Polyphor AG, Allschwil, Switzerland.
Chemistry Department, University of Zurich, Zurich, Switzerland.
Nature. 2019 Dec;576(7787):452-458. doi: 10.1038/s41586-019-1665-6. Epub 2019 Oct 23.
There is an urgent need for new antibiotics against Gram-negative pathogens that are resistant to carbapenem and third-generation cephalosporins, against which antibiotics of last resort have lost most of their efficacy. Here we describe a class of synthetic antibiotics inspired by scaffolds derived from natural products. These chimeric antibiotics contain a β-hairpin peptide macrocycle linked to the macrocycle found in the polymyxin and colistin family of natural products. They are bactericidal and have a mechanism of action that involves binding to both lipopolysaccharide and the main component (BamA) of the β-barrel folding complex (BAM) that is required for the folding and insertion of β-barrel proteins into the outer membrane of Gram-negative bacteria. Extensively optimized derivatives show potent activity against multidrug-resistant pathogens, including all of the Gram-negative members of the ESKAPE pathogens. These derivatives also show favourable drug properties and overcome colistin resistance, both in vitro and in vivo. The lead candidate is currently in preclinical toxicology studies that-if successful-will allow progress into clinical studies that have the potential to address life-threatening infections by the Gram-negative pathogens, and thus to resolve a considerable unmet medical need.
目前迫切需要针对耐碳青霉烯类和第三代头孢菌素的革兰氏阴性病原体的新型抗生素,而这些抗生素对最后一道防线的抗生素的疗效大多已经丧失。在这里,我们描述了一类受天然产物衍生支架启发的合成抗生素。这些嵌合抗生素包含与多黏菌素和黏菌素家族天然产物中环相连的β发夹肽大环。它们具有杀菌作用,其作用机制涉及与脂多糖和β桶折叠复合物(BAM)的主要成分(BamA)结合,这对于β桶蛋白在革兰氏阴性菌外膜中的折叠和插入是必需的。经过广泛优化的衍生物对包括 ESKAPE 病原体在内的所有革兰氏阴性病原体的多药耐药性病原体都具有很强的活性。这些衍生物还具有良好的药物特性,并能克服体外和体内的黏菌素耐药性。目前该候选药物正在进行临床前毒理学研究,如果成功,将有望进入临床研究,从而有可能解决由革兰氏阴性病原体引起的危及生命的感染问题,从而解决相当大的未满足的医疗需求。