电纺丝生产的复合垫中的纳米纤维。 TCP陶瓷对纳米复合材料,晶体结构,官能团和纳米复合材料的热行为的作用的作用进行了SEM,eDAX,XRD,FTIR和DSC分析。通过SEM和所有制造的复合材料在形态地研究所得纳米复合材料的超薄横截​​面,除了在608nm的AFD中的PCL-TCP纤维之外,所有制造的复合材料由具有约100nm的平均纤维直径(AFD)。 XRD配置文件呈现了Beta-TCP的主要峰(JCPDS 090169和JCPDS 70-2065)。在所有复合材料中也通过FTIR鉴定TCP的特征吸收带。在所有聚合物复合材料中加入TCP填充颗粒后,增强了热稳定性。 PCL-TCP的孔隙率为63%左右,(PVA-PCL:TCP)复合物被发现为58%。通过培养Mg-63成骨细胞对其进行研究,还研究了(PVA-PCL:TCP)复合支架的生物相容性;主要结果表明,细胞在复合支架上粘附并增殖良好。

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