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Cyclotron Production of Radioactive ${hbox{CeO}} _{2}$ Nanoparticles and Their Application for In Vitro Uptake Studies

机译:放射性$ {hbox {CeO}} _ {2} $纳米颗粒的回旋加速器生产及其在体外吸收研究中的应用

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摘要

Nowadays, a wide variety of nanoparticles (NPs) are applied in different fields such as medical science and industry. Due to their large commercial volume, the OECD Working Party on Manufactured Nanomaterials (NMs) has proposed to study a set of 14 nanomaterials, one of which being cerium oxide (${hbox{CeO}} _{2}$). In particular, ${hbox{CeO}} _{2}$ based NPs are widely used in automotive industry, healthcare, and cosmetics. In this paper, we propose a method for the production of radioactive ${hbox{CeO}} _{2}$ NPs. We demonstrate that they maintain the same physicochemical characteristics as the “cold” ones in terms of size distribution and Zeta potential; we develop a new protocol to assess their cellular interaction in immortalized mouse fibroblast cell line Balb/3T3, a model for the study of basal cytotoxicity and carcinogenic potential induced by chemicals and in the present case by NPs. Experimental result of this work, which shows a quasi-linear concentration-uptake response of cells, can be useful as a reference dose-uptake curve for explaining effects following biological uptake after exposure to ${hbox{CeO}} _{2}$ NPs.
机译:如今,各种各样的纳米颗粒(NPs)被应用于医学和工业等不同领域。由于其商业规模巨大,经合组织制造纳米材料工作组(NMs)建议研究一组14种纳米材料,其中一种是氧化铈($ {hbox {CeO}} _ {2} $)。特别是,基于$ {hbox {CeO}} _ {2} $的NP广泛用于汽车工业,医疗保健和化妆品。在本文中,我们提出了一种生产放射性$ {hbox {CeO}} _ {2} $ NP的方法。我们证明它们在大小分布和Zeta电位方面保持与“冷”相同的理化特性。我们开发了一种新的协议,以评估它们在永生的小鼠成纤维细胞细胞系Balb / 3T3中的细胞相互作用,Balb / 3T3是一种模型,用于研究由化学物质以及在当前情况下由NPs引起的基础细胞毒性和致癌潜力。这项工作的实验结果显示了细胞的准线性浓度-吸收反应,可作为参考剂量-吸收曲线来解释暴露于$ {hbox {CeO}} _ {2} $后生物吸收后的效应NP。

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