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Synergistic Antibiotic Combination Powders of Colistin and Rifampicin Provide High Aerosolization Efficiency and Moisture Protection

机译:Colistin和Rifampicin的协同抗生素组合粉末可提供高雾化效率和防潮性能

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摘要

For many respiratory infections caused by multidrug-resistant Gram-negative bacteria, colistin is the only effective antibiotic despite its nephrotoxicity. A novel inhaled combination formulation of colistin with a synergistic antimicrobial component of rifampicin was prepared via co-spray drying, aiming to deliver the drug directly to the respiratory tract and minimize drug resistance and adverse effects. Synergistic antibacterial activity against Acinetobacter baumannii was demonstrated for the combination formulation with high emitted doses (96%) and fine particle fraction total (FPFtotal; 92%). Storage of the spray-dried colistin alone formulation in the elevated relative humidity (RH) of 75% resulted in a substantial deterioration in the aerosolization performance because the amorphous colistin powders absorbed significant amount of water up to 30% by weight. In contrast, the FPFtotal values of the combination formulation stored at various RH were unchanged, which was similar to the aerosolization behavior of the spray-dried rifampicin-alone formulation. Advanced surface chemistry measurements by XPS and ToF-SIMS demonstrated a dominance of rifampicin on the combination particle surfaces, which contributed to the moisture protection at the elevated RH. This study shows a novel inhalable powder formulation of antibiotic combination with the combined beneficial properties of synergistic antibacterial activity, high aerosolization efficiency, and moisture protection.Electronic supplementary materialThe online version of this article (doi:10.1208/s12248-013-9537-8) contains supplementary material, which is available to authorized users.
机译:对于由多药耐药的革兰氏阴性菌引起的许多呼吸道感染,粘菌素是唯一有效的抗生素,尽管它具有肾毒性。通过共同喷雾干燥制备了一种新型的大肠菌素与利福平的协同抗菌成分的吸入组合制剂,旨在将药物直接递送至呼吸道,并使耐药性和副作用最小化。对于具有高发射剂量(96%)和总细颗粒分数(FPFtotal; 92%)的组合制剂,证明了针对鲍曼不动杆菌的协同抗菌活性。喷雾干燥的粘菌素单独制剂在升高的相对湿度(RH)为75%中的储存导致雾化性能的显着降低,因为无定形粘菌素粉末吸收了高达30重量%的大量水。相反,在各种RH下储存的组合制剂的FPFtotal值没有变化,这与仅喷雾干燥的利福平制剂的雾化行为相似。通过XPS和ToF-SIMS进行的高级表面化学测量表明,利福平在组合颗粒表面上占主导地位,这有助于在较高的RH下进行防潮保护。这项研究显示了一种新型的抗生素可吸入粉末制剂,具有协同抗菌活性,高雾化效率和防潮的综合有益特性。电子补充材料本文的在线版本(doi:10.1208 / s12248-013-9537-8)包含补充材料,授权用户可以使用。

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