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首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Versatility of targeted antibiotic-loaded gold nanoconstructs for the treatment of biofilm-associated bacterial infections
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Versatility of targeted antibiotic-loaded gold nanoconstructs for the treatment of biofilm-associated bacterial infections

机译:靶向抗生素负载金纳米纳米结构的多功能性,用于治疗生物膜相关的细菌感染

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摘要

Background: We previously demonstrated that a photoactivatable therapeutic approach employing antibiotic-loaded, antibody-conjugated, polydopamine (PDA)-coated gold nanocages (AuNCs) could be used for the synergistic killing of bacterial cells within a biofilm. The approach was validated with a focus on Staphylococcus aureus using an antibody specific for staphylococcal protein A (Spa) and an antibiotic (daptomycin) active against Gram-positive cocci including methicillin-resistant S. aureus (MRSA). However, an important aspect of this approach is its potential therapeutic versatility.Methods: In this report, we evaluated this versatility by examining the efficacy of AuNC formulations generated with alternative antibodies and antibiotics targeting S. aureus and alternative combinations targeting the Gram-negative pathogen Pseudomonas aeruginosa.Results: The results confirmed that daptomycin-loaded AuNCs conjugated to antibodies targeting two different S. aureus lipoproteins (SACOL0486 and SACOL0688) also effectively kill MRSA in the context of a biofilm. However, our results also demonstrate that antibiotic choice is critical. Specifically, ceftaroline and vancomycin-loaded AuNCs conjugated to anti-Spa antibodies were found to exhibit reduced efficacy relative to daptomycin-loaded AuNCs conjugated to the same antibody. In contrast, gentamicin-loaded AuNCs conjugated to an antibody targeting a conserved outer membrane protein were highly effective against P. aeruginosa biofilms.Conclusions: These results confirm the therapeutic versatility of our approach. However, to the extent that its synergistic efficacy is dependent on the ability to achieve both a lethal photothermal effect and the thermally controlled release of a sufficient amount of antibiotic, they also demonstrate the importance of carefully designing appropriate antibody and antibiotic combinations to achieve the desired therapeutic synergy.
机译:背景:前面证明,采用抗生素负载,抗体缀合的多碳胺(PDA) - 涂覆的金纳米病毒(Aunc)的光活化治疗方法可用于协同杀死生物膜内的细菌细胞。使用针对葡萄球菌(SPA)的抗体和抗生素(DATOMYCIN)对克阳性COCC1的抗生素(DATOMYCIN)的抗体验证,验证了该方法的验证了验证了葡萄球菌。然而,这种方法的一个重要方面是其潜在的治疗功能。方法:在本报告中,我们通过检查用替代抗体和靶向S. aureus的抗生素和靶向革兰氏阴性病原体的替代组合产生的抗生素和抗生素的疗效来评估这种多功能性。 Pseudomonas eruginosa.results:结果证实,掺入靶向两种不同S.金黄色葡萄球菌脂蛋白(Sacol0486和Sacol0688)的抗体缀合的Daptomycin装载的Aunc也有效地在生物膜的背景下杀死MRSA。但是,我们的结果还表明抗生素选择至关重要。具体而言,发现与抗水疗抗体缀合的Ceftaroline和Vancomycin负载的Aunc,相对于与相同抗体缀合的达达霉素装载的Auncs的疗效降低。相比之下,与靶向保守的外膜蛋白的抗体缀合的庆大霉素的Aunc非常有效针对P. Aeruginosa生物膜。结论:这些结果证实了我们方法的治疗功能性。然而,在其协同疗效依赖于实现致命光热效应和热量抗生素的热控释的能力的程度,它们还证明了仔细设计适当的抗体和抗生素组合来达到所需的重要性治疗协同作用。

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