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首页> 外文期刊>Analytical chemistry >Quantitative Imaging of Silver Nanoparticles and Essential Elements in Thin Sections of Fibroblast Multicellular Spheroids by High Resolution Laser Ablation Inductively Coupled Plasma Time-of-Flight Mass Spectrometry
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Quantitative Imaging of Silver Nanoparticles and Essential Elements in Thin Sections of Fibroblast Multicellular Spheroids by High Resolution Laser Ablation Inductively Coupled Plasma Time-of-Flight Mass Spectrometry

机译:通过高分辨率激光烧蚀电感耦合等离子体飞行时间质谱法测定成纤维细胞多细胞球体薄片中银纳米颗粒和薄切片基本元素的定量成像

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摘要

We applied high resolution laser ablation inductively coupled plasma time-of-flight mass spectrometry (LA-ICP-TOF-MS) with cellular spatial resolution for bioimaging of nanoparticles uptaken by fibroblast multicellular spheroids (MCS). This was used to quantitatively investigate interactions of silver nanoparticles (Ag NPs) and the distributions of intrinsic minerals and biologically relevant elements within thin sections of a fibroblast MCS as a three-dimensional in vitro tissue model. We designed matrix-matched calibration standards for this purpose and printed them using a noncontact piezo-driven array spotter with a Ag NP suspension and multielement standards. The limits of detection for Ag, Mg, P, K, Mn, Fe, Co, Cu, and Zn were at the femtogram (10(-15) g) level, which is sufficient to investigate intrinsic minerals in thin MCS sections (20 mu m thick). After incubation for 48 h, Ag NPs were enriched in the outer rim of the MCS but not detected in the core. The localization of Ag NPs was inhomogeneous in the outer rim, and they were colocalized with a single-cell-like structure visualized by Fe distribution (pixel size of elemental images: 5 X 0.5 mu m). The quantitative value for the total mass of Ag NPs in a thin section by the present method agreed with that obtained by ICP-sector field (SF)-MS with a liquid mode after acid digestion.
机译:我们应用了高分辨率激光烧蚀电感耦合等离子体飞行时间质谱(La-ICP-TOF-MS),具有细胞空间分辨率,用于通过成纤维细胞多细胞球体(MCS)覆盖的纳米颗粒的生物分析。这用于定量地研究银纳米颗粒(Ag NPS)的相互作用和本征矿物质和生物学上相关元件的分布,以及在成纤维细胞MCS的薄切片中作为三维体外组织模型。我们为此目的设计了矩阵匹配的校准标准,并使用具有AG NP悬架和多元首标准的非接触式压电驱动阵列PIPTER打印它们。 Ag,Mg,P,K,Mn,Fe,Co,Cu和Zn的检测限均在Memrogram(10(-15)g)水平上,这足以研究薄MCS部分中的内在矿物质(20 mu m厚)。孵育48小时后,在MCS的外边缘中富集Ag NPS但在核心中未检测到。 Ag NP的定位在外边缘中不均匀,它们与由Fe分布可视化的单细胞样结构(元素图像的像素尺寸:5×0.5μm)。本方法在薄截面中的Ag NP总质量的定量值同意通过ICP扇区(SF)-MS获得的酸消解后具有液体模式的ICP扇区(SF)。

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  • 来源
    《Analytical chemistry》 |2019年第15期|共7页
  • 作者单位

    Bundesanstalt Mat Forsch &

    Prufung BAM Richard Willstaetter Str 11 D-12489 Berlin Germany;

    Spetec GmbH Berghamer Str 2 D-85435 Erding Germany;

    Univ Vienna Inst Analyt Chem Waehringer Str 38 A-1090 Vienna Austria;

    Univ Vienna Inst Analyt Chem Waehringer Str 38 A-1090 Vienna Austria;

    Univ Vienna Inst Analyt Chem Waehringer Str 38 A-1090 Vienna Austria;

    Bundesanstalt Mat Forsch &

    Prufung BAM Richard Willstaetter Str 11 D-12489 Berlin Germany;

    Ajinomoto Co Inc Res Inst Biosci Prod &

    Fine Chem Kawasaki Ku Suzuki Cho 1-1 Kawasaki Kanagawa 2108681 Japan;

    Bundesanstalt Mat Forsch &

    Prufung BAM Richard Willstaetter Str 11 D-12489 Berlin Germany;

    Univ Tokyo Hongo Geochem Res Ctr Bunkyo Ku Hongo 7-3-1 Tokyo 1130033 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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