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A bioinspired peptide scaffold with high antibiotic activity and low in vivo toxicity

机译:一种具有高抗生素活性和低抗生素活性的生物悬浮的肽支架和毒性的低

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Bacterial resistance to almost all available antibiotics is an important public health issue. A major goal in antimicrobial drug discovery is the generation of new chemicals capable of killing pathogens with high selectivity, particularly multi-drug-resistant ones. Here we report the design, preparation and activity of new compounds based on a tunable, chemically accessible and upscalable lipopeptide scaffold amenable to suitable hit-to-lead development. Such compounds could become therapeutic candidates and future antibiotics available on the market. The compounds are cyclic, contain two D-amino acids for in vivo stability and their structures are reminiscent of other cyclic disulfide-containing peptides available on the market. The optimized compounds prove to be highly active against clinically relevant Gram-negative and Gram-positive bacteria. In vitro and in vivo tests show the low toxicity of the compounds. Their antimicrobial activity against resistant and multidrug-resistant bacteria is at the membrane level, although other targets may also be involved depending on the bacterial strain.
机译:对几乎所有可用抗生素的细菌性是一个重要的公共卫生问题。抗微生物药物发现的主要目标是产生能够杀死具有高选择性,特别是多种耐药性的病原体的新化学品。在这里,我们报告了基于可调谐,化学可接近的脂肽支架的新化合物的设计,制备和活性,其适用于合适的袭击发育。这些化合物可以成为市场上可治疗的候选人和未来抗生素。化合物是环状的,含有用于体内稳定性的两种D-氨基酸,其结构使得可让CenceCenceCenceCence在市场上可用的其他含环含二硫化物的肽。优化的化合物证明对临床相关的革兰氏阴性和革兰氏阳性细菌非常有活性。体外和体内试验显示化合物的低毒性。抗菌和多药抗性细菌的抗微生物活性在膜水平处,尽管其他靶点也可能根据细菌菌株而涉及。

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