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首页> 外文期刊>Nanotoxicology >Cytotoxicity of nanoparticles-Are the size and shape only matters? or the media parameters too?: a study on band engineered ZnS nanoparticles and calculations based on equivolume stress model
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Cytotoxicity of nanoparticles-Are the size and shape only matters? or the media parameters too?: a study on band engineered ZnS nanoparticles and calculations based on equivolume stress model

机译:纳米颗粒的细胞毒性 - 尺寸和形状仅是重要的吗? 或媒体参数也是困难的?:基于Eqcolume应力模型的乐队工程ZnS纳米粒子和计算研究

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Size dependent cytotoxicity of ZnS nanoparticles (NPs) was investigated in Human embryonic kidney (HEK-293) cell lines by MTT assay. The cells were incubated with varying concentration of ZnS NPs of sizes 4 nm, 10 nm and 25 nm for 48 h under different (cell culture) media viscosity conditions. The results showed that the toxicity is decreased with the particle size while it is negatively correlated with the viscosity of the media. Theoretical calculations were performed, by assuming equivolume stress model and the same is explained with schematics. Similarly, the effect of particle size and shape on toxicity is explained based on the theoretical calculation of the stress. The calculations showed that out of the possible cellular entry mechanisms for the cubic or cage shaped NPs, the highest toxicity is predicted for the entry through the corners while the lowest toxicity is predicted for the entry through the faces. The experimental observations depicting the cytotoxicity as a function of the viscosity of cell culture media was also validated by stress calculations and are found to be consistent. Studies on size and shape dependence of semiconductor NPs like ZnS is rather scarce, while the role of viscosity of cell culture media on the cytotoxicity is being reported for the first time. In summary, the study indicates that the cytotoxicity is an integral function of size and shape of NPs, physical parameters of the cell culture media in addition to the post entry biochemical interactions with the host cell.
机译:通过MTT测定研究了在人胚胎肾(HEK-293)细胞系中研究了ZnS纳米颗粒(NPS)的依赖性细胞毒性。在不同(细胞培养)培养基粘度条件下,在48小时的48m,10nm和25nm的尺寸4nm,10nm和25nm的不同浓度的ZnS NP孵育细胞。结果表明,毒性随粒径降低,而粒度与培养基的粘度呈负相关。通过假设等离性的应力模型来进行理论计算,并用示意图解释了该相同。类似地,基于应力的理论计算,解释了粒度和形状对毒性的影响。计算显示,除了立方体或笼形状的NPS的可能的细胞进入机构中,预计通过角落进入最高毒性,而通过面部进入最低毒性。描绘了作为细胞培养基粘度的函数的细胞毒性的实验观察也通过应力计算验证,并被发现是一致的。如ZnS等半导体NP的尺寸和形状依赖性的研究相当稀缺,而第一次报告了细胞培养基粘度对细胞毒性的作用。总之,该研究表明,除了与宿主细胞的后进入生物化学相互作用之外,细胞毒性是NPS的大小和形状的整体函数,细胞培养介质的物理参数。

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