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Parametrizing the exposure of superparamagnetic iron oxide nanoparticles in cell cultures at different in vitro environments

机译:在不同体外环境下细胞培养物中超顺磁性氧化物纳米颗粒的参数化参数化

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The response of cells to the exposure of nanomaterials is crucial for determining their safety in their multiple uses; however, the majority of the in vitro experiments use monolayered cell cultures instead of comparing the behavior of the cells in 3D, a more realistic environment. Here, we have analyzed how the exposed surface of the cells, as well as the environment where cells grow, can influence the interaction and uptake of superparamagnetic iron oxide nanoparticles (SPIONs). We exposed three different cell lines (MDAMB-231, HL60 and bEnd3), which grow at different environments, to increasing concentrations of SPIONs (0-150 mu g center dot ml(-1)) and we evaluated parameters analyzing the morphological changes of the cell, iron uptake and cell viability. Results showed that upon exposure to SPIONs, cell viability and morphology are more affected when cells are growing in 3D systems, indicating that the increase of exposed surface area of the cells is a strong parameter to take in account when evaluating SPIONs or other materials or drugs. Our results clearly reinforce the use of more realistic environments, such as 3D, for the design of new drug delivery systems.
机译:细胞对纳米材料暴露的响应对于确定它们在多种用途中的安全性至关重要;然而,大多数体外实验使用单层细胞培养物,而不是比较3D中细胞的行为,更现实的环境。在这里,我们分析了细胞的暴露表面以及细胞生长的环境的分析,可以影响超顺磁性氧化铁纳米颗粒(酱)的相互作用和摄取。我们暴露了三种不同的细胞系(Mdamb-231,HL60和Bend3),其在不同的环境中生长,以增加散度浓度(0-150μmg中心点m1(-1)),并且我们评估了分析形态变化的参数细胞,铁吸收和细胞活力。结果表明,当细胞在3D系统中生长细胞生长时,细胞活力和形态受到更大的影响,表明电池的暴露表面区域的增加是在评估酱或其他材料或药物时考虑的强大参数。 。我们的结果显然加强了使用更现实的环境,例如3D,以便设计新的药物交付系统。

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