Cytotoxicity and Genotoxicity of Biogenic Silver Nanoparticles in A549 and BEAS-2B Cell Lines.

IF 4.7 3区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Bioinorganic Chemistry and Applications Pub Date : 2022-09-23 eCollection Date: 2022-01-01 DOI:10.1155/2022/8546079
Musthahimah Muhamad, Nurhidayah Ab Rahim, Wan Adnan Wan Omar, Nik Nur Syazni Nik Mohamed Kamal
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引用次数: 8

Abstract

Introduction: Biogenic silver nanoparticles (AgNPs-GA) were successfully synthesised using Garcinia atroviridis leaf extract as a reducing agent, which has ethnopharmacological claims against various diseases including cancer. Aim of the Study. Aim of the study is to discover whether AgNPs-GA has cytotoxic and genotoxic effects on cancerous (A549) and noncancerous (BEAS-2B) human lung cells.

Materials and methods: The cytotoxicity profiles of AgNPs-GA were characterized by MTT assay, intracellular reactive oxygen species (ROS) assay, and DAPI and AOPI double staining, whilst genotoxicity was assessed using Comet Assay analysis. The level of silver ions (Ag+) and cellular uptake of AgNPs-GA were evaluated by ICP-OES and TEM analyses, respectively.

Results: A significant cytotoxic effect was observed by AgNPs-GA on both A549 and BEAS-2B cell lines, with IC50 values of 20-28 μg/ml and 12-35 μg/ml, respectively. The cytotoxicity profile of AgNPs-GA was also accompanied by a pronounced increase in ROS production, DNA damage, and apoptosis. Moreover, Ag+ was also detected in cells exposed to AgNPs-GA threefold higher compared to controls. In this study, AgNPs-GA were endocytosed within lysosomes, which may direct to secondary toxicity effects including oxidative stress, impairment of the cell membrane, DNA fragmentation, and cell death.

Conclusions: Taken together, novel toxicological-related mechanisms by AgNPs-GA were proposed involving the generation of ROS that causes DNA damage which led to programmed cell death in both A549 and BEAS-2B cells. Therefore, a combination of scientific assessments is constantly needed to ensure that the quality of biosynthesized nanoparticles is controlled and their safe development is promoted.

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生物源性纳米银对A549和BEAS-2B细胞株的细胞毒性和遗传毒性。
摘要以黄毒藤叶提取物为还原剂,成功合成了生物源银纳米颗粒(AgNPs-GA),具有抗多种疾病(包括癌症)的民族药理学功效。研究目的:该研究的目的是发现AgNPs-GA是否对癌性(A549)和非癌性(BEAS-2B)人肺细胞具有细胞毒性和基因毒性作用。材料和方法:采用MTT法、细胞内活性氧(ROS)法、DAPI和AOPI双染色法对AgNPs-GA的细胞毒性进行表征,采用Comet assay法评估遗传毒性。分别用ICP-OES和TEM分析银离子(Ag+)水平和AgNPs-GA的细胞摄取。结果:AgNPs-GA对A549和BEAS-2B细胞株均有明显的细胞毒作用,IC50值分别为20 ~ 28 μg/ml和12 ~ 35 μg/ml。AgNPs-GA的细胞毒性还伴随着ROS产生、DNA损伤和细胞凋亡的显著增加。此外,暴露于AgNPs-GA的细胞中Ag+的含量也比对照组高出三倍。在本研究中,AgNPs-GA在溶酶体内被内吞,这可能导致二次毒性作用,包括氧化应激、细胞膜损伤、DNA断裂和细胞死亡。综上所述,我们提出了AgNPs-GA的新的毒理学相关机制,涉及产生ROS,导致DNA损伤,从而导致A549和BEAS-2B细胞的程序性细胞死亡。因此,不断需要科学评价的结合,以确保生物合成纳米颗粒的质量得到控制,并促进其安全发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioinorganic Chemistry and Applications
Bioinorganic Chemistry and Applications 化学-生化与分子生物学
CiteScore
7.00
自引率
5.30%
发文量
105
审稿时长
>12 weeks
期刊介绍: Bioinorganic Chemistry and Applications is primarily devoted to original research papers, but also publishes review articles, editorials, and letter to the editor in the general field of bioinorganic chemistry and its applications. Its scope includes all aspects of bioinorganic chemistry, including bioorganometallic chemistry and applied bioinorganic chemistry. The journal welcomes papers relating to metalloenzymes and model compounds, metal-based drugs, biomaterials, biocatalysis and bioelectronics, metals in biology and medicine, metals toxicology and metals in the environment, metal interactions with biomolecules and spectroscopic applications.
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