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Matrix-Assisted Laser Desorption/ Ionization Imaging Mass Spectrometry: Technology and Applications

机译:矩阵辅助激光解吸/电离成像质谱:技术和应用

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7.1 Introduction Biological imaging modalities are commonly used for characterization of health and disease, but each have trade-offs in the areas of spatial resolution, molecular coverage and specificity, and targeted or untargeted approaches. Stained tissue microscopy allows high spatial resolution to visualize tissue morphologies and cellular structure but provides little molecular information. Immunohistochemistry allows high spatial resolution similar to that of organic stains with the benefit of specific molecular information with the use of antibodies. However, molecular targets must be known in advance and antibodies may select for multiple molecular species. Matrix-assisted laser desorption/ionization (MALDI) imaging mass spectrometry (IMS) allows for the untargeted detection of hundreds to thousands of molecular species within a single experiment [1, 2]. Although it has somewhat lower spatial resolution than microscopy, IMS enables the detection of a wide range of biological species at increased molecular coverage with high spatial resolution and sensitivity using advanced data processing techniques. Herein, we present up-to-date examples of the current technologies of MALDI IMS.
机译:7.1引入生物成像方式通常用于表征健康和疾病,但各自在空间分辨率,分子覆盖和特异性以及有针对性或未明确的方法方面具有权衡。染色的组织显微镜允许高空间分辨率可视化组织形态和细胞结构,但提供很少的分子信息。免疫组织化学允许高空间分辨率与有机污渍的高空间分辨率与使用抗体的特定分子信息有益。然而,必须提前已知的分子靶标,并且抗体可以选择多种分子种类。基质辅助激光解吸/电离(MALDI)成像质谱(IMS)允许在单个实验中未确定检测数百至数千个分子种类[1,2]。虽然空间分辨率比显微镜稍低,但是,IMS可以通过高空间分辨率的增加的分子覆盖和使用先进的数据处理技术来检测各种生物物种。在此,我们提出了MALDI IMS当前技术的最新实例。

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