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Biomimetic mineralization of calcium phosphate on a functionalized porous silicon carbide biomaterial

机译:功能化多孔碳化硅生物材料上磷酸钙的仿生矿化

摘要

Porous biomorphic silicon carbide (bioSiC) is a structurally realistic, high-strength, and biocompatible material which is promising for application in load-bearing implants. The deposition of an osteoconductive coating is essential for further improvement of its integration with the surrounding tissue. A new strategy towards biomimetic calcium phosphate coatings on bioSiC is described. X-ray photoelectron spectroscopy (XPS) analysis shows that using 10-undecenoic acid methyl ester a covalently bound monolayer can be synthesized on the surface of the bioSiC. After hydrolysis it exposes carboxylic acid groups that promote the selective nucleation and growth of a very well-defined crystalline layer of calcium phosphate. The resulting calcium phosphate coating is characterized by X-ray diffraction and electron microscopy techniques. Further, ion beam imaging is employed to quantify the mineral deposition meanwhile, three-dimensional dual-beam imaging (FIB/SEM) is used to visualize the bioSiC/mineral interface. The monolayer is show to actively induce the nucleation of a well-defined and highly crystalline mixed octacalcium phosphate/hydroxyapatite (OCP/HAP) coating on implantable bioSiC substrates with complex geometry. The mild biomimetic procedure, in principle, allows for the inclusion of bioactive compounds that aid in tissue regeneration. Moreover, the mixed OCP/HAP phase will have a higher solubility compared to HAP, which, in combination with its porous structure, is expected to render the coating more reabsorbable than standard HAP coatings. © 2012 Wiley-VCH Verlag GmbH& Co. KGaA, Weinheim.
机译:多孔生物形态碳化硅(bioSiC)是一种结构逼真的,高强度且生物相容的材料,有望在承重植入物中应用。骨传导涂层的沉积对于进一步改善其与周围组织的整合至关重要。描述了一种在bioSiC上仿生磷酸钙涂层的新策略。 X射线光电子能谱(XPS)分析表明,使用10-十一碳烯酸甲酯可以在bioSiC的表面上合成共价键合的单层膜。水解后,它会暴露出羧酸基团,从而促进磷酸钙非常明确的结晶层的选择性成核和生长。所得的磷酸钙涂层通过X射线衍射和电子显微镜技术表征。此外,离子束成像用于量化矿物沉积,同时三维双束成像(FIB / SEM)用于可视化bioSiC /矿物界面。该单层显示出可在具有复杂几何形状的可植入bioSiC基底上积极诱导定义明确且高度结晶的混合磷酸八钙/羟基磷灰石(OCP / HAP)涂层的形核。原则上,温和的仿生程序允许包含有助于组织再生的生物活性化合物。此外,与HAP相比,OCP / HAP混合相具有更高的溶解度,结合其多孔结构,有望使该涂层比标准HAP涂层更具吸收性。 ©2012 Wiley-VCH Verlag GmbH&Co. KGaA,Weinheim。

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