首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Cephalexin-loaded injectable macroporous calcium phosphate bone cement.
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Cephalexin-loaded injectable macroporous calcium phosphate bone cement.

机译:负载头孢氨苄的可注射大孔磷酸钙骨水泥。

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Different types of calcium phosphate cements (CPCs) have been studied as potential matrices for incorporating different types of antibiotics. All of these matrices were morphologically microporous whereas macroporosity is essential for rapid cement resorption and bone replacement. In this study, liberation of cephalexin monohydrate (CMH) from a macroporous CPC was investigated over 0.5-300 h in simulated body fluid and some mathematical models were fitted to the release profiles. Macroporosity was introduced into the cement matrix by using sodium dodecyl sulfate molecules as air-entraining agents and the effect of both surfactant and CMH on basic properties of the CPC was studied. Incorporation of CMH into the CPC composition increased the setting time, decreased the crystallinity of the formed apatite phase, and improved the injectability of the paste. The use of both CMH and sodium dodecyl sulfate did not affect the rate of conversion of the reactants into apatite phase while soaking the cements in simulated body fluid. Results showed that the liberation rate of the drug from porous CPC was higher than that of the nonporous CPC but same release patterns were experienced in both types of cements, that is, like to nonporous CPC, a time-dependent controlled release of the incorporated drug was obtained from macroporous CPC. The Weibull model was the best fitting-equation for release profiles of all cements. The liberated CMH was as active as fresh cephalexin. It is concluded that this macroporous CPC can be successfully used as drug carrier with controlled release profile for the treatment of bone infections.
机译:已经研究了不同类型的磷酸钙水泥(CPC)作为掺入不同类型抗生素的潜在基质。所有这些基质在形态上都是微孔的,而大孔对于快速吸收水泥和置换骨至关重要。在这项研究中,研究了在模拟体液中在0.5-300 h内从大孔CPC释放头孢氨苄一水合物(CMH)的情况,并对释放曲线拟合了一些数学模型。以十二烷基硫酸钠分子为引气剂,将大孔率引入水泥基体中,研究了表面活性剂和CMH对CPC基本性能的影响。将CMH掺入CPC组合物中会增加凝固时间,降低形成的磷灰石相的结晶度,并改善糊剂的可注射性。将水泥浸泡在模拟体液中时,CMH和十二烷基硫酸钠的使用均不影响反应物转化为磷灰石相的速率。结果表明,多孔CPC中的药物释放速率高于无孔CPC,但两种类型的水泥均经历了相同的释放模式,即与无孔CPC一样,掺入药物的时间依赖性控制释放是从大孔CPC获得的。威布尔模型是所有水泥释放曲线的最佳拟合方程。释放的CMH与新鲜的头孢氨苄一样有效。结论是,该大孔CPC可以成功地用作具有控制释放特征的药物载体,用于治疗骨感染。

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