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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Thermosensitive hybrid hydrogels for the controlled release of bioactive vancomycin in the treatment of orthopaedic implant infections
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Thermosensitive hybrid hydrogels for the controlled release of bioactive vancomycin in the treatment of orthopaedic implant infections

机译:热敏性杂合水凝胶,用于控制骨科感染治疗生物活性万古霉素的释放

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摘要

The purpose of this work was the development of antibacterial delivery systems for vancomycin, with potential application in the prevention or treatment of orthopedic implant infections. Previous studies have shown tandem thermal gelling and Michael addition cross-linking of hydrogels based on methacrylate, acrylate or vinylsulfone triblock copolymers of PEG-p(HPMAm-lac(1-2)) and thiolated hyaluronic acid. In this work we exploited these alpha-beta unsaturated derivatives of PEG-p(HPMAm-lac(1-2)) triblock copolymers and used them in combination with thiolated hyaluronic acid as controlled delivery systems for vancomycin. It was found that the antibiotic was sustainably released from the hydrogel networks for at least 5 days with release kinetics depending on diffusion and dissociation of the positively charged vancomycin from the negatively charged hyaluronic acid. The release of vancomycin could be tailored mainly by HA-SH solid content and degree of thiolation. The developed hydrogels were demonstrate efficacious in preserving the structural and functional integrity of the encapsulated drug by physical immobilization within the gel network and ionic interaction with hyaluronic acid, thereby preventing vancomycin deamidation processes. Furthermore, the antimicrobial activity of vancomycin loaded hydrogels was assessed, demonstrating retention of inhibitory activity towards Staphylococcus aureus during formulation and release, with slightly increased activity of vancomycin encapsulated in hydrogels of higher HA-SH content as compared to controls.
机译:这项工作的目的是发展万古霉素的抗菌输送系统,潜在应用于预防或治疗骨科植入物感染。以前的研究表明,基于甲基丙烯酸酯,丙烯酸酯或乙烯基砜三嵌段共聚物的PEG-P(HPMAM-LAC(1-2))和硫醇化透明质酸的串联热胶凝和迈克尔加成交联。在这项工作中,我们利用了PEG-P的α-β不饱和衍生物(HPMAM-LAC(1-2))三嵌段共聚物,并将它们与硫化透明质酸组合使用,作为万古霉素的受控输送系统。发现抗生素从水凝胶网络中可持续地释放至少5天,释放动力学根据带负电荷的透明质酸的带正电荷的万古霉素的扩散和解离。万古霉素的释放可以主要通过Ha-Sh固体含量和硫醇度来定制。通过在凝胶网络内的物理固定和与透明质酸的离子相互作用中的物理固定,发育的水凝胶表现出有效地保留包封的药物的结构和功能完整性,从而防止万古霉素脱染方法。此外,评估了万古霉素负载水凝胶的抗微生物活性,证明在制剂和释放过程中抑制抑制抑制活性朝金黄色葡萄球菌的抑制活性,与对照相比,在高HA-SH含量的水凝胶中包封的万古霉素的活性略微增加。

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