首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A novel colorimetric and far-red emission ratiometric fluorescent probe for the highly selective and ultrafast detection of hypochlorite in water and its application in bioimaging
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A novel colorimetric and far-red emission ratiometric fluorescent probe for the highly selective and ultrafast detection of hypochlorite in water and its application in bioimaging

机译:一种新的比色和远红发射比例荧光荧光探针,用于水中次氯酸盐的高度选择性和超快检测及其在生物体中的应用

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摘要

Hypochlorous acid (HOCl)/hypochlorite (OCl~-), an important reactive oxygen species, plays a number of important roles in various physiological processes. However, abnormal levels of OCl~-can cause many serious diseases, such as atherosclerosis, rheumatoid arthritis, cardiovascular disease, and cancer. The development of efficient methods to monitor OCl~-in biological systems is therefore of particular importance. Thus, we herein report a novel isophorone-based fluorescent probe, i.e., DCOH-FR-OCl, for OCl~-detection. This probe was found to exhibit colorimetric and far-red ratiometric fluorescence response signals, excellent selectivity and sensitivity for OCl~-(detection limit, 88.06 nM), a remarkably large Stokes shift (158 nm), an ultrafast response (completed within 3 s), perfect photostability, and good water solubility (100% in aqueous media). DCOH-FR-OCl, as we know, is the first probe that can detect OCl~-by using two different response signals at an ultrafast speed with a large Stokes shift in fully aqueous media. Furthermore, DCOH-FR-OCl can be successfully employed in the real-time imaging of endogenous and exogenous OCl~-in living cells.
机译:次氯酸(HOCL)/次氯酸盐(OCL〜 - ),重要的活性氧物种,在各种生理过程中起多种重要作用。然而,OCL〜-CAN的异常水平导致许多严重疾病,例如动脉粥样硬化,类风湿性关节炎,心血管疾病和癌症。因此,在监测OCL〜-in生物系统的有效方法的发展是特别重要的。因此,我们在此报告了一种新的异佛酮的荧光探针,即DCOH-FR-OCL,用于OCL〜DETECTECT。发现该探针表现出比色和远红测定荧光响应信号,对OCL〜 - (检测极限,88.06nm)的优异选择性和灵敏度,一个非常大的斯托克斯班次(158nm),超快响应(在3秒内完成) ),完美的光稳定性和良好的水溶性(100%在水性介质中)。如我们所知,DCOH-FR-OCL是第一探头,它可以在超速速度下使用两个不同的响应信号,在完全水上介质中使用大型斯托克斯的超快速度来检测OCL〜--by。此外,DCOH-FR-OCL可以在内源性和外源OCL〜-IN活细胞的实时成像中成功使用。

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