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Eco-friendly synthesis of iron nanoparticles by green tea extract and cytotoxicity effects on tumoral and non-tumoral cell lines

机译:环保铁纳米颗粒的合成绿茶提取物和细胞毒性的影响tumoral non-tumoral细胞系

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Zero-valent iron nanoparticles (ZVI NPs) have been employed in environmental and biomedical applications. These nanoparticles are used in the remediation of soil and water contaminated with heavy metals, and ZVI NPs can be used in the biomedical sector, as drug delivery system due to the large surface area-to-volume ratio. However, their toxicity should be better investigated. In this study, green tea extract was used to synthesize ZVI NPs. The green tea-synthesized nanoparticles (GT-ZVI NPs) were characterized by dynamic light scattering (DLS), X-ray diffraction, Fourier transform infrared spectroscopy and atomic force microscopy. DLS analysis revealed that the nanoparticles have average hydrodynamic size of 104 nm. The results indicated the presence of organic matter derived from green tea extract on the surface of GT-ZVI NPs. The average size of the nanoparticles at solid state was found to be 32 nm. The cytotoxicity of GT-ZVI NPs (1–150 μg/mL) was determined on tumoral (human chondrosarcoma line, SW1353 cells) and non-tumoral (Vero fibroblast cell line) by quantitative cell viability analysis and cell morphological evaluation. GT-ZVI NPs exerted more cytotoxic effect on tumoral line compared to non-tumoral cell line. The viability of SW1353cells was higher than 75% upon incubation with GT-ZVI NPs, at concentrations in the range of 1–60 μg/mL. At nanoparticle concentrations of 100 and 150 μg/mL, the viability of SW1353 cells decreased 69 and 62%, respectively. These results indicate that these nanoparticles might find important applications in cancer treatment with less toxicity to normal cells.
机译:零价铁纳米粒子(ZVI NPs)在环境和生物医学应用程序。修复土壤和水的污染重金属,ZVI NPs可用于由于生物医学领域,作为药物输送系统大型表面area-to-volume比率。其毒性应该更好的调查。这项研究中,使用绿茶提取物合成ZVI NPs。纳米颗粒(GT-ZVI NPs)的特征动态光散射(DLS), x射线衍射,红外傅里叶变换光谱和原子力显微镜。分析表明,纳米粒子平均水动力大小为104 nm。表明有机质的存在从绿茶中提取GT-ZVI表面NPs。固体被发现32 nm。细胞毒性的GT-ZVI NPs(1 - 150μg / mL)决定tumoral(人类软骨肉瘤,SW1353细胞)和non-tumoral(维罗纤维母细胞细胞株)定量细胞生存能力分析和细胞形态学评估。GT-ZVI NPs施加更多的细胞毒性的影响tumoral non-tumoral细胞系相比。的可行性SW1353cells高于75%与GT-ZVI NPs在孵化浓度范围内的1-60μg / mL。100年和150年的纳米颗粒浓度μg / mL,SW1353细胞的生存能力下降6962%,分别。这些纳米颗粒可能会发现重要应用于癌症治疗正常的细胞毒性。

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