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ISDoT: in situ decellularization of tissues for high-resolution imaging and proteomic analysis of native extracellular matrix

机译:ISDOT:原位脱细胞脱细胞化组织的高分辨率成像和天然细胞外基质的蛋白质组学分析

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摘要

The extracellular matrix (ECM) is a master regulator of cellular phenotype and behavior. It has a crucial role in both normal tissue homeostasis and disease pathology. Here we present a fast and efficient approach to enhance the study of ECM composition and structure. Termed in situ decellularization of tissues (ISDoT), it allows whole organs to be decellularized, leaving native ECM architecture intact. These three-dimensional decellularized tissues can be studied using high-resolution fluorescence and second harmonic imaging, and can be used for quantitative proteomic interrogation of the ECM. Our method is superior to other methods tested in its ability to preserve the structural integrity of the ECM, facilitate high-resolution imaging and quantitatively detect ECM proteins. In particular, we performed high-resolution sub-micron imaging of matrix topography in normal tissue and over the course of primary tumor development and progression to metastasis in mice, providing the first detailed imaging of the metastatic niche. These data show that cancer-driven ECM remodeling is organ specific, and that it is accompanied by comprehensive changes in ECM composition and topological structure. We also describe differing patterns of basement-membrane organization surrounding different types of blood vessels in healthy and diseased tissues. The ISDoT procedure allows for the study of native ECM structure under normal and pathological conditions in unprecedented detail.
机译:细胞外基质(ECM)是细胞表型和行为的主调节因子。它在正常组织稳态和疾病病理中具有至关重要的作用。在这里,我们提高了一种快速有效的方法来增强ECM组成和结构的研究。原位的组织脱细胞(ISDOT)原位称为,它允许整个器官脱节,使本地ECM架构完好无损。可以使用高分辨率荧光和二次谐波成像来研究这些三维脱细胞组织,可用于ECM的定量蛋白质组学询问。我们的方法优于其维护ECM结构完整性的其他方法,促进高分辨率成像和定量检测ECM蛋白。特别地,我们在正常组织中的基质形貌和初级肿瘤发育过程中进行了高分辨率的亚微米成像,并在小鼠中转移到转移的过程中,提供了转移性地质的第一个详细成像。这些数据表明,癌症驱动的ECM重塑是特定的器官,并且它伴随着ECM组成和拓扑结构的综合变化。我们还描述了围绕健康和患病组织的不同类型血管的地下室膜组织的不同模式。 ISDOT程序允许在前所未有的细节下在正常和病理条件下研究本地ECM结构。

著录项

  • 来源
    《Nature medicine》 |2017年第7期|共12页
  • 作者单位

    Univ Copenhagen UCPH Biotech Res &

    Innovat Ctr BRIC Copenhagen Denmark;

    Univ Copenhagen UCPH Biotech Res &

    Innovat Ctr BRIC Copenhagen Denmark;

    Univ Copenhagen UCPH Biotech Res &

    Innovat Ctr BRIC Copenhagen Denmark;

    Univ Copenhagen UCPH Biotech Res &

    Innovat Ctr BRIC Copenhagen Denmark;

    Univ Copenhagen UCPH Biotech Res &

    Innovat Ctr BRIC Copenhagen Denmark;

    Univ Copenhagen UCPH Biotech Res &

    Innovat Ctr BRIC Copenhagen Denmark;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医药、卫生;
  • 关键词

  • 入库时间 2022-08-20 04:24:49

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