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首页> 外文期刊>Materials science & engineering. C, Biomimetic and supramolecular systems >Probing molecular interactions in bone biomaterials: Through molecular dynamics and Fourier transform infrared spectroscopy
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Probing molecular interactions in bone biomaterials: Through molecular dynamics and Fourier transform infrared spectroscopy

机译:探索骨骼生物材料中的分子相互作用:通过分子动力学和傅立叶变换红外光谱

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Polymer-hydroxyapatite (HAP) composites are widely investigated for their potential use as bone replacement materials. The molecular interactions at mineral polymer interface are known to have significant role of mechanical response of the composite system. Modeling interactions between such dissimilar molecules using molecular dynamics (MD) is an area of current interest. Molecular dynamics studies require potential function or force field parameters. Some force fields are described in literature that represents the structure of hydroxyapatite reasonably well. Yet, the applicability of these force fields for studying the interaction between dissimilar materials (such as mineral and polymer) is limited, as there is no accurate representation of polymer in these force fields. We have obtained the parameters of consistent valence force field (CVFF) for monoclinic hydroxyapatite. Validation of parameters was done by comparing the computationally obtained unit cell parameters, vibrational spectra and atomic distances with XRD and FTIR experiments. Using the obtained parameters of HAP, and available parameters of polymer (polyacrylic acid), interaction study was performed with MD simulations. The MD simulations showed that several hydrogen bonds may form between HAP and polyacrylic acid depending upon the exposed surface of HAP. Also there are some favourable planes of HAP where polyacrylic acid is most likely to attach. We have also simulated the mineralization of HAP using a "synthetic biomineralization". These modeling studies are supported by photoacoustic spectroscopy experiments on both porous and non porous composite samples for potential joint replacement and bone tissue engineering applications.
机译:聚合物-羟基磷灰石(HAP)复合材料作为骨替代材料的潜在用途已得到广泛研究。已知矿物聚合物界面处的分子相互作用对复合系统的机械响应具有重要作用。使用分子动力学(MD)来模拟这种异种分子之间的相互作用是当前关注的领域。分子动力学研究需要潜在的功能或力场参数。文献中描述了一些力场,这些力场很好地代表了羟基磷灰石的结构。但是,这些力场在研究异种材料(例如矿物和聚合物)之间的相互作用方面的适用性受到限制,因为在这些力场中没有精确的聚合物表示。我们已经获得了单斜羟基磷灰石的一致价场(CVFF)的参数。通过将通过计算获得的晶胞参数,振动光谱和原子距离与XRD和FTIR实验进行比较,对参数进行验证。使用获得的HAP参数和聚合物(聚丙烯酸)的可用参数,通过MD模拟进行相互作用研究。 MD模拟表明,取决于HAP的暴露表面,HAP和聚丙烯酸之间可能形成几个氢键。也有一些HAP有利的平面,聚丙烯酸最可能附着在该平面上。我们还使用“合成生物矿化”模拟了HAP的矿化。这些模型研究得到了对多孔和非多孔复合材料样品进行光声光谱实验的支持,可用于潜在的关节置换和骨组织工程应用。

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