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生物源银纳米颗粒的抗癌潜力:一项机制研究。

Anticancer Potential of Biogenic Silver Nanoparticles: A Mechanistic Study.

作者信息

Khan Mohd Shahnawaz, Alomari Alya, Tabrez Shams, Hassan Iftekhar, Wahab Rizwan, Bhat Sheraz Ahmad, Alafaleq Nouf Omar, Altwaijry Nojood, Shaik Gouse M, Zaidi Syed Kashif, Nouh Wessam, Alokail Majed S, Ismael Mohamed A

机构信息

Protein Research Chair, Department of Biochemistry, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.

King Fahd Medical Research Center, King Abdulaziz University, Jeddah 21589, Saudi Arabia.

出版信息

Pharmaceutics. 2021 May 12;13(5):707. doi: 10.3390/pharmaceutics13050707.

Abstract

The continuous loss of human life due to the paucity of effective drugs against different forms of cancer demands a better/noble therapeutic approach. One possible way could be the use of nanostructures-based treatment methods. In the current piece of work, we have synthesized silver nanoparticles (AgNPs) using plant ( extract using AgNO3 as starting materials. The size, shape, and structure of synthesized AgNPs were confirmed by various spectroscopy and microscopic techniques. The average size of biosynthesized AgNPs was found to be in the range of 15 nm. The anticancer potential of these AgNPs was evaluated by a battery of tests such as MTT, scratch, and comet assays in breast (MCF-7) and colorectal (HCT-116) cancer models. The toxicity of AgNPs towards cancer cells was confirmed by the expression pattern of apoptotic (p53, Bax, caspase-3) and antiapoptotic (BCl-2) genes by RT-PCR. The cell viability assay showed an IC value of 5.44 and 9.54 µg/mL for AgNPs in MCF-7 and HCT-116 cell lines respectively. We also observed cell migration inhibiting potential of AgNPs in a concentration-dependent manner in MCF-7 cell lines. A tremendous rise (150-250%) in the production of ROS was observed as a result of AgNPs treatment compared with control. Moreover, the RT-PCR results indicated the difference in expression levels of pro/antiapoptotic proteins in both cancer cells. All these results indicate that cell death observed by us is mediated by ROS production, which might have altered the cellular redox status. Collectively, we report the antimetastasis potential of biogenic synthesized AgNPs against breast and colorectal cancers. The biogenic synthesis of AgNPs seems to be a promising anticancer therapy with greater efficacy against the studied cell lines.

摘要

由于缺乏针对不同形式癌症的有效药物,人类生命持续丧失,这需要一种更好/高尚的治疗方法。一种可能的方法是使用基于纳米结构的治疗方法。在当前的这项工作中,我们使用植物提取物(以硝酸银为起始原料)合成了银纳米颗粒(AgNPs)。通过各种光谱和显微镜技术确认了合成的AgNPs的尺寸、形状和结构。发现生物合成的AgNPs的平均尺寸在15纳米范围内。通过一系列测试,如在乳腺癌(MCF-7)和结直肠癌(HCT-116)模型中的MTT、划痕和彗星试验,评估了这些AgNPs的抗癌潜力。通过RT-PCR检测凋亡(p53、Bax、caspase-3)和抗凋亡(BCl-2)基因的表达模式,证实了AgNPs对癌细胞的毒性。细胞活力测定显示,AgNPs在MCF-7和HCT-116细胞系中的IC值分别为5.44和9.54μg/mL。我们还观察到AgNPs在MCF-7细胞系中以浓度依赖的方式具有抑制细胞迁移的潜力。与对照组相比,AgNPs处理导致ROS产生大幅增加(150-250%)。此外,RT-PCR结果表明两种癌细胞中促凋亡/抗凋亡蛋白的表达水平存在差异。所有这些结果表明,我们观察到的细胞死亡是由ROS产生介导的,这可能改变了细胞的氧化还原状态。总的来说,我们报告了生物合成的AgNPs对乳腺癌和结直肠癌的抗转移潜力。AgNPs的生物合成似乎是一种有前途的抗癌疗法,对所研究的细胞系具有更高的疗效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4748/8151171/de61d6ec4599/pharmaceutics-13-00707-g001.jpg

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