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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >The impact of anticancer activity upon Beta vulgaris extract mediated biosynthesized silver nanoparticles (ag-NPs) against human breast (MCF-7), lung (A549) and pharynx (Hep-2) cancer cell lines
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The impact of anticancer activity upon Beta vulgaris extract mediated biosynthesized silver nanoparticles (ag-NPs) against human breast (MCF-7), lung (A549) and pharynx (Hep-2) cancer cell lines

机译:抗癌活性对βvulgaris的影响介导的生物合成的银纳米颗粒(Ag-NPS)对人乳腺(MCF-7),肺(A549)和咽部(HEP-2)癌细胞系

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The present study tried for a phyto-synthetic method of producing silver nanoparticles (Ag-NPs) with size controlled as and eco-friendly route that can lead to their advanced production with decorative tranquil morphology. By inducing temperature fluctuation of the reaction mixture from 25 to 80 degrees C the plasmon resonance band raised slowly which had an ultimate effect on size and shape of Ag-NPs as shown by UV-visible spectroscopy and TEM results. The biosynthesized nanoparticles showed good cytotoxic impact against MCF-7, A549 and Hep2 cells compared to normal cell lines. Compared to control plates, the percentage of cell growth inhibition was found to be high with as concentrations of Ag-NPs becomes more as determined by MTT assay. The AO/EtBr staining observations demonstrated that the mechanism of cell death induced by Ag-NPs was due to apoptosis in cancer cells. These present results propose that the silver nanoparticles (Ag-NPs) may be utilized as anticancer agents for the treatment of various cancer types. However, there is a need for study of in vivo examination of these nanoparticles to find their role and mechanism inside human body. Further, studies we plan to do biomarker fabrication from the green synthesized plant extract nanoparticles like silver, gold and copper nanoparticles with optimized shape and sizes and their enhancement of these noble nanoparticles.
机译:本研究试图为生产银纳米粒子(AG-NPS)的植物合成方法,其尺寸控制为和环保途径,可以导致其先进的生产与装饰性宁静的形态。通过将反应混合物的温度波动从25℃至80℃诱导,等离子体共振带缓慢升高,这对Ag-NP的尺寸和形状的尺寸和形状升高,如UV可见光光谱和TEM结果所示。与正常细胞系相比,生物合成的纳米颗粒对MCF-7,A549和HEP2细胞显示出良好的细胞毒性撞击。与控制板相比,发现细胞生长抑制的百分比高,因为Ag-NP的浓度变得更加由MTT测定法测定。 AO / ETBR染色观察表明,AG-NPS诱导的细胞死亡机制是由于癌细胞的凋亡。这些目前的结果提出了银纳米颗粒(Ag-NPS)可以用作治疗各种癌症类型的抗癌剂。然而,需要研究这些纳米颗粒的体内检查,以找到它们在人体内的作用和机制。此外,我们计划从绿色合成植物提取物纳米颗粒等生物标志物制造,如银,金和铜纳米粒子,其具有优化的形状和尺寸和它们的这些贵族纳米粒子的增强。

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