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Light sheet fluorescence microscopy guided MALDI-imaging mass spectrometry of cleared tissue samples

机译:光片荧光显微镜引导MALDI-成像清除组织样品的质谱

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Light sheet fluorescence microscopy (LSFM) of optically cleared biological samples represents a powerful tool to analyze the 3-dimensional morphology of tissues and organs. Multimodal combinations of LSFM with additional analyses of the identical sample help to limit the consumption of restricted specimen and reduce inter-sample variation. Here, we demonstrate the proof-of-concept that LSFM of cleared brain tissue samples can be combined with Matrix Assisted Laser Desorption/Ionization-Mass Spectrometry Imaging (MALDI-MSI) for detection and quantification of proteins. Samples of freshly dissected murine brain and of archived formalin-fixed paraffin-embedded (FFPE) human brain tissue were cleared (3DISCO). Tissue regions of interest were defined by LSFM and excised, (re)-embedded in paraffin, and sectioned. Mouse sections were coated with sinapinic acid matrix. Human brain sections were pre-digested with trypsin and coated with α-cyano-4-hydroxycinnamic acid matrix. Subsequently, sections were subjected to MALDI-time-of-flight (TOF)-MSI in mass ranges between 0.8 to 4?kDa (human tissue sections), or 2.5–25?kDa (mouse tissue sections) with a lateral resolution of 50?μm. Protein- and peptide-identities corresponding to acquired MALDI-MSI spectra were confirmed by parallel liquid chromatography tandem mass spectrometry (LC–MS/MS) analysis. The spatial abundance- and intensity-patterns of established marker proteins detected by MALDI-MSI were also confirmed by immunohistochemistry.
机译:光学表荧光显微镜(LSFM)的光学清除的生物样本代表了分析组织和器官的三维形态的强大工具。 LSFM的多峰组合具有相同样本的额外分析有助于限制限制样本的消耗并降低采样间变化。在这里,我们证明了概念的证据,即所清除的脑组织样品的LSFM可以与基质辅助激光解吸/电离质谱成像(MALDI-MSI)组合以检测和定量蛋白质。清除新杀菌鼠脑和存档的福尔马林固定石蜡包埋(FFPE)人脑组织的样品被清除(3DISCO)。感兴趣的组织区域由LSFM定义并切除,(重新) - 在石蜡中浸渍和切片。将小鼠部分涂有锡丁基酸基质。用胰蛋白酶预先消化人脑切片并涂覆α-氰基-4-羟基氨基酸基质。随后,在横向分辨率为50的横向分辨率,将切片对0.8至4μl(人组织切片),或2.5-25克(小鼠组织切片)的块间距(TOF) - 含量为0.8至4μl或2.5-25℃/ kDa(小鼠组织部分)。 ?μm。通过平行液相色谱串联质谱(LC-MS / MS)分析来确认对应于获得的MALDI-MSI光谱的蛋白质和肽标识。通过免疫组织化学证实了MALDI-MSI检测到的已建立的标志物的空间丰富和强度模式。

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