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The mode of antimicrobial action of curcumin depends on the delivery system: monolithic nanoparticles vs. supramolecular inclusion complex

机译:姜黄素的抗微生物作用方式取决于输送系统:整体纳米颗粒与超分子包合物复合物

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摘要

Curcumin has been known for a long time for its antimicrobial properties that are further increased by exposure to light. Due to the lowaqueous solubility of curcumin, appropriate delivery systems are required to facilitate its implementation. In this work, we compared the antimicrobial activity toward Escherichia coli of two curcumin formulations: methyl-beta-cyclodextrin supramolecular inclusion complex and polyelectrolyte-coated monolithic nanoparticles. The two formulations showed disparity both in the extent and in the mode of toxicity, highlighting the distinct properties of materials at the nanoscale. The tests showed that while curcumin-beta-cyclodextrin complexes exhibited a potent bactericidal activity, the curcumin nanoparticles were bacteriostatic. Illumination with blue light significantly increased the bactericidal efficacy of curcumin-cyclodextrin complexes but had limited influence on the activity of nanoparticulate curcumin. While the antimicrobial effect of the supramolecular complex was predominantly characterized by the increase in ROS and inhibition of electron transport, the primary attributes of the nanoparticle action were membrane depolarization and reduced ATP concentrations. Interestingly, the treatment with curcumin nanoparticles induced a filamentous phenotype of the bacterium. Our results suggest that the antimicrobial properties of curcumin depend upon a delivery formulation, which may have both practical and regulatory implications on the applicability and safety of curcumin nanomaterials.
机译:对于其抗微生物性质,姜黄素已知已经通过暴露于光而进一步增加的抗微生物性质。由于姜黄素的低水溶性,需要适当的递送系统来促进其实施。在这项工作中,我们将抗微生物活性与两种姜黄素制剂的大肠杆菌进行比较:甲基β-环糊精超分子包复合物和聚电解质涂覆的整体纳米颗粒。两种制剂在毒性范围和毒性模式下表现出差异,突出了纳米级材料的不同性质。测试表明,虽然姜黄素-β-环糊精配合物表现出有效的杀菌活性,但姜黄素纳米粒子被抑菌。蓝光照明显着提高了姜黄素 - 环糊精配合物的杀菌效果,但对纳米颗粒姜黄素的活性有限。虽然超分子复合物的抗微生物作用主要特征在于在ROS的增加和电子传输的抑制,所述纳米颗粒动作的主要属性是膜去极化和降低的ATP浓度。有趣的是,用姜黄素纳米粒子的处理诱导细菌的丝状表型。我们的研究结果表明,姜黄素的抗微生物性质取决于递送制剂,这可能对姜黄素纳米材料的适用性和安全性具有实际和监管的影响。

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  • 来源
    《RSC Advances》 |2017年第67期|共11页
  • 作者单位

    Agr Res Org Volcani Ctr Inst Postharvest &

    Food Sci 68 HaMaccabim Rd POB 15159 IL-7528809 Rishon Leziyyon Israel;

    Agr Res Org Volcani Ctr Inst Postharvest &

    Food Sci 68 HaMaccabim Rd POB 15159 IL-7528809 Rishon Leziyyon Israel;

    Southern Illinois Univ Dept Plant Soil &

    Agr Syst Carbondale IL 62901 USA;

    Agr Res Org Volcani Ctr Inst Postharvest &

    Food Sci 68 HaMaccabim Rd POB 15159 IL-7528809 Rishon Leziyyon Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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