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Strategically prolonged release of multiple antibacterial components from a thin film coating for synergistic effects against Staphylococcus aureus infections

机译:战略性地长期释放来自薄膜涂层的多种抗菌组分,用于对金黄色葡萄球菌感染的协同作用

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Biomaterial-associated infections (BAIs) remain a major challenge in clinical surgery because they can potentially cause serious disabilities in patients. This study investigated the use of a multilayer coating technology that can co-deliver two therapeutic components, gentamicin and OP-145 peptide, to treat Staphylococcus aureus effectively. A biocompatible and biodegradable thin film was produced via layer-by-layer assembly using an antibacterial peptide and gentamicin. The thin film was systematically characterized, showing controllable features such as thickness, transparency, cargo loading, and cargo release. In vitro tests showed that the thin film has fewer toxicity problems than soluble cargos; compared to cargos in a soluble form, the thin film has minor impacts on mammalian cells' metabolism. Additionally, the antibacterial cargos assembled on the thin film can effectively inhibit the formation of biofilms and show effective in vitro antibacterial potency. In vivo studies illustrated that the thin film can inhibit the progression of S. aureus in a mouse model, indicating the effectiveness of the thin film structure in the clinic. This study demonstrates that a thin film composed of gentamicin and OP-145 could be employed to prevent BAIs in clinical surgery.
机译:生物材料相关的感染(BAIS)仍然是临床手术中的主要挑战,因为它们可能导致患者的严重残疾。本研究研究了一种多层涂层技术,可以共同提供两种治疗组分,庆大霉素和OP-145肽,有效地治疗金黄色葡萄球菌。通过使用抗菌肽和庆大霉素通过层逐组装制备生物相容性和可生物可降解的薄膜。薄膜系统为特征,显示可控制特征,例如厚度,透明度,货物加载和货物释放。体外试验表明,薄膜的毒性问题比可溶性的尸体更少;与可溶性溶质的尸体相比,薄膜对哺乳动物细胞的新陈代谢产生了轻微的影响。另外,在薄膜上组装的抗菌尸体可以有效地抑制生物膜的形成,并显示有效的体外抗菌效力。在体内研究表明,薄膜可以在小鼠模型中抑制S.UUREUS的进展,表明临床中薄膜结构的有效性。该研究表明,由庆大霉素和OP-145组成的薄膜可用于预防临床手术中的疾病。

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    《RSC Advances》 |2019年第56期|共8页
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  • 正文语种 eng
  • 中图分类 化学;
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  • 入库时间 2022-08-19 17:46:19

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