首页> 外文期刊>Analytica chimica acta >Effect of sample preparation techniques upon single cell chemical imaging: A practical comparison between synchrotron radiation based X-ray fluorescence (SR-XRF) and Nanoscopic Secondary Ion Mass Spectrometry (nano-SIMS)
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Effect of sample preparation techniques upon single cell chemical imaging: A practical comparison between synchrotron radiation based X-ray fluorescence (SR-XRF) and Nanoscopic Secondary Ion Mass Spectrometry (nano-SIMS)

机译:样品制备技术对单细胞化学成像的影响:同步辐射辐射的X射线荧光(SR-XRF)和纳米镜二离子质谱(纳米SIMS)的实际比较

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Analytical capabilities of Nanoscopic Secondary Ion Mass Spectrometry (nano-SIMS) and Synchrotron Radiation based X-ray Fluorescence (SR nano-XRF) techniques were compared for nanochemical imaging of polymorphonuclear human neutrophils (PMNs). PMNs were high pressure frozen (HPF), cryosubstituted, embedded in Spurr's resin and cut in thin sections (500 nm and 2 mu m for both techniques resp.) Nano-SIMS enabled nanoscale mapping of isotopes of C, N, O, P and S, while SR based nano-XRF enabled trace level imaging of metals like Ca, Mn, Fe, Ni, Cu and Zn at a resolution of approx. 50 nm. The obtained elemental distributions were compared with those of whole, cryofrozen PMNs measured at the newly developed ID16A nano-imaging beamline at the European Synchrotron Radiation Facility (ESRF) in Grenoble, France. Similarities were observed for elements more tightly bound to the cell structure such as phosphorus and sulphur, while differences for mobile ions such as chlorine and potassium were more pronounced. Due to the observed elemental redistribution of mobile ions such as potassium and chlorine, elemental analysis of high pressure frozen (HPF), cryo-substituted and imbedded cells should be interpreted critically. Although decreasing analytical sensitivity occurs due to the presence of ice, analysis of cryofrozen cells - close to their native state - remains the golden standard. In general, we found nanoscale secondary ion mass spectrometry (nano-SIMS) and synchrotron radiation based nanoscopic X-ray fluorescence (SR nano-XRF) to be two supplementary alternatives for nanochemical imaging of single cells at the nanoscale. (C) 2020 Elsevier B.V. All rights reserved.
机译:比较了纳米镜的分析能力(纳米SIMS)和同步辐射的基于同步辐射的X射线荧光(SR NANO-XRF)技术,用于多核人中性粒细胞的纳米化学成像(PMNS)。 PMNS是高压冷冻(HPF),冷冻液中,嵌入孢子树脂中,切割薄截面(用于两种技术的500nm和2μm。)纳米SIMS的纳米SIMS,使C,N,O,P和S,虽然基于SR的纳米XRF,但在大约的分辨率下使基于SR的纳米XRF是Ca,Mn,Fe,Ni,Cu和Zn等金属的痕量成像。 50 nm。将获得的元素分布与整体的低温分布进行比较,在法国格勒诺布尔的欧洲同步辐射设施(ESRF)的新开发的ID16a纳米成像束线上测量。观察到与细胞结构更紧密地结合的元素(如磷和硫)的元素观察相似性,而移动离子如氯和钾的差异更加明显。由于观察到的移动离子的元素再分布,例如钾和氯,高压冷冻(HPF),冷冻替代和嵌入细胞的元素分析应批判性地解释。虽然由于冰的存在而发生的分析敏感性降低,但是对低温细胞的分析 - 靠近其天然状态 - 仍然是黄金标准。通常,我们发现纳米级二次离子质谱(纳米SIM)和基于同步辐射的纳米镜X射线荧光(SR NANO-XRF)是纳米级在单细胞的纳米化学成像的两个补充替代方案。 (c)2020 Elsevier B.V.保留所有权利。

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