10-year stability of magnetite nanopowder prepared by the exploding wire method: is it a useful feature for environment safety and biomedical applications?

I. Khlusov, A. Omelyanchik, V. V. Rodionova, V. Shupletsova, O. Khaziakhmatova, K. Yurova, L. Litvinova, I. K. Norkin
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Abstract

Aim. To analyze the structural, magnetic, and cytotoxic features of magnetite nanoparticles (MNPs) prepared by the exploding wire method and stored in a dark place at ambient temperature (65 ± 15% humidity, air pressure 760± 20 mm Hg., temperature 22 ± 4 °C) for 10 years.Materials and methods. The properties of MNPs were analyzed by X-ray diffraction (XRD), transmission electron microscopy (TEM) and selected area electron diffraction (SAED), and vibrating-sample magnetometer (VSM). Viability of human blood mononuclear leukocytes was determined using 0.4% trypan blue staining after 24-hour culture with the nanopowder.Results. The calculated size of the particles remained almost unchanged after 10 years of storage. The XRD and SAED patterns showed that crystallinity was preserved for 10 years. The diameter of the crystalline component of MNPs (DXRD) was close to the particle size determined by TEM. It confirms high crystallinity of the tested nanoparticles. Saturation magnetization (MS) of the MNP powder after 10 years of storage was unexpectedly higher than that of the as-prepared MNP powder. Reduced remanent magnetization (MR / MS) was equal for both samples within the margin of error. No cytotoxic effect of MNPs in vitro was detected in the long-term study.Conclusion. No dramatic changes in the structural, magnetic, and cytotoxic features of MNPs were noted after 10 years of storage. It indicated 10-year stability of MNP powder that may be a useful feature for environment safety and biomedical applications.
爆炸线法制备的磁铁矿纳米粉的10年稳定性:它对环境安全和生物医学应用有用吗?
的目标。分析爆炸丝法制备的磁铁矿纳米颗粒(MNPs)在环境温度(湿度65±15%,气压760±20 mm Hg,温度22±4℃)下保存10年的结构、磁性和细胞毒性特征。材料和方法。采用x射线衍射(XRD)、透射电子显微镜(TEM)、选择区域电子衍射(SAED)和振动样品磁强计(VSM)分析了MNPs的性质。用0.4%台盼蓝染色法测定人血单核白细胞24小时培养后的活力。经过10年的储存,计算出的颗粒大小几乎没有变化。XRD和SAED分析表明,该材料的结晶度保持了10年。MNPs晶体成分的直径(DXRD)与TEM测定的粒径接近。它证实了被测纳米颗粒的高结晶度。MNP粉末贮存10年后的饱和磁化强度(MS)出乎意料地高于制备的MNP粉末。两种样品的还原剩余磁化强度(MR / MS)在误差范围内相等。长期研究未发现MNPs的体外细胞毒作用。储存10年后,MNPs的结构、磁性和细胞毒性特征没有显著变化。这表明MNP粉末具有10年的稳定性,可能是环境安全和生物医学应用的有用特征。
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