Laboratory of Nanotechnology and Chemical Biology, Regional Centre for Biotechnology, NCR Biotech Science Cluster, 3rd Milestone, Faridabad-Gurgaon Expressway, Faridabad-121001, Haryana, India.
Department of Chemistry, Indian Institute of Science Education and Research, Bhopal By-pass Road, Bhauri, Bhopal-462030, India.
Biomater Sci. 2022 Sep 13;10(18):5158-5171. doi: 10.1039/d2bm00524g.
Infections caused by multidrug-resistant () pose major challenges for treatment due to the acquired, adaptive, and intrinsic resistance developed by the bacteria. Accumulation of mutations, the ability to form biofilms, and the presence of lipopolysaccharides in the outer bacterial membranes are the key mechanisms of drug resistance. Here, we show that a polyaspartate-derived synthetic antimicrobial polymer (SAMP) with a hexyl chain (TAC6) is an effective adjuvant for a hydrophobic antibiotic, rifampicin. Our studies demonstrated that the combination of TAC6 and rifampicin is effective against clinically isolated multidrug-resistant strains of . Membrane permeabilization studies showed that TAC6 allows the permeabilization of bacterial membranes, and the accumulation of rifampicin inside the cells, thereby enhancing its activity. The combination of TAC6 and rifampicin can also degrade the biofilms, and therefore can mitigate the adaptive resistance developed by bacteria. We further demonstrated that the combination of TAC6 and rifampicin can clear -mediated wound infections effectively. Therefore, our study showed polyaspartate-derived SAMP to be an effective antibiotic adjuvant against infections.
由多药耐药()引起的感染由于细菌获得的、适应性的和内在的耐药性而对治疗构成重大挑战。突变的积累、形成生物膜的能力以及外细菌膜中脂多糖的存在是耐药的关键机制。在这里,我们表明具有己基链(TAC6)的聚天冬氨酸衍生的合成抗菌聚合物(SAMP)是疏水性抗生素利福平的有效佐剂。我们的研究表明,TAC6 和利福平的组合对临床分离的多药耐药株有效。膜通透性研究表明,TAC6 允许细菌膜通透性,并使利福平在细胞内积累,从而增强其活性。TAC6 和利福平的组合还可以降解生物膜,从而减轻细菌产生的适应性耐药性。我们进一步证明,TAC6 和利福平的组合可以有效地清除介导的伤口感染。因此,我们的研究表明聚天冬氨酸衍生的 SAMP 是一种有效的抗生素佐剂,可用于治疗感染。