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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Enhanced detection using stable isotope enriched Cu-65 doped ferrite nanoparticles for tracing studies
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Enhanced detection using stable isotope enriched Cu-65 doped ferrite nanoparticles for tracing studies

机译:使用稳定同位素的增强检测富集Cu-65掺杂铁氧体纳米粒子用于跟踪研究

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摘要

(65)Copper stable isotope doped ferrite nanoparticles with two dopant concentrations were prepared by a co-precipitation method for conducting biomedical experiments at environmentally relevant concentrations. The synthesized ((CuxFe1-xFe2O4)-Cu-65) nanoparticles were of 30 +/- 7 nm in size and the VSM measurements showed a magnetic moment of 30 emu/g of un-doped ferrite particles at 310 K. The amount of Cu-65 doped in the ferrite nanoparticles were calculated using ICP-MS. Cytocompatibility studies were performed through cellular toxicity assays on WRL68 liver cell line. MIT and ROS assay demonstrated cell viability in an order of Fe3O4> (Cu0.088Fe2)-Cu-65.(085O4>Cu0.143Fe3)-Cu-65.3104. The cytocompatibility and magnetic measurement data set indicate that by doping a small amount of copper, the ferrite nanoparticles can retain their magnetic properties and the cytocompatibility is not severely compromised. (Cu0.088Fe2.085O4)-Cu-65 (d(1)-Fe3O4) and (CuO)-Cu-65 nanoparticles were used for tracing experiments, wherein, even at a lower exposure concentration of 0.5 mu g/mL, Cu-65 can be detected in the media even when the copper background concentration is high. The results indicate the ability to perform biological studies at low exposure concentrations with enhanced detection ability. The proposed technique shows that isotope enriched copper doped ferrite can serve the purpose of quantifiable traceable nanocarriers. (C) 2020 Elsevier B.V. All rights reserved.
机译:(65)通过在环境相关浓度下进行生物医学实验的共沉淀方法制备具有两种掺杂剂浓度的铜稳定同位素掺杂的铁氧体纳米颗粒。合成的((cuxfe1-xfe2O4)-cu-65)纳米颗粒的尺寸为30 +/- 7nm,并且Vsm测量显示为310k的30 emu / g的磁矩为30 emu / g。使用ICP-MS计算掺杂在铁氧体纳米颗粒中的Cu-65。通过对WRL68肝细胞系的细胞毒性测定进行细胞偶联性研究。 MIT和ROS测定以Fe3O4>(Cu0.088Fe2)-Cu-65的顺序显示细胞活力。(085O4> Cu0.143Fe3)-Cu-65.3104。细胞相容性和磁性测量数据设定表示,通过掺杂少量铜,铁氧体纳米颗粒可以保留其磁性,并且细胞组分不会受到严重损害。 (Cu0.088Fe2.085O4)-Cu-65(D(1)-Fe3O4)和(CuO)-Cu-65纳米颗粒用于跟踪实验,其中,即使以较低的曝光浓度为0.5μg/ ml,Cu即使铜背景浓度高,也可以在介质中检测到-65。结果表明,在具有增强的检测能力下以低曝光浓度进行生物学研究的能力。所提出的技术表明,同位素富集的铜掺杂铁氧体可以用于可量化的可追踪纳米载体的目的。 (c)2020 Elsevier B.v.保留所有权利。

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