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Toxicity Evaluation of ZnO Nanostructures on L929 Fibroblast Cell Line using MTS Assay

机译:ZnO纳米结构对L929成纤维细胞系的毒性评价使用MTS测定

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ZnO has wide applications in medical and dentistry apart from being used as optoelectronic devices such as solar cells, photodetectors, sensors and light emitting diodes (LEDs). Therefore, the toxicity evaluation is important to know the toxicity level on normal cell line. The toxicity of two grades ZnO nanostructures, ZnO-4 and ZnO-8 have been carried out using cytotoxicity test of MTS assay on L929 rat fibroblast cell line. Prior to that, ZnO-4 and ZnO-8 were characterized for its morphology, structure and optical properties using FESEM, X-ray diffraction,and Photoluminescence respectively. The two groups revealed difference in morphology and exhibit slightly shifted of near band edge emission of Photoluminescence other than having a similar calculated crystallite size of nanostructures. The viability of cells after 72h were obtained and the statistical significance value was calculated using SPSS v20. The p value is more than 0.05 between untreated and treated cell with ZnO. This insignificant value of p>0.05 can be summarized as a non-toxic level of ZnO-4 and ZnO-8 on the L929 cell line.
机译:ZnO除了用作太阳能电池,光电探测器,传感器和发光二极管(LED)之外的光电器件,ZnO在医疗和牙科的应用范围内具有广泛的应用。因此,毒性评价对于了解正常细胞系上的毒性水平非常重要。在L929大鼠成纤维细胞系上使用MTS测定的细胞毒性试验进行了两种等级ZnO纳米结构,ZnO-4和ZnO-8的毒性。在此之前,ZnO-4和ZnO-8的特征在于,使用FESEM,X射线衍射和光致发光分别的形态,结构和光学性能。两组揭示了形态学的差异,并且表现出近距离光致发光的近频带边缘发射的差异,除了具有类似计算的纳米结构的微晶尺寸。获得72h后细胞的活力,并使用SPSS V20计算统计显着性值。在未处理和处理的细胞与ZnO之间的P值超过0.05。这种微不足道的P> 0.05值可以总结为L929细胞系上的ZnO-4和ZnO-8的无毒水平。

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