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Plutonium uptake and distribution in mammalian cells: molecular vs. polymeric plutonium.镎在哺乳动物细胞中的摄取和分布:分子型镎与聚合型镎。
Int J Radiat Biol. 2011 Oct;87(10):1023-32. doi: 10.3109/09553002.2011.584941. Epub 2011 Jul 19.
2
Trace metal imaging with high spatial resolution: applications in biomedicine.痕量金属高空间分辨率成像:在生物医学中的应用。
Metallomics. 2011 Jan;3(1):28-37. doi: 10.1039/c0mt00048e. Epub 2010 Dec 7.
3
Bio-metals imaging and speciation in cells using proton and synchrotron radiation X-ray microspectroscopy.利用质子和同步辐射X射线显微光谱法对细胞中的生物金属进行成像和形态分析。
J R Soc Interface. 2009 Oct 6;6 Suppl 5(Suppl 5):S649-58. doi: 10.1098/rsif.2009.0166.focus. Epub 2009 Jul 15.
4
Influence of sources on plutonium mobility and oxidation state transformations in vadose zone sediments.源对包气带沉积物中钚迁移率及氧化态转变的影响。
Environ Sci Technol. 2007 Nov 1;41(21):7417-23. doi: 10.1021/es0706302.
5
Characterization of U/Pu particles originating from the nuclear weapon accidents at Palomares, Spain, 1966 and Thule, Greenland, 1968.对1966年西班牙帕洛马雷斯和1968年格陵兰图勒核武器事故产生的铀/钚颗粒的表征。
Sci Total Environ. 2007 Apr 15;376(1-3):294-305. doi: 10.1016/j.scitotenv.2006.11.050. Epub 2007 Mar 2.
6
Intracellular distribution of TiO2-DNA oligonucleotide nanoconjugates directed to nucleolus and mitochondria indicates sequence specificity.靶向核仁与线粒体的二氧化钛-脱氧核糖核酸寡核苷酸纳米共轭物的细胞内分布表明了序列特异性。
Nano Lett. 2007 Mar;7(3):596-601. doi: 10.1021/nl0624723. Epub 2007 Feb 3.
7
X-ray fluorescence microprobe imaging in biology and medicine.生物医学中的X射线荧光微探针成像
J Cell Biochem. 2006 Dec 15;99(6):1489-502. doi: 10.1002/jcb.21047.
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Soft X-ray scanning transmission X-ray microscopy (STXM) of actinide particles.锕系元素颗粒的软X射线扫描透射X射线显微镜(STXM)
Anal Bioanal Chem. 2005 Sep;383(1):41-7. doi: 10.1007/s00216-005-3355-5. Epub 2005 Oct 19.
9
ATHENA, ARTEMIS, HEPHAESTUS: data analysis for X-ray absorption spectroscopy using IFEFFIT.雅典娜、阿尔忒弥斯、赫菲斯托斯:使用IFEFFIT进行X射线吸收光谱的数据分析。
J Synchrotron Radiat. 2005 Jul;12(Pt 4):537-41. doi: 10.1107/S0909049505012719. Epub 2005 Jun 15.
10
Micro-XAS studies with sorbed plutonium on tuff.
J Synchrotron Radiat. 1999 May 1;6(Pt 3):350-2. doi: 10.1107/S0909049598016811.

亚微米硬 X 射线荧光成像技术在合成元素中的应用。

Submicron hard X-ray fluorescence imaging of synthetic elements.

机构信息

Chemical Sciences and Engineering Division, Argonne National Laboratory, Argonne, IL 60439, USA.

出版信息

Anal Chim Acta. 2012 Apr 13;722:21-8. doi: 10.1016/j.aca.2012.01.064. Epub 2012 Feb 13.

DOI:10.1016/j.aca.2012.01.064
PMID:22444530
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3688452/
Abstract

Synchrotron-based X-ray fluorescence microscopy (XFM) using hard X-rays focused into sub-micron spots is a powerful technique for elemental quantification and mapping, as well as microspectroscopic measurements such as μ-XANES (X-ray absorption near edge structure). We have used XFM to image and simultaneously quantify the transuranic element plutonium at the L(3) or L(2)-edge as well as Th and lighter biologically essential elements in individual rat pheochromocytoma (PC12) cells after exposure to the long-lived plutonium isotope (242)Pu. Elemental maps demonstrate that plutonium localizes principally in the cytoplasm of the cells and avoids the cell nucleus, which is marked by the highest concentrations of phosphorus and zinc, under the conditions of our experiments. The minimum detection limit under typical acquisition conditions with an incident X-ray energy of 18 keV for an average 202 μm(2) cell is 1.4 fg Pu or 2.9×10(-20) moles Pu μm(-2), which is similar to the detection limit of K-edge XFM of transition metals at 10 keV. Copper electron microscopy grids were used to avoid interference from gold X-ray emissions, but traces of strontium present in naturally occurring calcium can still interfere with plutonium detection using its L(α) X-ray emission.

摘要

基于同步加速器的 X 射线荧光显微镜(XFM)使用聚焦到亚微米点的硬 X 射线,是一种用于元素定量和映射以及微光谱测量(如μ-XANES(X 射线吸收近边结构))的强大技术。我们已经使用 XFM 对单个大鼠嗜铬细胞瘤(PC12)细胞中的长寿命钚同位素(242)Pu 暴露后的钚(L3 或 L2 边缘)以及 Th 和较轻的生物必需元素进行成像和同时定量。元素图谱表明,钚主要定位于细胞的细胞质中,避免了细胞核,在我们实验的条件下,细胞核的磷和锌浓度最高。在典型的采集条件下,以 18keV 的入射 X 射线能量对平均 202μm2 的细胞进行检测,最低检测限为 1.4fg Pu 或 2.9×10-20 moles Pu μm-2,这与 10keV 时过渡金属 K 边 XFM 的检测限相似。使用铜电子显微镜网格可避免金 X 射线发射的干扰,但天然存在的钙中的锶痕迹仍会干扰使用其 Lα X 射线发射检测钚。