Li Yanan, Dong Yuanzhen, Lu Jianguang, Zhang Jinhua, Feng Meiqing, Feng Jun
Department of Biological Medicines & Shanghai Engineering Research Centre of Immunotherapeutics, School of Pharmacy, Fudan University, 201203, Shanghai, China.
China State Institute of Pharmaceutical Industry, 201203, Shanghai, China.
J Antibiot (Tokyo). 2023 May;76(5):260-269. doi: 10.1038/s41429-023-00606-1. Epub 2023 Mar 20.
The escalating crisis of multidrug resistance is raising the fear of untreatable Gram-negative infections and killing a substantial number of patients. The underpopulated antibiotic drug development pipelines drive polymyxins (polymyxin B and colistin) as crucial therapeutic options. However, the cumbersome synthesis process and inefficient cyclization method limit the efficient preparation of polymyxin core scaffolds in the development of polymyxin derivatives. Here, we innovatively applied a substitution reaction between bromobenzene and sulfhydryl to cyclize colistin core scaffolds. The reaction was mild and efficient, improving the total yield of the compound from less than 10% to 55.90%. Nearly 30 novel derivatives with thioether bond-mediated cyclic scaffolds were designed and synthesized. Evaluation of antibacterial activities and biological properties revealed that many new compounds that are stable in mouse plasma possess high antimicrobial potency against Gram-negative bacteria and display no hemolytic toxicity. Our optimal peptide PE-2C-C8-DH eradicated Acinetobacter baumannii within 24 h in vitro, and had lower acute toxicity and significant therapeutic effects on mice infected with Pseudomonas aeruginosa, which deserves further development.
多重耐药性危机的不断升级引发了人们对无法治疗的革兰氏阴性菌感染的担忧,并导致大量患者死亡。抗生素药物研发渠道缺乏活力,使得多粘菌素(多粘菌素B和黏菌素)成为关键的治疗选择。然而,繁琐的合成过程和低效的环化方法限制了多粘菌素衍生物开发中多粘菌素核心支架的高效制备。在此,我们创新性地应用溴苯与巯基之间的取代反应来环化黏菌素核心支架。该反应温和且高效,将化合物的总产率从不到10%提高到了55.90%。设计并合成了近30种具有硫醚键介导的环状支架的新型衍生物。抗菌活性和生物学特性评估表明,许多在小鼠血浆中稳定的新化合物对革兰氏阴性菌具有高抗菌效力,且无溶血毒性。我们的最佳肽PE-2C-C8-DH在体外24小时内根除了鲍曼不动杆菌,对感染铜绿假单胞菌的小鼠具有较低的急性毒性和显著的治疗效果,值得进一步开发。