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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Green and chemically synthesized zinc oxide nanoparticles: effects on in-vitro seedlings and callus cultures of Silybum marianum and evaluation of their antimicrobial and anticancer potential
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Green and chemically synthesized zinc oxide nanoparticles: effects on in-vitro seedlings and callus cultures of Silybum marianum and evaluation of their antimicrobial and anticancer potential

机译:绿色和化学合成的氧化锌纳米颗粒:对体外幼苗和胼患者癌的影响,对其抗微生物和抗癌潜力的评估

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摘要

Zinc oxide nanoparticles (ZnO-NPs) have been produced by physical and chemical methods. Here, the comparative evaluation of both chemically-synthesised ZnO-NPs (C-ZNPs) and in-vitro cultured S. marianum mediated green-synthesised ZnO-NPs (G-ZNPs) were investigated on seed germination frequency, root and shoot growth, callus induction and biochemical profile of medicinally important plant Silybum marianum . Of all the treatments, callus-mediated ZnO-NPs gave optimum results for seed germination (65%), plantlet’s root length (4.3?cm), shoot length (5.3?cm) and fresh and dry weights (220.4?g L ?1 and 21.23?g L ?1 , respectively). Similarly, the accumulation of phenolic (12.3?μg/mg DW) and flavonoid (2.8?μg/mg DW) contents were also enhanced in callus cultures treated with G-ZNPs. We also observed maximum antioxidant activity (99%) in callus cultures treated with G-ZNPs, however, in case of plantlets, these activities were found highest for in-vitro whole plant-mediated ZnO-NPs. Moreover, G-ZNPs also enhanced total protein content (265.32 BSAE/20g FW) in callus cultures. G-ZNPs were further assessed for their effects on several multidrug resistant bacterial strains and human liver carcinoma (HepG2) cells and our findings revealed that callus extracts treated with G-ZNPs show ameliorated antibacterial (highest zone of inhibition (19?mm) against Klebsiella pneumonia ) and anticancer (highest cytotoxicity of 64%) activities.
机译:通过物理和化学方法生产氧化锌纳米颗粒(ZnO-NPS)。此处,在种子萌发频率,根本和芽生长上研究了化学合成的ZnO-NPS(C-ZnP)和体外培养的S. Marianum介导的绿色合成ZnO-NPS(G-ZnPS)的对比评价。愈伤组织诱导和药物重要植物甲岛Marianum的生物化学概况。在所有治疗中,愈伤组织介导的ZnO-NPS为种子萌发(65%),植物根长度(4.3Ω·厘米),枝条(5.3Ωcm)和新鲜干重(220.4?gl≤1和21.23?g l?1分别)。类似地,在用G-ZnPS处理的愈伤组织培养物中也增强了酚醛(12.3×μg/ mg dw)和黄酮(2.8μg/ mg dw)含量的积累。我们还观察到用G-ZnP处理的愈伤组织培养物中的最大抗氧化活性(99%),然而,在植物的情况下,对于体外整个植物介导的ZnO-NPS,这些活性最高。此外,G-ZnPS还增强了愈伤组织培养物中的总蛋白质含量(265.32 bsae / 20g fw)。进一步评估G-ZnPS对几种多药抗性细菌菌株和人肝癌(HepG2)细胞的影响,我们发现用G-ZnPS处理的愈伤组织提取物显示出改善的抗菌(最高抑制(19≤mm)对抗克莱斯菌肺炎和抗癌(最高细胞毒性为64%)活动。

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