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Integration Approach For Developing A High-performance Biointerface: Sequential Formation Of Hydroxyapatite And Calcium Carbonate By An Improved Alternate Soaking Process

机译:开发高性能生物界面的集成方法:通过改进的交替浸泡工艺依次形成羟基磷灰石和碳酸钙

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摘要

Biointerfaces are crucial for regulating biofunctions. An effective method of producing new biomaterials is surface modification, in particular, the hybrid organic-inorganic approach. In this paper, we propose a method for the sequential formation of hydroxyapatite and calcium carbonate on porous polyester membranes by using an improved alternate soaking process. The resulting hybrid membranes were characterized in terms of their calcium and phosphorus ion contents; further, their structure was analyzed by scanning electron microscopy (SEM), X-ray diffraction (XRD), and infrared spectroscopy (IR). As a typical biofunction, protein adsorption by these hybrid membranes was investigated. Sequential hydroxyapatite and calcium carbonate formation on the membranes was successfully achieved, and the total amounts of hydroxyapatite and calcium carbonate formed were precisely regulated by the preparative conditions. The SEM and XRD characterizations were verified by comparing with the IR results. The amount of adsorbed protein correlated well with not only the amount of hydroxyapatite formed but also the combined amounts of hydroxyapatite and calcium carbonate formed. The results indicate that the hybrid membranes can function as high-performance biointerfaces that are capable of loading biomolecules such as proteins.
机译:生物界面对于调节生物功能至关重要。生产新型生物材料的有效方法是表面改性,尤其是有机-无机混合法。在本文中,我们提出了一种通过使用改进的交替浸泡工艺在多孔聚酯膜上依次形成羟基磷灰石和碳酸钙的方法。用钙和磷离子含量表征所得的杂化膜。此外,通过扫描电子显微镜(SEM),X射线衍射(XRD)和红外光谱(IR)分析它们的结构。作为典型的生物功能,研究了这些杂化膜对蛋白质的吸附。成功实现了在膜上依次形成羟基磷灰石和碳酸钙,并且通过制备条件精确调节了形成的羟基磷灰石和碳酸钙的总量。 SEM和XRD表征与IR结果进行了比较。吸附的蛋白质的量不仅与所形成的羟基磷灰石的量很好地相关,而且与所形成的羟基磷灰石和碳酸钙的总量很好地相关。结果表明,杂化膜可以充当高性能的生物界面,能够加载蛋白质等生物分子。

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