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首页> 外文期刊>The Journal of Nuclear Medicine >An In Vivo Spectral Multiplexing Approach for the Cooperative Imaging of Different Disease-Related Biomarkers with Near-Infrared Fluorescent Förster Resonance Energy Transfer Probes
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An In Vivo Spectral Multiplexing Approach for the Cooperative Imaging of Different Disease-Related Biomarkers with Near-Infrared Fluorescent Förster Resonance Energy Transfer Probes

机译:体内光谱多路复用方法与近红外荧光福斯特共振能量转移探针对不同疾病相关生物标记物的协同成像

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In recent years, much progress has been made in analyzing the molecular origin of many diseases in vivo. For most applications, attention has been devoted to the detection of single molecules only. In this study, we present a proof of concept for the straightforward monitoring of interactions between different molecules via Förster resonance energy transfer (FRET) in an in vivo spectral multiplexing approach using conventional small organic dyes covalently attached to antibodies. Methods: We coupled the fluorophores DY-682 (donor; absorption [abs]/emission [em], 674/712 nm), DY-505 (control donor; abs/em, 498/529 nm), and DY-782 (acceptor; abs/em, 752/795 nm) to the model antibody IgG. The occurrence of FRET between these fluorophores was assessed in vitro for conjugate mixtures adsorbed onto membranes, after accumulation into the phagocytic compartment of macrophages (J774 cells), and in vivo in a mouse edema model using a whole-body animal imaging system with multispectral analysis features. Results: When the free acceptor DY-782 was combined with the DY-682 donor, FRET occurred as a consequence of small dye-to-dye distances, unlike the case for mixtures of the dyes DY-782 and DY-505. Our proof of concept was also transferred to living cells after internalization of the DY-682-IgG-DY-782-IgG pair into macrophages and finally to animals, where intermolecular FRET was observed after systemic probe application in vivo in edema-bearing mice. Conclusion: Our simple cooperative-imaging approach enables the noninvasive detection of the presence of two or principally even more neighboring disease-related biomarkers. This finding is of high relevance for the in vivo identification of complex biologic processes requiring strong spatial interrelations of target molecules in key pathologic activation processes such as inflammation, cancer, and neurodegenerative diseases. [PUBLICATION ABSTRACT] Show less
机译:近年来,在体内分析许多疾病的分子起源方面已经取得了很大进展。对于大多数应用,注意力仅集中在单个分子的检测上。在这项研究中,我们提供了一个概念证明,可以使用共价连接抗体的常规小有机染料,在体内光谱多路复用方法中,通过福斯特共振能量转移(FRET)直接监视不同分子之间的相互作用。方法:我们将荧光团DY-682(供体;吸收[abs] /发射[em],674/712 nm),DY-505(对照供体; abs / em,498/529 nm)和DY-782(荧光体)耦合。受体; abs / em,752/795 nm)。在累积到巨噬细胞(J774细胞)的吞噬区后,体外评估了吸附在膜上的共轭混合物在这些荧光团之间的FRET发生情况,并使用全身动物成像系统和多光谱分析在体内对小鼠水肿模型进行了评估。特征。结果:当游离受体DY-782与DY-682供体结合时,由于染料与染料之间的距离较小,因此发生FRET,这与染料DY-782和DY-505的混合物不同。在将DY-682-IgG-DY-782-IgG对内化成巨噬细胞后,我们的概念证明也转移到了活细胞中,最后转移到了动物,在体内,在全身性水肿小鼠体内应用全身探针后,观察到了分子间FRET。结论:我们简单的协作成像方法能够无创地检测到两个或更主要是邻近疾病相关生物标志物的存在。该发现与体内鉴定复杂的生物学过程具有高度相关性,而复杂的生物学过程需要关键分子激活过程(例如炎症,癌症和神经退行性疾病)中目标分子的强空间相关性。 [出版物摘要]显示较少

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