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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Evaluation of sample preparation methods for single cell quantitative elemental imaging using proton or synchrotron radiation focused beams
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Evaluation of sample preparation methods for single cell quantitative elemental imaging using proton or synchrotron radiation focused beams

机译:评估使用质子或同步辐射聚焦束进行单细胞定量元素成像的样品制备方法

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摘要

Particle induced X-ray emission with a focused beam (μPIXE) and synchrotron-based X-ray micro-fluorescence (μSXRF) are used to determine the distribution and contents of trace elements in single cells. A proper sample preparation method is required to ensure that the elemental distribution is preserved spatially and quantitatively. The aim of this study was to establish an optimal sample preparation method for single whole cell microanalysis, compatible with both μPIXE and μSXRF techniques. To find the most efficient method, we used PC12 cells as the cellular model and compared four widely applied protocols using a combination of rinsing solutions (phosphate buffered saline or ammonium acetate) and fixation methods (cryofixation or chemical fixation with 3% paraformaldehyde or methanol). The results showed a loss of diffusible elements K and Mg and an increase in Na, S, Cl and Zn concentrations in chemically fixed cells compared to cryofixed cells. In addition, K/Na and Cl/K cellular ratios indicated a good preservation of the chemical and structural integrity of cryofixed cells but not those of chemically fixed ones. The disturbance of elemental distributions after chemical fixation was also observed on rat brain tissue sections. Our results suggest that the optimal sample preparation method to study elemental distribution in single whole cells prepared for X-ray microanalysis is achieved when cells are rinsed with ammonium acetate, quickly frozen by plunging into liquid nitrogen-chilled cryogenic fluid and freeze-dried at low temperatures. This protocol was also successfully validated on rat primary hippocampal neurons, a delicate in vitro neuronal model.
机译:使用聚焦束(μPIXE)和基于同步加速器的X射线微荧光(μSXRF)进行粒子诱导的X射线发射,以确定单细胞中微量元素的分布和含量。需要一种适当的样品制备方法来确保元素分布在空间和数量上得以保留。这项研究的目的是建立一种适用于单个全细胞微量分析的最佳样品制备方法,与μPIXE和μSXRF技术兼容。为了找到最有效的方法,我们使用PC12细胞作为细胞模型,并比较了冲洗溶液(磷酸盐缓冲液或醋酸铵)和固定方法(3%多聚甲醛或甲醇的低温固定或化学固定)的组合,比较了四种广泛应用的方案。结果显示,与冷冻固定细胞相比,化学固定细胞中可扩散元素K和Mg的损失以及Na,S,Cl和Zn浓度的增加。此外,K / Na和Cl / K细胞比表明冷冻固定细胞的化学和结构完整性得到了很好的保存,而化学固定细胞则没有。在化学固定后,在大鼠脑组织切片上也观察到元素分布的紊乱。我们的结果表明,当用醋酸铵冲洗细胞,将其浸入液氮冷却的低温流体中进行快速冷冻并在低温下冷冻干燥时,可以实现研究用于X射线微分析的单个全细胞中元素分布的最佳样品制备方法。温度。该协议也已在大鼠原代海马神经元(一种精致的体外神经元模型)上成功验证。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2015年第12期|2525-2532|共8页
  • 作者单位

    University of Bordeaux, CENBG, UMR 5797, Gradignan, France,CNRS, IN2P3, CENBG, UMR 5797, Gradignan, France;

    University of Bordeaux, CENBG, UMR 5797, Gradignan, France,CNRS, IN2P3, CENBG, UMR 5797, Gradignan, France;

    University of Bordeaux, CENBG, UMR 5797, Gradignan, France,CNRS, IN2P3, CENBG, UMR 5797, Gradignan, France;

    University of Bordeaux, CENBG, UMR 5797, Gradignan, France,CNRS, IN2P3, CENBG, UMR 5797, Gradignan, France;

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