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Nanoparticle-Stabilized Capsules for the Treatment of Bacterial Biofilms

机译:纳米稳定胶囊用于细菌生物膜的治疗

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摘要

Bacterial biofilms are widely associated with persistent infections. High resistance to conventional antibiotics and prevalent virulence makes eliminating these bacterial communities challenging therapeutic targets. We describe here the fabrication of a nanoparticle-stabilized capsule with a multicomponent core for the treatment of biofilms. The peppermint oil and cinnamaldehyde combination that comprises the core of the capsules act as potent antimicrobial agents. An in situ reaction at the oil/water interface between the nanoparticles and cinnamaldehyde structurally augments the capsules to efficiently deliver the essential oil payloads, effectively eradicating biofilms of clinically isolated pathogenic bacteria strains. In contrast to their antimicrobial action, the capsules selectively promoted fibroblast proliferation in a mixed bacteria/mammalian cell system making them promising for wound healing applications.
机译:细菌生物膜与持续感染广泛相关。对常规抗生素的高抗性和普遍的毒性使得消除这些挑战治疗目标的细菌群落成为可能。我们在这里描述了具有多组分核心的纳米颗粒稳定胶囊的制造,该胶囊用于治疗生物膜。组成胶囊核心的薄荷油和肉桂醛混合物可作为有效的抗菌剂。在纳米颗粒和肉桂醛之间的油/水界面处的原位反应在结构上增强了胶囊,从而有效地输送了精油有效载荷,有效消除了临床分离的病原细菌菌株的生物膜。与它们的抗菌作用相反,这些胶囊在混合细菌/哺乳动物细胞系统中选择性地促进了成纤维细胞的增殖,从而使其有望在伤口愈合中得到应用。

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