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首页> 外文期刊>Journal of biomedical materials research, Part A >Bioactive TiO2 fiber films prepared by electrospinning method
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Bioactive TiO2 fiber films prepared by electrospinning method

机译:静电纺丝法制备生物活性TiO2纤维膜

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Electrospining method was used to prepare bioactive TiO2 fibers films in this study. The acetic acid/ethanol/tetrabutyl titanate/polyvinylpyrrolidone (PVP) solvent system was used as precursor for the electrospining. The TiO2 fiber structures (including its fiber diameter, morphology, and phase composition) could be controlled by changing feeding rate, PVP concentration and sinter temperature. The fiber films were subjected to simulated body fluid soaking experiments and MG63 cells culture experiments to study their bioactivity. According to the X-ray diffraction and MTT assay results, the fiber containing with anatase showed better apatite formation ability than that without anatase at the early stage, while cell proliferated on anatase-rutile TiO2 fiber was better than that on other samples (p < 0.05).Some string beads in the fiber were beneficial for apatite formation, while the cell proliferated best on the fiber film without string beads (p < 0.05). The fiber with a diameter of 200 nm had the best apatite formation ability and osteoblast compatibility (p < 0.05). The results showed that the TiO2 fiber film structure had great influence on its bioactivity. It indicated that the electronspining method is an effective way to prepare bioactive titania fiber films, and it is possible to control the structure of the films in the spinning process to optimize the bioactivity of TiO2 fiber. (C) 2012 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 101A:6474, 2013.
机译:本研究采用静电纺丝法制备生物活性TiO2纤维薄膜。乙酸/乙醇/钛酸四丁酯/聚乙烯吡咯烷酮(PVP)溶剂系统用作静电纺丝的前体。可以通过改变进料速度,PVP浓度和烧结温度来控制TiO2纤维的结构(包括其纤维直径,形态和相组成)。对纤维膜进行模拟的体液浸泡实验和MG63细胞培养实验,以研究其生物活性。根据X射线衍射和MTT分析结果,含有锐钛矿的纤维在早期阶段显示出比没有锐钛矿的纤维更好的磷灰石形成能力,而在锐钛金红石型TiO2纤维上的细胞增殖优于其他样品(p < 0.05)。纤维中的一些串珠有利于磷灰石的形成,而在没有串珠的情况下,细胞在纤维膜上的增殖最佳(p <0.05)。直径为200 nm的纤维具有最佳的磷灰石形成能力和成骨细胞相容性(p <0.05)。结果表明,TiO2纤维膜结构对其生物活性有很大影响。结果表明,电子纺丝法是制备生物活性二氧化钛纤维薄膜的有效方法,并且有可能在纺丝过程中控制薄膜的结构以优化TiO2纤维的生物活性。 (C)2012 Wiley Periodicals,Inc.J Biomed Mater Res Part A:101A:6474,2013。

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