首页> 美国卫生研究院文献>Journal of Clinical and Translational Research >FITC-linked Fibrin-Binding Peptide and real-time live confocal microscopy as a novel tool to visualize fibrin(ogen) in coagulation
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FITC-linked Fibrin-Binding Peptide and real-time live confocal microscopy as a novel tool to visualize fibrin(ogen) in coagulation

机译:FITC连接的血纤蛋白结合肽和实时共聚焦显微镜是一种可视化凝血中血纤蛋白(原)的新型工具

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摘要

>Background and Aim: Although fibrinogen has been established as a key player in the process of coagulation, many questions about the role of fibrinogen under specific conditions remain. Confocal microscopic assessment of clot formation, and in particular the role that fibrinogen plays in this process, is commonly investigated using pre-labeled fibrinogen. This has a number of drawbacks, primarily that it is impossible to stain fibrin networks after their formation. The aim of the present study is to present an alternative for conveniently post-staining fibrin in a wide range of models/situations, in real time and with high resolution.>Methods: We combined a peptide known to bind fibrin and linked it to fluorescein isothiocyanate (FITC), creating the FITC-Fibrin-Binding Peptide (FFBP). We subsequently tested its fibrin-binding capability in vitro under static conditions, as well as under simulated flow, using real-time live confocal microscopy.>Results: Fibrin stained with FFBP overlaps with fibrin stained with fibrinogen pre-labeled with Alexa Fluor 647 following coagulation induction. In contrast to pre-labeled fibrinogen, FFBP also stains already formed fibrin networks. By combining FFBP with real-time live confocal microscopy even the visualization of single fibrin fibers is possible.>Conclusions: These data indicate that FFBP is a valid and valuable tool for real-time live confocal assessment of clot formation.>Relevance for patients: Our findings present a valuable alternative for the visualization of fibrin even after its formation, and we believe this approach will be particularly valuable for future investigations of important, but previously overlooked, aspects of clot formation.
机译:>背景和目标:尽管纤维蛋白原已被确立为凝血过程中的关键角色,但有关纤维蛋白原在特定条件下的作用的许多问题仍然存在。通常使用预先标记的纤维蛋白原研究共聚焦显微镜对血块形成的评估,尤其是纤维蛋白原在该过程中的作用。这具有许多缺点,主要是在形成纤维蛋白网络后不可能对其染色。本研究的目的是提出一种可在多种模型/情况下实时,高分辨率,方便地对纤维蛋白进行后染色的替代方法。>方法:我们结合了一种已知可结合的肽纤维蛋白并将其与异硫氰酸荧光素(FITC)连接,形成FITC-纤维蛋白结合肽(FFBP)。随后,我们使用实时实时共聚焦显微镜在静态和模拟流动条件下在体外测试了其纤维蛋白结合能力。>结果:FFBP染色的纤维蛋白与纤维蛋白原预染色的纤维蛋白重叠。凝固诱导后用Alexa Fluor 647标记。与预先标记的纤维蛋白原相反,FFBP也会染色已经形成的纤维蛋白网络。通过将FFBP与实时实时共聚焦显微镜相结合,甚至可以对单纤维蛋白纤维进行可视化。>结论:这些数据表明,FFBP是实时实时共聚焦评估血凝块形成的有效且有价值的工具>与患者的相关性:我们的发现为血纤维蛋白形成后的可视化提供了一种有价值的替代方法,而且我们认为这种方法对于将来对重要但先前被忽略的血凝块方面的研究特别有价值。编队。

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