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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Preparation of Bioactive Polysaccharide Nanoparticles with Enhanced Radical Scavenging Activity and Antimicrobial Activity
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Preparation of Bioactive Polysaccharide Nanoparticles with Enhanced Radical Scavenging Activity and Antimicrobial Activity

机译:具有增强的自由基清除活性和抗微生物活性的生物活性多糖纳米粒子的制备

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摘要

Because of their biocompatibility and biodegradability in vivo, natural polysaccharides are effective nanocarriers for delivery of active ingredients or drugs. Moreover, bioactive polysaccharides, such as tea, Ganoderma lucidum, and Momordica charantia polysaccharides (TP, GLP, and MCP), have antibacterial, antioxidant, antitumor, and antiviral properties. In this study, tea, Ganoderma lucidum, and Momordica charantia polysaccharide nanoparticles (TP-NPs, GLP-NPs, and MCP-NPs) were prepared via the nanoprecipitation approach. When the ethanol to water ratio was 10:1, the diameter of the spherical polysaccharide nanoparticles was the smallest, and the mean particle size of the TP-NPs, GLP-NPs, and MCP-NPs was 99 +/- 15, 95 +/- 7, and 141 +/- 9 nm, respectively. When exposed to heat, increased ionic strength and pH levels, the nanoparticles exhibited superior stability and higher activity than the corresponding polysaccharides. In physiological conditions (pH 7.4), the nanoparticles underwent different protein adsorption capacities in the following order: MCP-NPs TP-NPs GLP-NPs. Moreover, the 2,2-diphenyl-1-picrylhydrazyl (DPPH), hydroxyl radical, and superoxide anion radical scavenging rates of the nanoparticles were increased by 9-25% as compared to the corresponding polysaccharides. Compared to the bioactive polysaccharides, the nanoparticles enhanced antimicrobial efficacy markedly and exhibited long-acting antibacterial activity.
机译:由于它们在体内的生物相容性和生物降解性,天然多糖是用于递送活性成分或药物的有效纳米载体。此外,生物活性多糖,如茶,灵芝和MOMORDICA Charantia多糖(TP,GLP和MCP),具有抗菌,抗氧化剂,抗肿瘤和抗病毒性质。在本研究中,通过纳米沉淀方法制备茶,灵芝,和Momordica Charantia多糖纳米粒子(TP-NPS,GLP-NPS和MCP-NPS)。当乙醇与水比为10:1时,球形多糖纳米颗粒的直径最小,TP-NPS,GLP-NPS和MCP-NP的平均粒径为99 +/- 15,95 + / - 7和141 +/- 9 nm。当暴露于热量时,增加离子强度和pH水平,纳米颗粒表现出优异的稳定性和比相应多糖更高的活性。在生理条件(pH7.4)中,纳米颗粒按以下顺序进行了不同的蛋白质吸附能力:MCP-NPS> tp-nps& GLP-NPS。此外,与相应的多糖相比,纳米颗粒的2,2-二苯基-1-富铬基(DPPH),羟基),羟基自由基和超氧化物的自由基清除率增加了9-25%。与生物活性多糖相比,纳米颗粒显着增强了抗菌效力并表现出长效的抗菌活性。

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