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Comparative cytotoxicity evaluation of lanthanide nanomaterials on mouse and human cell lines with metabolic and DNA-quantification assays

机译:用代谢和DNA定量分析比较镧系纳米材料对小鼠和人类细胞系的细胞毒性

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Lanthanide nanomaterials are considered a less toxic alternative to quantum dots for bioimaging applications. This study evaluated the cytotoxicity of terbium (Tb)-doped gadolinium oxide (Gd2O3) and dysprosium oxide (Dy2O3) nanoparticles exposed to human (BEAS-2B) and mouse (L929) cell lines at a concentration range of 200–2000 (μg/ml for 48 h. Two assay methods were utilized—WST-8 assay (colorimetric) based on mitochondrial metabolic activity and Pico-Green assay (fluorescence), which measures total DNA content. The authors' data showed that Tb-doped Gd2O3 nanoparticles were consistently more toxic than Tb-doped Dy2O3 nanoparticles. However, exposure to these nanomaterials caused a decrease in proliferation rate for both cell lines rather than a net loss of viable cells after 48 h of exposure. Additionally, there was some degree of discrepancy observed with the two assay methods. For the mouse L929 cell line, the WST-8 assay yielded consistently lower proliferation rates compared to the Pico-Green assay, whereas the opposite trend was observed for the human BEAS-2B cell line. This could arise because of the differential effects of these nanoparticles on the metabolism of L929 and BEAS-2B cells, which in turn may translate to differences in their postexposure proliferation rates. Hence, the Pico-Green assay could have an advantage over the WST-8 assay because it is not skewed by the differential effects of nanomaterials on cellular metabolism.
机译:对于生物成像应用,镧系元素纳米材料被认为是量子点毒性较小的替代品。这项研究评估了在200–2000(μg//)浓度范围下暴露于人(BEAS-2B)和小鼠(L929)细胞系的掺ter(Tb)的氧化oxide(Gd2O3)和氧化s(Dy2O3)纳米颗粒的细胞毒性。每毫升持​​续48小时,使用了两种测定方法:基于线粒体代谢活性的WST-8测定(比色法)和测量总DNA含量的Pico-Green测定(荧光法)作者的数据显示,掺Tb的Gd2O3纳米粒子相比于掺Tb的Dy2O3纳米颗粒,毒性更强,但是暴露于这些纳米材料会导致两种细胞系的增殖速率降低,而不是暴露48 h后存活细胞的净损失。两种检测方法:对于小鼠L929细胞系,与Pico-Green检测相比,WST-8检测产生的增殖率一直较低,而人类BEAS-2B细胞则观察到相反的趋势。由于这些纳米粒子对L929和BEAS-2B细胞代谢的不同影响,这又可能转化为它们在暴露后增殖速率上的差异。因此,Pico-Green分析可能比WST-8分析更具优势,因为它不会因纳米材料对细胞代谢的不同作用而产生偏差。

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