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首页> 外文期刊>Journal of biomedical materials research, Part A >Fabrication of in situ in situ polymerized poly(butylene succinate‐co‐ethylene terephthalate)/hydroxyapatite nanocomposite to fibrous scaffolds for enhancement of osteogenesis
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Fabrication of in situ in situ polymerized poly(butylene succinate‐co‐ethylene terephthalate)/hydroxyapatite nanocomposite to fibrous scaffolds for enhancement of osteogenesis

机译:原位的原位制备原位聚合聚(丁二烷酸酯 - 共乙二醇酯)/羟基磷灰石纳米复合材料与纤维支架,用于增强骨发生

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Abstract A combination of elastic poly(butylene succinate‐co‐ethylene terephthalate) and rigid nano‐hydroxyapatite were used to prepare an in‐situ synthesized nanocomposite mimicing bone structure. The microstructure, morphology, and dispersion of nanoparticles in the nanocomposites were studied using proton nuclear magnetic resonance ( 1 HNMR), scanning electron microscope (SEM), and transmission electron microscopy (TEM), respectively. Then, electrospinning method was used to produce nanofiber matrix with lowest fiber diameter. Presence of chemical bonds among nanoparticles and polymer leads to the excellent particle dispersion and solution phase stability. SEM results show that continuous and bead‐free nanofibers were produced and incorporating nanoparticle slightly increased fibers diameter. Elastic modulus, tensile strength, crystallinity, hydrophilicity and hydrolytic degradability of resulted nanofiber increased with nanoparticle but elongation at break slightly decreased. Proliferation and osteogenic differentiation of human mesenchymal stem cell significantly improved by introducing nanoparticle which indicate that electrospun nanofibers could be used as scaffolds for bone tissue engineering. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2622–2631, 2017.
机译:摘要采用弹性聚(丁二酸丁酯 - 共乙烯酸乙酯)和刚性纳米 - 羟基磷灰石的组合制备原位合成纳米复合材料模拟骨结构。使用质子核磁共振(1HNMR),扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了纳米颗粒中纳米颗粒中纳米颗粒中纳米颗粒的微观结构,形态和分散。然后,静电纺丝方法用于生产具有最低纤维直径的纳米纤维基质。纳米颗粒和聚合物中的化学键键导致优异的颗粒分散体和溶液相位稳定性。 SEM结果表明,生产连续和无胎珠纳米纤维并掺入纳米颗粒略微增加的纤维直径。用纳米颗粒增加了所得纳米纤维的弹性模量,拉伸强度,结晶度,亲水性和水解可降解性,但断裂伸长率略微降低。通过引入纳米颗粒显着改善人间充质干细胞的增殖和成骨分化,表明电纺纳米纤维可以用作骨组织工程的支架。还2017年Wiley期刊,Inc。J生物保罗第A:105A:2622-2631,2017。

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