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探究抗微生物多粘菌素脂肽对革兰氏阴性菌的渗透作用。

Probing the penetration of antimicrobial polymyxin lipopeptides into gram-negative bacteria.

作者信息

Deris Zakuan Z, Swarbrick James D, Roberts Kade D, Azad Mohammad A K, Akter Jesmin, Horne Andrew S, Nation Roger L, Rogers Kelly L, Thompson Phillip E, Velkov Tony, Li Jian

机构信息

Drug Delivery, Disposition and Dynamics and §Department of Medicinal Chemistry, Monash Institute of Pharmaceutical Sciences, Monash University , Melbourne, Victoria 3800, Australia.

出版信息

Bioconjug Chem. 2014 Apr 16;25(4):750-60. doi: 10.1021/bc500094d. Epub 2014 Mar 27.

Abstract

The dry antibiotic development pipeline coupled with the emergence of multidrug resistant Gram-negative 'superbugs' has driven the revival of the polymyxin lipopeptide antibiotics. Polymyxin resistance implies a total lack of antibiotics for the treatment of life-threatening infections. The lack of molecular imaging probes that possess native polymyxin-like antibacterial activity is a barrier to understanding the resistance mechanisms and the development of a new generation of polymyxin lipopeptides. Here we report the regioselective modification of the polymyxin B core scaffold at the N-terminus with the dansyl fluorophore to generate an active probe that mimics polymyxin B pharmacologically. Time-lapse laser scanning confocal microscopy imaging of the penetration of probe (1) into Gram-negative bacterial cells revealed that the probe initially accumulates in the outer membrane and subsequently penetrates into the inner membrane and finally the cytoplasm. The implementation of this polymyxin-mimetic probe will advance the development of platforms for the discovery of novel polymyxin lipopeptides with efficacy against polymyxin-resistant strains.

摘要

抗生素研发进程停滞不前,加之多重耐药革兰氏阴性“超级细菌”的出现,促使多粘菌素脂肽类抗生素再度兴起。多粘菌素耐药意味着在治疗危及生命的感染时完全缺乏可用的抗生素。缺乏具有天然多粘菌素样抗菌活性的分子成像探针,是理解耐药机制以及开发新一代多粘菌素脂肽类药物的障碍。在此,我们报道了在多粘菌素B核心支架的N端用丹磺酰荧光团进行区域选择性修饰,以生成一种在药理学上模拟多粘菌素B的活性探针。对探针(1)进入革兰氏阴性细菌细胞的穿透过程进行延时激光扫描共聚焦显微镜成像显示,该探针最初积聚在外膜,随后穿透内膜,最终进入细胞质。这种多粘菌素模拟探针的应用将推动针对耐多粘菌素菌株开发具有疗效的新型多粘菌素脂肽类药物平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d737/3993906/b8acbf04aa17/bc-2014-00094d_0002.jpg

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