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一种用于生物医学应用的聚羟基丁酸酯-羟基磷灰石混合复合材料:制备、体外和体内研究

A hybrid PHB-hydroxyapatite composite for biomedical application: production, in vitro and in vivo investigation.

作者信息

Shishatskaya E I, Khlusov I A, Volova T G

机构信息

Institute of Biophysics of the Siberian Branch of the Russian Academy of Sciences, Akademgorodok, Krasnoyarsk 60036, Russia.

出版信息

J Biomater Sci Polym Ed. 2006;17(5):481-98. doi: 10.1163/156856206776986242.

Abstract

Samples of a hybrid composite of polyhydroxybutyrate (PHB), a biodegradable polyester, and hydroxyapatite (HA), with different PHB/HA ratios, have been prepared using mechanical-physical method. Electron microscopy, X-ray structure analysis and differential thermal analysis have been used to investigate the structure and physicochemical properties of the composite, depending on the PHB/HA ratio. The properties of the surface of the HA-loaded composite are significantly different from those of the pure polymer. As the HA percentage in the composite increases, free interface energy, the cohesive force, i.e., the strength of the adhesive bond between the composite surface and the water phase, and surface wettability increase. The HA percentage of the composite does not influence its melting temperature, but affects the temperature for the onset of decomposition: as the HA content increases from 0 to 10% (w/w), Td decreases from 260 degrees C to 225 degrees C. The degree of crystallinity of PHB/HA increases from 77% to 89% with an increase in the HA fraction from 10% to 50%. Functional properties of the composites have been investigated in vitro and in vivo. The best parameters of growth and differentiation of murine marrow osteoblasts are registered on PHB/HA samples containing 10% and 20% HA. In ectopic bone formation assay it has been proven that the hybrid PHB/HA composites can function as scaffolds and that bone tissue develops on their surface and in pores.

摘要

采用机械物理方法制备了聚羟基丁酸酯(PHB,一种可生物降解的聚酯)与羟基磷灰石(HA)的不同PHB/HA比例的杂化复合材料样品。利用电子显微镜、X射线结构分析和差示热分析来研究复合材料的结构和物理化学性质,这些性质取决于PHB/HA比例。负载HA的复合材料表面性质与纯聚合物表面性质显著不同。随着复合材料中HA百分比的增加,自由界面能、内聚力,即复合材料表面与水相之间的粘附键强度以及表面润湿性均增加。复合材料的HA百分比不影响其熔点,但会影响分解起始温度:随着HA含量从0增加到10%(w/w),Td从260℃降至225℃。随着HA含量从10%增加到50%,PHB/HA的结晶度从77%增加到89%。已在体外和体内研究了复合材料的功能特性。在含有10%和20%HA的PHB/HA样品上记录到了小鼠骨髓成骨细胞生长和分化的最佳参数。在异位骨形成试验中已证明,杂化PHB/HA复合材料可作为支架,骨组织在其表面和孔隙中生长。

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