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Design and Synthesis of Near-infrared Fluorescent Probes for Imaging of Biological Nitroxyl

机译:用于生物硝基成像的近红外荧光探针的设计与合成

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摘要

Nitroxyl (HNO), the reduced and protonated form of nitric oxide (NO), has recently been identified as an interesting and important signaling molecule in biological systems. However, research on its biosynthesis and bioactivities are hampered by the lack of versatile HNO detection methods applicable to living cells. In this report, two new near-infrared (NIR) probes were designed and synthesized for HNO imaging in living cells. One of the probes was found to display high sensitivity towards HNO, with up to 67-fold of fluorescence increment after reaction with HNO. The detection limit was determined to be as low as 0.043 μM. The probe displayed high selectivity towards HNO over other biologically related species including metal ions, reactive oxygen species, reactive nitrogen species and reactive sulfur species. Furthermore, the probe was shown to be suitable for imaging of exogenous and endogenous HNO in living cells. Interestingly, the probe was found to be mainly localized in lysosomes. We envision that the new NIR probe described here will serve as a useful tool for further elucidation of the intricate roles of HNO in living cells.
机译:近年来,硝基氧(HNO)是一氧化氮(NO)的还原和质子化形式,在生物系统中被认为是一种有趣且重要的信号分子。然而,由于缺乏适用于活细胞的通用HNO检测方法,阻碍了其生物合成和生物活性的研究。在本报告中,设计并合成了两种新的近红外(NIR)探针,用于活细胞中的HNO成像。发现其中一种探针显示出对HNO的高灵敏度,与HNO反应后荧光增量高达67倍。检出限被确定为低至0.043μM。该探针对HNO的选择性高于其他与生物有关的物种,包括金属离子,活性氧,活性氮和活性硫。此外,该探针显示适用于活细胞中外源和内源性HNO的成像。有趣的是,发现该探针主要位于溶酶体中。我们设想这里描述的新的NIR探针将用作进一步阐明HNO在活细胞中的复杂作用的有用工具。

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