首页> 外文期刊>Scientific reports. >A biphasic nanohydroxyapatite/calcium sulphate carrier containing Rifampicin and Isoniazid for local delivery gives sustained and effective antibiotic release and prevents biofilm formation
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A biphasic nanohydroxyapatite/calcium sulphate carrier containing Rifampicin and Isoniazid for local delivery gives sustained and effective antibiotic release and prevents biofilm formation

机译:含有利福平和异烟肼的双相纳米羟基磷灰石/硫酸钙载体用于局部递送持续和有效的抗生素释放,可防止生物膜形成

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Long term multiple systemic antibiotics form the?cornerstone in the treatment of bone and joint tuberculosis, often combined with local surgical eradication. Implanted carriers for local drug delivery have recently been introduced to overcome some of the limitations associated with conventional treatment strategies. In this study, we used a calcium sulphate hemihydrate?(CSH)/nanohydroxyapatite (nHAP) based nanocement (NC) biomaterial as a void filler as well as a local delivery carrier of two standard of care tuberculosis drugs, Rifampicin (RFP) and Isoniazid (INH). We observed that the antibiotics showed different release patterns where INH showed a burst release of 67% and 100% release alone and in combination within one week, respectively whereas RFP showed sustained release of 42% and 49% release alone and in combination over a period of 12?weeks, respectively indicating different possible interactions of antibiotics with nHAP. The interactions were studied using computational methodology, which showed that the binding energy of nHAP with RFP was 148?kcal/mol and INH was 11?kcal/mol, thus varying substantially resulting in RFP being retained in the nHAP matrix. Our findings suggest that a biphasic ceramic based drug delivery system could be a promising treatment alternative to bone and joint TB.
机译:长期多种全身抗生素形成骨骼和联合结核治疗的基石,经常与局部外科灭绝结合。最近介绍了植入的携带载体,用于克服与常规治疗策略相关的一些局限性。在这项研究中,我们使用硫酸钙半水合物?(CSH)/纳米羟基磷灰石(NHAP)的基础纳米材料(NC)生物材料,作为空隙填料,以及两种护理结核药物,利福平(RFP)和异烟肼的局部递送载体(INH)。我们观察到抗生素显示不同的释放模式,其中INH显示出67%和100%单独释放的突发释放,并在一周内组合,而RFP在一段时间内单独释放42%和49%释放并组合12个?几周,分别表明抗生素与NHAP不同的相互作用。使用计算方法研究了相互作用,这表明NHAP与RFP的结合能量为148 kcal / mol,INH为11·kcal / mol,因此基本上改变在NHAP基质中保持RFP。我们的研究结果表明,双相陶瓷的药物递送系统可能是骨骼和关节TB的有希望的替代方案。

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