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Determining the Size and Concentration Dependence of Gold Nanoparticles in Vitro Cytotoxicity (IC_(50)) Test using WST-1 Assay

机译:使用WST-1测定法测定金纳米颗粒在体外细胞毒性(IC_(50))试验的尺寸和浓度依赖性

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Gold nanoparticles (AuNPs) received a great deal of attention for biomedical applications, especially in diagnostic imaging and therapeutics. Even though AuNPs have potential benefits in biomedical applications, the impact of AuNPs on human and environmental health still remains unclear. The use of AuNPs which is a high-atomic-number materials, provide advantages in terms of radiation dose enhancement. However, before this can become a clinical reality, cytotoxicity of the AuNPs has to be carefully evaluated. Cytotoxicity test is a rapid, standardized test that is very sensitive to determine whether the nanoparticles produced are harmful or benign on cellular components. In this work the size and concentration dependence of AuNPs cytotoxicity in breast cancer cell lines (MCF-7) are tested by using WST-1 assay. The sizes of AuNPs tested were 13 nm, 50 nm, and 70 nm. The cells were seeded in the 96-well plate and were treated with different concentrations of AuNPs by serial dilution for each size of AuNPs. The high concentration of AuNPs exhibit lower cell viability compared to low concentration of AuNPs. We quantified the toxicity of AuNPs in MCF-7 cell lines by determining the IC_(50) values in WST-1 assays. The IC_(50) values (inhibitory concentrations that effected 50% growth inhibition) of 50 nm AuNPs is lower than 13 nm and 70 nm AuNPs. Mean that, 50nm AuNPs are more toxic to the MCF-7 cells compared to smaller and larger sizes AuNPs. The presented results clearly indicate that the cytotoxicity of AuNPs depend not only on the concentration, but also the size of the nanoparticles.
机译:金纳米颗粒(AUNP)对生物医学应用有很大的关注,特别是在诊断成像和治疗中。尽管人群在生物医学应用中具有潜在的益处,但AUNP对人类和环境健康的影响仍然尚不清楚。使用高原子数材料的AUNP,在辐射剂量增强方面提供了优势。然而,在这可能成为临床现实之前,必须仔细评估AUNP的细胞毒性。细胞毒性测试是一种快速,标准化的试验,对确定产生的纳米颗粒是有害的或良性的细胞组分的迅速。在这项工作中,通过使用WST-1测定来测试乳腺癌细胞系(MCF-7)中AUNPS细胞毒性的大小和浓度依赖性。测试的尺寸为13nm,50nm和70nm。将细胞接种在96孔板中,并通过连续稀释每尺寸的AUNP,用不同浓度的AUNP处理。与低浓度的AUNP相比,高浓度的AUNP表现出较低的细胞活力。通过确定WST-1测定中的IC_(50)值,我们通过确定IC_(50)值来量化MCF-7细胞系中AUNP的毒性。 50nmαUnps的IC_(50)值(抑制50%生长抑制的抑制)低于13nm和70nm的aUnps。与较小且较大的尺寸AUNP相比,50nm AUNP对MCF-7细胞更毒性。所提出的结果清楚地表明肛交毒性不仅取决于浓度,还取决于纳米颗粒的大小。

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