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首页> 外文期刊>Journal of mass spectrometry: JMS >Imaging of metals in biological tissue by laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS): state of the art and future developments.
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Imaging of metals in biological tissue by laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS): state of the art and future developments.

机译:激光消融电感耦合等离子体质谱法(LA-ICP-MS)对生物组织中金属的成像:最新技术和未来发展。

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Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) is well established as a sensitive trace and ultratrace analytical technique with multielement capability for bioimaging of metals and studying metallomics in biological and medical tissue. Metals and metalloproteins play a key role in the metabolism and formation of metal-containing deposits in the brain but also in the liver. In various diseases, analysis of metals and metalloproteins is essential for understanding the underlying cellular processes. LA-ICP-MS imaging (LA-ICP-MSI) combined with other complementary imaging techniques is a sophisticated tool for investigating the regional and cellular distribution of metals and related metal-containing biomolecules. On the basis of successful routine techniques for the elemental bioimaging of cryosections by LA-ICP-MSI with a spatial resolution between 200 and ~10 μm, the further development used online laser microdissection ICP-MSI to study the metal distribution in small biological sample sections (at the cellular level from 10 μm to the submicrometer range). The use of mass spectrometric imaging of metals and also nonmetals is demonstrated on a series of biological specimens. This article discusses the state of the art of bioimaging of metals in thin biological tissue sections by LA-ICP-MSI with spatial resolution at the micrometer scale, future developments and prospects for quantitative imaging techniques of metals in the nanometer range. In addition, combining quantitative elemental imaging by LA/laser microdissection-ICP-MSI with biomolecular imaging by matrix-assisted laser desorption/ionization-MSI will be challenging for future life science research.
机译:激光烧蚀电感耦合等离子体质谱仪(LA-ICP-MS)是一种灵敏的痕量和超痕量分析技术,具有多元素能力,可以对金属进行生物成像,并研究生物和医学组织中的金属组学,已被广泛确立。金属和金属蛋白在大脑以及肝脏中的新陈代谢和含金属沉积物的形成中起着关键作用。在各种疾病中,金属和金属蛋白的分析对于理解潜在的细胞过程至关重要。 LA-ICP-MS成像(LA-ICP-MSI)与其他互补成像技术相结合,是研究金属和相关含金属生物分子的区域和细胞分布的先进工具。基于成功的常规技术对LA-ICP-MSI进行冷冻切片的基本生物成像,空间分辨率在200至〜10μm之间,进一步的发展是使用在线激光显微切割ICP-MSI来研究小型生物样品切片中的金属分布(在从10μm到亚微米范围的细胞水平上)。在一系列生物样本上证明了对金属以及非金属的质谱成像的使用。本文讨论了通过LA-ICP-MSI在薄生物组织切片中对金属进行生物成像的技术现状,该技术具有微米级的空间分辨率,纳米级金属定量成像技术的未来发展和前景。此外,将通过LA /激光显微解剖-ICP-MSI进行的定量元素成像与通过基质辅助激光解吸/电离-MSI进行的生物分子成像相结合对于未来的生命科学研究将具有挑战性。

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