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首页> 外文期刊>Dyes and Pigments >The development of coumarin Schiff base system applied as highly selective fluorescent/colorimetric probes for Cu2+ and tumor biomarker glutathione detection
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The development of coumarin Schiff base system applied as highly selective fluorescent/colorimetric probes for Cu2+ and tumor biomarker glutathione detection

机译:CoMarin Schiff基础系统的开发应用于Cu2 +和肿瘤生物标志物谷胱甘肽检测的高选择性荧光/比色探针

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Overexpression of tumor biomarker glutathione (GSH) has been documented in numerous types of cancers, therefor GSH-activated light-up chemosensors for tumor identification require great attention. A new colorimetric/fluorescent probe (7-(diethylamino)-2-oxo-2H-chromen-3-yl)methylene)-4-(dimethylamino) benzohydrazide (HL) was prepared, which could be applied in discriminating Cu2+ and further recognizing GSH based on its Cu complex. Firstly, the probe HL toward Cu2+ exhibited selective fluorescence quenching and obvious color change from yellow to orange-red under visible light. Further, when GSH was introduced to the Cu2+-2HL system, the fluorescence recovered rapidly due to the high affinity of GSH to Cu2+, meanwhile the color reverted back to former yellow. Based on fluorescence titration, the detection limits were calculated as 2.40 x 10(-8) M and 1.29 x 10(-7) M for Cu2+ and GSH, respectively. The combination mode of HL with Cu2+ was investigated in detail by Job plots, ESI-MS, FT-IR, and DFT studies. Probes HL and Cu2+-2HL showed relatively less toxicity and were employed for biological imaging in cells and zebrafish. Remarkably, the detection for endogenous GSH by this developed sensor platform implied great potential application prospect in cancer diagnosis.
机译:肿瘤生物标志物谷胱甘肽(GSH)的过度表达已在许多类型的癌症中记载,其中GSH激活的灯泡化学传感器用于肿瘤识别需要很大的关注。制备了一种新的比色/荧光探针(7-(二乙基氨基)-2-氧代-2H-Chromen-3-Y1)亚甲基)-4-(二甲基氨基)苯肼(HL),其可用于区分Cu2 +并进一步识别基于其Cu复合物的GSH。首先,在可见光下,探针H1显示出选择性荧光猝灭和从黄色至橙红色的明显颜色变化。此外,当将GSH引入Cu 2 + -2HL系统时,由于GSH至Cu2 +的高亲和力,荧光快速回收,同时颜色恢复到前黄色。基于荧光滴定,检测限为Cu2 +和GSH的2.40×10(-8)m和1.29×10(-7)m。通过作业地块,ESI-MS,FT-IR和DFT研究详细研究了HL的组合模式。探针H1和Cu2 + -2H1显示出相对较小的毒性,并且用于细胞和斑马鱼中的生物成像。值得注意的是,这种发达的传感器平台对内源GSH的检测隐含了癌症诊断的巨大潜在应用前景。

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