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首页> 外文期刊>Angewandte Chemie >Synthesis of Intrinsically Disordered Fluorinated Peptides for Modular Design of High-Signal F-19 MRI Agents
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Synthesis of Intrinsically Disordered Fluorinated Peptides for Modular Design of High-Signal F-19 MRI Agents

机译:高信号F-19 MRI试剂模块化设计的本质无序氟化肽的合成

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摘要

F-19 MRI is valuable for in vivo imaging due to the only trace amounts of fluorine in biological systems. Because of the low sensitivity of MRI however, designing new fluorochemicals remains a significant challenge for achieving sufficient F-19 signal. Here, we describe a new class of high-signal, water-soluble fluorochemicals as F-19 MRI imaging agents. A polyamide backbone is used for tuning the proteolytic stability to avoid retention within the body, which is a limitation of current state-of-the-art perfluorochemicals. We show that unstructured peptides containing alternating N-epsilon-trifluoroacetyllysine and lysine provide a degenerate F-19 NMR signal. F-19 MRI phantom images provide sufficient contrast at micromolar concentrations, showing promise for eventual clinical applications. Finally, the degenerate high signal characteristics were retained when conjugated to a large protein, indicating potential for in vivo targeting applications, including molecular imaging and cell tracking.
机译:由于生物系统中唯一的氟的氟,F-19 MRI对体内成像具有重要价值。然而,由于MRI的敏感性低,设计新的含氟化学物质仍然是实​​现足够的F-19信号的重大挑战。在这里,我们描述了一种新的高信号,水溶性含氟化合物作为F-19 MRI成像剂。聚酰胺骨架用于调节蛋白水解稳定性以避免在体内保持保留,这是对当前最先进的全氟化学物质的限制。我们表明,含有交替的N-ε-三氟乙酰氰基和赖氨酸的非结构化肽提供了退化的F-19 NMR信号。 F-19 MRI Phantom图像以微摩尔浓度提供足够的对比,显示最终临床应用的承诺。最后,当与大蛋白质缀合时保留退化的高信号特性,表明体内靶向应用的潜力,包括分子成像和细胞跟踪。

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