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首页> 外文期刊>Macromolecular Chemistry and Physics >Biomimetic Route to Calcium Phosphate Coated Polymeric Nanoparticles: Influence of Different Functional Groups and pH
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Biomimetic Route to Calcium Phosphate Coated Polymeric Nanoparticles: Influence of Different Functional Groups and pH

机译:仿生途径磷酸钙包覆的聚合物纳米颗粒:不同官能团和pH的影响

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摘要

The controlled synthesis of organic–inorganic hybrid particles with selective morphology using polymeric nanoparticles as templates offers an effective biomimetic route to design composite materials with interesting properties for various potential applications. In this study, the formation of hybrid particles via the bio-inspired mineralization of calcium phosphate (CaP) on the surface of different surface-functionalized polymeric nanoparticles is reported. The versatile miniemulsion polymerization is used to prepare different surface functionalized nanoparticles with covalently bound carboxylic acid and phosphonic acid surface-functionalities. Functional comonomers with varying hydrophilicity like acrylic acid (AA), vinylphosphonic acid (VPA), and vinylbenzylphosphonic acid (VBPA) are employed for the copolymerization with styrene. The influence of different functional groups at different pH on the crystal phase and morphology of the calcium phosphate phase in the hybrid nanoparticles is analyzed in detail by using scanning electron microscopy (SEM), transmission electron microscopy (TEM), and electron as well as X-ray diffraction (ED and XRD) techniques. The calcium ion binding affinity of different surface functional groups at varying loading conditions is studied using calcium ion selective electrode to shed light on the mineralization kinetics as well as on the interfacial chemistry involved between the complexing ions and the functional groups on the particle surface. The CaP/polymer hybrid particles with well-defined crystal phases and morphologies offering varying surface topographies are interesting candidates for cell adhesion and proliferation studies for potential tissue engineering applications. They could be used as bone fillers, building blocks for the nucleation, and the growth of new bone material or implant coatings to reduce the immune response.
机译:以聚合物纳米颗粒为模板的具有选择性形态的有机-无机杂化颗粒的受控合成,为设计具有有趣特性的复合材料提供了有效的仿生途径,可用于各种潜在应用。在这项研究中,报道了通过生物激发矿化磷酸钙(CaP)在不同表面功能化的聚合物纳米颗粒表面上形成杂化颗粒。通用的微乳液聚合用于制备具有共价键合的羧酸和膦酸表面官能度的不同表面官能化纳米颗粒。具有不同亲水性的功能性共聚单体(例如丙烯酸(AA),乙烯基膦酸(VPA)和乙烯基苄基膦酸(VBPA))用于与苯乙烯共聚。通过使用扫描电子显微镜(SEM),透射电子显微镜(TEM)和电子以及X,详细分析了不同pH下不同官能团对杂化纳米颗粒中结晶相和磷酸钙相形态的影响。射线衍射(ED和XRD)技术。使用钙离子选择性电极研究了不同表面官能团在不同负载条件下的钙离子结合亲和力,以揭示矿化动力学以及络合离子与颗粒表面官能团之间的界面化学。 CaP /聚合物杂化颗粒具有明确的晶相和形态,可提供不同的表面形貌,是潜在的组织工程应用中细胞粘附和增殖研究的有趣候选对象。它们可以用作骨填充剂,成核的基础材料以及新骨材料或植入物涂层的生长,以降低免疫反应。

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