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Nondestructive Analysis of Tumor-Associated Membrane Protein Integrating Imaging and Amplified Detection in situ Based on Dual-Labeled DNAzyme

机译:基于双标签DNAzyme的肿瘤相关膜蛋白整合成像和原位扩增检测的无损分析

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摘要

Comprehensive analysis of the expression level and location of tumor-associated membrane proteins (TMPs) is of vital importance for the profiling of tumor cells. Currently, two kinds of independent techniques, i.e. ex situ detection and in situ imaging, are usually required for the quantification and localization of TMPs respectively, resulting in some inevitable problems.>Methods: Herein, based on a well-designed and fluorophore-labeled DNAzyme, we develop an integrated and facile method, in which imaging and quantification of TMPs in situ are achieved simultaneously in a single system. The labeled DNAzyme not only produces localized fluorescence for the visualization of TMPs but also catalyzes the cleavage of a substrate to produce quantitative fluorescent signals that can be collected from solution for the sensitive detection of TMPs.>Results: Results from the DNAzyme-based in situ imaging and quantification of TMPs match well with traditional immunofluorescence and western blotting. In addition to the advantage of two-in-one, the DNAzyme-based method is highly sensitivity, allowing the detection of TMPs in only 100 cells. Moreover, the method is nondestructive. Cells after analysis could retain their physiological activity and could be cultured for other applications.>Conclusion: The integrated system provides solid results for both imaging and quantification of TMPs, making it a competitive method over some traditional techniques for the analysis of TMPs, which offers potential application as a toolbox in the future.
机译:全面分析肿瘤相关膜蛋白(TMPs)的表达水平和位置对于分析肿瘤细胞至关重要。目前,TMP的定量和定位通常需要异位检测和原位成像两种独立的技术,从而导致一些不可避免的问题。>方法:设计和荧光团标记的DNAzyme,我们开发了一种集成且简便的方法,其中在单个系统中同时实现原位TMP的成像和定量。标记的DNAzyme不仅产生用于TMP可视化的局部荧光,而且催化底物的裂解以产生定量的荧光信号,可以从溶液中收集这些信号以用于TMP的灵敏检测。>结果:基于DNA酶的TMP的原位成像和定量与传统的免疫荧光和蛋白质印迹非常吻合。除了二合一的优势外,基于DNAzyme的方法还具有很高的灵敏度,可仅检测100个细胞中的TMP。而且,该方法是非破坏性的。经过分析的细胞可以保留其生理活性,并可以进行其他用途的培养。>结论:该集成系统为TMP的成像和定量提供了可靠的结果,使其成为一些传统方法的竞争方法。对TMP的分析,这将在将来作为工具箱提供潜在的应用。

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