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An inhibitory action of chitosan nanoparticles against pathogenic bacteria and fungi and their potential applications as biocompatible antioxidants

机译:壳聚糖纳米粒子对病原细菌和真菌及其潜在应用作为生物相容性抗氧化剂的抑制作用

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Chitosan is the second most abundant polymer obtained from the byproduct of seafood. Chitosan and its derivatives and chitosan loaded drugs are the recent area of interest against microbial pathogenesis. The cationic chitosan nanoparticles (ChNPs) interact with the anionic surfaces of the microbial cell membrane, which promotes antimicrobial activity. Although, ChNPs are potential against pathogenic microbes, selection of adaptable, suitable and cost effective synthesis method is much important. In the present study, ChNPs were synthesized adopting ionic gelation using sodium tripolyphosphate as a cross linking agent and characterized by FTIR, DLS, SEM and TEM analysis. ChNPs were investigated for antimicrobial activity against bacterial (Escherichia coli and Staphylococcus aureus) and fungal (Candida albicans) pathogens. ChNPs showed bactericidal activity at the lower minimum inhibitory concentration of about 40-80 mu g mL(-1). Interestingly, ChNPs exhibits biocompatible antioxidant property by inhibiting DPPH free radicals at 76% and also proven to be a potential candidate against the microbial pathogenesis with an inevitable applications in biomedicine.
机译:壳聚糖是从海鲜副产品获得的第二种最丰富的聚合物。壳聚糖及其衍生物和壳聚糖装载的药物是近期对微生物发病机制的兴趣领域。阳离子壳聚糖纳米粒子(CHNP)与微生物细胞膜的阴离子表面相互作用,促进抗微生物活性。虽然CHNPS是对致病性微生物的潜力,但选择适应性,合适和经济的合成方法的选择很重要。在本研究中,使用三聚磷酸钠作为交联剂,合成采用离子凝胶化的CHNP,其特征在于FTIR,DLS,SEM和TEM分析。研究了针对细菌(大肠杆菌和金黄色葡萄球菌)和真菌(念珠菌类白葡萄球菌)病原体的抗菌活性的CHNP。 CHNP在较低最小抑制浓度下显示杀菌活性约40-80μgmml(-1)。有趣的是,CHNP通过抑制DPPH自由基为76%,并且还经证明是针对微生物发病机制的潜在候选者,并在生物医学中的不可避免的应用。

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