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头孢烯-3'-重氮二醇盐的发现,对临床囊性纤维化分离株具有双重抗菌和抗生物膜作用,并在小鼠呼吸道感染模型中显示出疗效。

Discovery of Cephalosporin-3'-Diazeniumdiolates That Show Dual Antibacterial and Antibiofilm Effects against Clinical Cystic Fibrosis Isolates and Efficacy in a Murine Respiratory Infection Model.

机构信息

Molecular Horizons and School of Chemistry and Molecular Bioscience, University of Wollongong, Wollongong, New South Wales 2522, Australia.

Illawarra Health and Medical Research Institute, Wollongong, New South Wales 2522, Australia.

出版信息

ACS Infect Dis. 2020 Jun 12;6(6):1460-1479. doi: 10.1021/acsinfecdis.0c00070. Epub 2020 May 5.

Abstract

The formation of biofilms provides a formidable defense for many bacteria against antibiotics and host immune responses. As a consequence, biofilms are thought to be the root cause of most chronic infections, including those occurring on medical indwelling devices, endocarditis, urinary tract infections, diabetic and burn wounds, and bone and joint infections. In cystic fibrosis (CF), chronic () respiratory infections are the leading cause of morbidity and mortality in adults. Previous studies have shown that many bacteria can undergo a coordinated dispersal event in the presence of low concentrations of nitric oxide (NO), suggesting that NO could be used to initiate biofilm dispersal in chronic infections, enabling clearance of the more vulnerable planktonic cells. In this study, we describe efforts to create "all-in-one" cephalosporin-based NO donor prodrugs (cephalosporin-3'-diazeniumdiolates, C3Ds) that show both direct β-lactam mediated antibacterial activity and antibiofilm effects. Twelve novel C3Ds were synthesized and screened against a panel of CF clinical isolates and other human pathogens. The most active compound, AMINOPIP2 (()-1-(4-(2-aminoethyl)piperidin-1-yl)-2-(((6,7)-7-(()-2-(2-aminothiazol-4-yl)-2-(((2-carboxypropan-2-yl)oxy)imino)acetamido)-2-carboxy-8-oxo-5-thia-1-azabicyclo[4.2.0]oct-2-en-3-yl)methoxy)diazene 1-oxide)-ceftazidime , showed higher antibacterial potency than its parent cephalosporin and front-line antipseudomonal antibiotic ceftazidime, good stability against β-lactamases, activity against ceftazidime-resistant biofilms, and efficacy equivalent to ceftazidime in a murine respiratory infection model. The results support further evaluation of AMINOPIP2-ceftazidime for lung infections in CF and a broader study of "all-in-one" C3Ds for other chronic infections.

摘要

生物膜的形成为许多细菌提供了对抗抗生素和宿主免疫反应的强大防御。因此,生物膜被认为是大多数慢性感染的根源,包括那些发生在医疗留置装置、心内膜炎、尿路感染、糖尿病和烧伤伤口以及骨和关节感染上的感染。在囊性纤维化 (CF) 中,慢性呼吸道感染是成年人发病和死亡的主要原因。先前的研究表明,许多细菌在低浓度一氧化氮 (NO) 的存在下可以进行协调的分散事件,这表明 NO 可用于启动慢性感染中的生物膜分散,从而清除更脆弱的浮游细胞。在这项研究中,我们描述了创建“一体化”头孢菌素基一氧化氮供体前药(头孢菌素-3'-二氮烯二醇盐,C3D)的努力,这些前药既具有直接的β-内酰胺介导的抗菌活性,又具有抗生物膜作用。合成了 12 种新型 C3D,并对一组 CF 临床分离株和其他人类病原体进行了筛选。最活跃的化合物 AMINOPIP2((()-1-(4-(2-氨基乙基)哌啶-1-基)-2-(((6,7)-7-((()-2-(2-氨基噻唑-4-基)-2-(((2-羧基-2-甲基丙基)氧基)亚氨基)乙酰胺基)-2-羧基-8-氧代-5-硫-1-氮杂双环[4.2.0]辛-2-烯-3-基)甲氧基)二氮烯 1-氧化物)-头孢他啶,比其母体头孢菌素和一线抗假单胞菌抗生素头孢他啶具有更高的抗菌效力,对β-内酰胺酶具有良好的稳定性,对头孢他啶耐药生物膜具有活性,并且在小鼠呼吸道感染模型中的疗效与头孢他啶相当。结果支持进一步评估 AMINOPIP2-头孢他啶用于 CF 肺部感染的研究,以及更广泛地研究“一体化”C3D 用于其他慢性感染的研究。

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