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Zinc oxide-quercetin nanocomposite as a smart nano-drug delivery system: Molecular-level interaction studies

机译:氧化锌 - 槲皮素纳米复合物作为智能纳米药物递送系统:分子水平相互作用研究

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In this study, zinc oxide-quercetin (ZnO-quercetin) nanocomposite was constructed as smart nano-drug delivery system. The amount of quercetin loaded onto the ZnO nanoparticle was found to be 210 mu g mg(-1). The quercetin release kinetics data indicates that the rate of quercetin release was faster in acidic condition (pH of typical cancer) compared to physiological condition. The molecular-level interaction of ZnO-quercetin nanocomposite formation was investigated by a combined experimental and theoretical investigation. The interaction studies have corroborated that 5-OH in the A-ring and 3-OH in the C-ring of quercetin were the most suitable positions for the ZnO interaction. The constructed ZnO-quercetin nanocomposite demonstrates an effective inhibition of the growth of breast cancer cells (MCF-7) with high biocompatibility (3T3-L1 cells). This study may provide a model path for the further development of smart nano-drug delivery system of metal oxides with hydrophobic natural drugs to treat cancer cells.
机译:在该研究中,氧化锌 - 槲皮素(ZnO-槲皮素)纳米复合材料被构建为智能纳米药物递送系统。将槲皮素的槲皮素的量发现为210μgmg(-1)。槲皮素释放动力学数据表明与生理条件相比,槲皮素释放的速率更快(典型癌症的pH值)。通过组合的实验和理论研究研究了Zno-槲皮素纳米复合材料的分子水平相互作用。相互作用研究已经证实了在槲皮素的C形环中的A形和3-OH中的5-OH是最合适的ZnO相互作用的位置。构建的ZnO-槲皮素纳米复合材料表明,有效抑制具有高生物相容性(3T3-L1细胞)的乳腺癌细胞(MCF-7)的生长。该研究可以提供具有疏水性天然药物的含金属氧化物的智能纳米药物输送系统的进一步发展的模型路径,以治疗癌细胞。

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