Peptide-Based Polymer-Polyoxometalate Supramolecular Structure with a Differed Antimicrobial Mechanism

被引:37
作者
Datta, Lakshmi Priya [1 ]
Mukherjee, Riya [1 ]
Biswas, Subharanjan [2 ]
Das, Tapan Kumar [1 ]
机构
[1] Univ Kalyani, Dept Biochem & Biophys, Nadia 741235, W Bengal, India
[2] Indian Inst Sci Educ & Res Kolkata, Dept Chem Sci, Nadia 741246, W Bengal, India
关键词
CALF THYMUS DNA; ANTIBACTERIAL ACTIVITY; SILVER NANOPARTICLES; RAFT POLYMERIZATION; POLYMETHACRYLATE DERIVATIVES; BIOLOGICAL APPLICATIONS; RADICAL POLYMERIZATION; HEMOLYTIC ACTIVITIES; EPSILON-POLYLYSINE; MOLECULAR DOCKING;
D O I
10.1021/acs.langmuir.7b02916
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Because of the increasing prevalence of Multi drug resistance feature, several investigations have been so far reported regarding the antibiotic alternative supramolecular bioactive agents made of hybrid assemblies. In this regard, it is well-established that combinational therapy inherited by assembled supramolecular structures can improve the bioactivity to some extent, but their mode of action has not been studied in detail. We provide first direct evidence that the improved mechanism of action of antimicrobial supra-amphiphilic nanocomposites differs largely from their parent antimicrobial peptide-based polymers. For the construction of a hybrid combinational system, we have synthesized side-chain peptide-based antimicrobial polymers via RAFT polymerization and exploited their cationic nature to decorate supra-amphiphilic nanocomposites via interaction with anionic polyoxometalates. Because of cooperative antimicrobial properties of both the polymer and polyoxometalate, the nanocomposites show an enhanced antimicrobial activity with a different antimicrobial mechanism The cationic stimuli -responsive peptide-based polymers attack bacteria via membrane disruption mechanism, whereas free radical-mediated cell damage is the likely mechanism of polymer polyoxometalate-based supra-amphiphilic nanocomposites. Thus, our study highlights the different antimicrobial mechanism of combinational systems in detail, which improves our understanding of enhanced antimicrobial efficacy.
引用
收藏
页码:14195 / 14208
页数:14
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