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An efficient system for intracellular delivery of beta-lactam antibiotics to overcome bacterial resistance

机译:一种有效的细胞内β-内酰胺抗生素克服细菌耐药性的系统

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摘要

The “Golden era” of antibiotics is definitely an old story and this is especially true for intracellular bacterial infections. The poor intracellular bioavailability of antibiotics reduces the efficency of many treatments and thereby promotes resistances. Therefore, the development of nanodevices coupled with antibiotics that are capable of targeting and releasing the drug into the infected-cells appears to be a promising solution to circumvent these complications. Here, we took advantage of two natural terpenes (farnesyl and geranyl) to design nanodevices for an efficient intracellular delivery of penicillin G. The covalent linkage between the terpene moieties and the antibiotic leads to formation of prodrugs that self-assemble to form nanoparticles with a high drug payload between 55–63%. Futhermore, the addition of an environmentally-sensitive bond between the antibiotic and the terpene led to an efficient antibacterial activity against the intracellular pathogen Staphylococcus aureus with reduced intracellular replication of about 99.9% compared to untreated infected cells. Using HPLC analysis, we demonstrated and quantified the intracellular release of PenG when this sensitive-bond (SB) was present on the prodrug, showing the success of this technology to deliver antibiotics directly into cells.
机译:抗生素的“黄金时代”绝对是一个古老的故事,对于细胞内细菌感染尤其如此。抗生素的不良胞内生物利用度降低了许多治疗方法的功效,从而提高了耐药性。因此,开发能够与靶向和释放药物到感染细胞中的抗生素结合的纳米装置似乎是解决这些并发症的有前途的解决方案。在这里,我们利用两种天然萜烯(法呢基和香叶基)来设计纳米装置,以有效地在细胞内递送青霉素G。萜烯部分和抗生素之间的共价键导致前药形成,所述前药会自组装形成具有药物有效载荷在55-63%之间。此外,在抗生素和萜烯之间添加对环境敏感的键导致对细胞内病原体金黄色葡萄球菌的有效抗菌活性,与未处理的感染细胞相比,细胞内复制减少了约99.9%。使用HPLC分析,我们证明并量化了前药上存在这种敏感键(SB)时PenG在细胞内的释放,显示了该技术将抗生素直接递送到细胞中的成功。

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