Macyszyn Julia, Burmistrz Michał, Mieczkowski Adam, Wojciechowska Monika, Trylska Joanna
Centre of New Technologies, University of Warsaw, Banacha 2c, 02-097 Warsaw, Poland.
Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawinskiego 5a, 02-106 Warsaw, Poland.
ACS Omega. 2023 May 16;8(21):19047-19056. doi: 10.1021/acsomega.3c02071. eCollection 2023 May 30.
The misuse and overuse of antibiotics led to the development of bacterial resistance to existing aminoglycoside (AMG) antibiotics and limited their use. Consequently, there is a growing need to develop effective antimicrobials against multidrug-resistant bacteria. To target resistant strains, we propose to combine 2-deoxystreptamine AMGs, neomycin (NEO) and amikacin (AMK), with a membrane-active antimicrobial peptide anoplin and its hydrocarbon stapled derivative. The AMG-peptide hybrids were conjugated using the click chemistry reaction in solution to obtain a non-cleavable triazole linker and by disulfide bridge formation on the resin to obtain a linker cleavable in the bacterial cytoplasm. Homo-dimers connected via disulfide bridges between the N-terminus thiol analogues of anoplin and hydrocarbon stapled anoplin were also synthesized. These hybrid compounds show a notable increase in antibacterial and bactericidal activity, as compared to the unconjugated ones or their combinations, against Gram-positive and Gram-negative bacteria, especially for the strains resistant to AMK or NEO. The conjugates and disulfide peptide dimers exhibit low hemolytic activity on sheep red blood erythrocytes.
抗生素的滥用和过度使用导致细菌对现有的氨基糖苷类(AMG)抗生素产生耐药性,限制了它们的使用。因此,开发针对多重耐药细菌的有效抗菌药物的需求日益增长。为了靶向耐药菌株,我们建议将2-脱氧链霉胺AMG、新霉素(NEO)和阿米卡星(AMK)与一种膜活性抗菌肽阿诺普林及其烃类订书钉衍生物结合。AMG-肽杂合物在溶液中通过点击化学反应进行缀合,以获得不可裂解的三唑连接子,并通过在树脂上形成二硫键以获得可在细菌细胞质中裂解的连接子。还合成了通过阿诺普林的N端硫醇类似物与烃类订书钉阿诺普林之间的二硫键连接的同型二聚体。与未缀合的化合物或它们的组合相比,这些杂合化合物对革兰氏阳性和革兰氏阴性细菌,特别是对耐AMK或NEO的菌株,显示出显著增强的抗菌和杀菌活性。这些缀合物和二硫键肽二聚体对绵羊红细胞表现出低溶血活性。