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载抗菌药物β-磷酸三钙粉末的合成与表征及其在骨组织工程中的应用。

Synthesis and characterization of antibacterial drug loaded β-tricalcium phosphate powders for bone engineering applications.

机构信息

Center for Nanotechnology and Biomaterials Application and Research (NBUAM), Marmara University, 34722, Istanbul, Turkey.

Department of Metallurgical and Materials Engineering, Faculty of Technology, Marmara University, 34722, Istanbul, Turkey.

出版信息

J Mater Sci Mater Med. 2020 Jan 21;31(2):16. doi: 10.1007/s10856-019-6356-1.

Abstract

Powders of β-tricalcium phosphate [β-TCP, β-Ca(PO)] and composite powders of β-TCP and polyvinyl alcohol (PVA) were synthesized by using wet precipitation methods. First, the conditions for the preparation of single phase β-TCP have been delineated. In the co-precipitation procedure, calcium nitrate and diammonium hydrogen phosphate were used as calcium and phosphorous precursors, respectively. The pH of the system was varied in the range 7-11 by adding designed amounts of ammonia solution. The filtered cakes were desiccated at 80 °C and subsequently calcined at different temperatures in the range between 700-1100 °C. Later on, rifampicin form II was used to produce drug-loaded β-TCP and PVA/β-TCP powders. All the synthesized materials have been characterized from morphological (by scanning electron microscopy) and structural-chemical (by X-ray diffraction and Fourier transform infrared spectroscopy) point of view. The drug loading capacity of the selected pure β-TCP powder has been assessed. The biological performance (cytocompatibility in fibroblast cell culture and antibacterial efficacy against Escherichia coli and Staphylococcus aureus) has been tested with promising results. Application perspectives of the designed drug-bioceramic-polymer blends are advanced and discussed.

摘要

β-磷酸三钙(β-TCP,β-Ca(PO))粉末和 β-TCP 与聚乙烯醇(PVA)的复合粉末通过湿沉淀法合成。首先,阐述了制备单相β-TCP 的条件。在共沉淀过程中,分别使用硝酸钙和磷酸二氢铵作为钙和磷的前体。通过添加设计量的氨水溶液将体系的 pH 值在 7-11 范围内变化。过滤后的饼在 80°C 下干燥,然后在 700-1100°C 之间的不同温度下煅烧。之后,使用利福平 II 型来制备载药β-TCP 和 PVA/β-TCP 粉末。所有合成的材料都从形态学(通过扫描电子显微镜)和结构化学(通过 X 射线衍射和傅里叶变换红外光谱)的角度进行了表征。评估了选定的纯β-TCP 粉末的药物负载能力。通过成纤维细胞培养的细胞相容性和对大肠杆菌和金黄色葡萄球菌的抗菌功效测试,取得了有前景的生物性能结果。设计的药物-生物陶瓷-聚合物混合物的应用前景得到了提出和讨论。

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