首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Exploring 1,4-dihydroxyanthraquinone as long-range emissive ratiometric fluorescent probe for signaling Zn2+/PO43-: Ensemble utilization for live cell imaging
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Exploring 1,4-dihydroxyanthraquinone as long-range emissive ratiometric fluorescent probe for signaling Zn2+/PO43-: Ensemble utilization for live cell imaging

机译:探索1,4-二羟基蒽醌作为远程发射比例荧光探针,用于信号Zn2 + / PO43-:活细胞成像的组合利用

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摘要

Fluorescent 1,4-dihydroxyanthraquinone 1 was found to demonstrate its ratiometric signaling property upon interaction with divalent zinc (Zn2+). While the probe itself exhibited fluorescence emission in the yellow region (lambda em = 544 nm and 567 nm), binding with Zn2+ induced strong emission in the orange region (lambda em = 600 nm) which was mainly due to a combination of CHEF and ICT mechanism. The probe was found to be highly sensitive toward the detection of zinc and the limit of detection (LOD) was calculated to be 9 x 10(-7) M. The possibility of using this probe for real-time analysis was strongly supported by the striking stability of fluorescence signal for more than five days with similar fluorescence intensity as observed during instant signaling. The present probe works within physiological pH range and is devoid of any interference caused by the same group elements such as Cd2+/Hg2+. The probe possesses excellent excitation/emission wavelength profile and can penetrate cell membrane to image low concentration of zing inside living system. The in situ formed zinc-probe ensemble was further explored as ratiometric sensing platform for detecting another bio-relevant analyte phosphate anion through a zinc-displacement approach. (C) 2015 Elsevier B.V. All rights reserved.
机译:发现荧光1,4-二羟基蒽醌1在与二价锌(Zn2 +)相互作用时证明其比例信号传递特性。尽管探针本身在黄色区域(λem = 544 nm和567 nm)显示出荧光发射,但与Zn2 +的结合在橙色区域(λem = 600 nm)诱导了强发射,这主要是由于CHEF和ICT的结合机制。发现该探针对锌的检测高度敏感,并且检测极限(LOD)计算为9 x 10(-7)M。该探针强烈支持使用此探针进行实时分析。荧光信号具有超过五天的惊人稳定性,并且荧光强度与即时信号处理期间观察到的相似。本探针在生理pH范围内工作,并且没有由相同的Cd2 + / Hg2 +等族元素引起的任何干扰。该探针具有出色的激发/发射波长分布,可以穿透细胞膜以成像低浓度的活体内的锌。现场形成的锌-探针整体被进一步探索为比率传感平台,用于通过锌置换方法检测另一种与生物有关的分析物磷酸根阴离子。 (C)2015 Elsevier B.V.保留所有权利。

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