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使用激光烧蚀电感耦合等离子体质谱法对大鼠脑切片中的铀进行成像:一种研究组织中与重金属相关的关键亚结构的新工具。

Imaging of uranium on rat brain sections using laser ablation inductively coupled plasma mass spectrometry: a new tool for the study of critical substructures affined to heavy metals in tissues.

作者信息

Becker J Sabine, Dobrowolska Justina, Zoriy Miroslav, Matusch Andreas

机构信息

Central Division of Analytical Chemistry, Research Center Jülich, 52425 Jülich, Germany.

出版信息

Rapid Commun Mass Spectrom. 2008 Sep;22(18):2768-72. doi: 10.1002/rcm.3673.

DOI:10.1002/rcm.3673
PMID:18697227
Abstract

The specific toxicity of trace metals and compounds largely depends on their bioavailability in different organs or compartments of the organism considered. Imaging mass spectrometry (IMS) using laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) with a spatial resolution in the 100 microm range was developed and employed to study heavy metal distribution in brain tissues for toxicological screening. Rat brain post-mortem tissues were stained in an aqueous solution of either uranium or neodymium (metal concentration 100 microg g(-1)) for 3 h. The incubation of heavy metal in thin slices of brain tissue is followed by an imaging mass spectrometric LA-ICP-MS technique. Stained rat brain tissue (thickness 30 microm) were scanned with a focused laser beam (wavelength 266 nm, diameter of laser crater 100 microm and laser power density 3 x 10(9) W cm(-2)). The ion intensities of (235)U(+), (238)U(+), (145)Nd(+) and (146)Nd(+) were measured by LA-ICP-MS within the ablated area. For quantification purposes, matrix-matched laboratory standards were prepared by dosing each analyte to the pieces of homogenized brain tissue. Imaging LA-ICP-MS allows structures of interest to be identified and the relevant dose range to be estimated.

摘要

痕量金属及其化合物的特定毒性在很大程度上取决于它们在所研究生物体不同器官或区室中的生物可利用性。利用激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)开发了空间分辨率在100微米范围内的成像质谱法(IMS),并用于研究脑组织中的重金属分布以进行毒理学筛查。大鼠脑死后组织在铀或钕的水溶液(金属浓度为100微克/克)中染色3小时。在脑组织薄片中孵育重金属后,采用成像质谱LA-ICP-MS技术。用聚焦激光束(波长266纳米,激光坑直径100微米,激光功率密度3×10⁹瓦/平方厘米)扫描染色的大鼠脑组织(厚度30微米)。通过LA-ICP-MS在烧蚀区域内测量(²³⁵)U⁺、(²³⁸)U⁺、(¹⁴⁵)Nd⁺和(¹⁴⁶)Nd⁺的离子强度。为了进行定量,通过将每种分析物加入匀浆脑组织碎片中来制备基质匹配的实验室标准品。成像LA-ICP-MS能够识别感兴趣的结构并估计相关剂量范围。

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