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首页> 外文期刊>Dyes and Pigments >A novel dual-excitation and dual-emission fluorescent probe (CQDs-O-NBD) based on carbon quantum dots for detection and discrimination of Cys/Hcy and GSH/H2S in living cells
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A novel dual-excitation and dual-emission fluorescent probe (CQDs-O-NBD) based on carbon quantum dots for detection and discrimination of Cys/Hcy and GSH/H2S in living cells

机译:一种基于碳量子点的新型双激发和双发射荧光探针(CQDS-O-NBD),用于检测和辨别活细胞中Cys / Hcy和GSH / H2S的鉴别

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摘要

Cysteine (Cys), homocysteine (Hcy), glutathione (GSH) and hydrogen sulfide (H2S) are essential active substance in human body. The identification and detection of biothiols and H2S are of great significance for the early diagnosis of certain diseases. In this paper, a new dual excitation and dual emission fluorescent probe, carbon quantum dot-O-7-nitrobenzo-2-oxa-1,3-diazole (CQDs-O-NBD), for the detection of biothiols and H2S was synthesized. The carbon quantum dots (CQDs-OH) (lambda ex/em maxima = 377 nm/467 nm) were synthesized by a microwave-assisted method using hydroquinone as the carbon source. Through the reaction of the phenolic hydroxyl group of the carbon quantum dots and 4-chloro-7-nitrobenzo-2-oxa-1,3-diazole (NBD-Cl), the CQDs-ONBD was synthesized. Due to the static quenching (SQ) and the photo-induced electron transfer (PET) from CQDs to NBD, the fluorescence of the CQDs-O-NBD is very weak. After adding biothiols and H2S, the ether bond of the CQDs-O-NBD was broken through nucleophilic substitution reaction, which led to the release of the CQDs-OH (channel 1 is turned on) and generation of a new compound NBD-thiols (channel 2). The CQDs-O-NBD as a probe shows the high selectivity and sensitivity for Cys/Hcy/GSH/NaHS (LOD of 0.24 mu M/0.21 mu M/0.19 mu M/ 0.18 mu M) over other aminos and ions by channel 1. The new formed compounds from NBD and Cys/Hcy have strong fluorescence under 470 nm wavelength light excitation (channel 2 is turned on), while the formed compounds from NBD and GSH/NaHS have no fluorescence (no channel 2), so the CQDs-O-NBD can discriminate Cys/Hcy (LOD: 0.07 mu M/0.06 mu M) from GSH/NaHS. In addition, the CQDs-O-NBD shows low toxicity and can be applied to the detection of Cys in fetal bovine serum and imaging in living cells.
机译:半胱氨酸(Cys)、同型半胱氨酸(Hcy)、谷胱甘肽(GSH)和硫化氢(H2S)是人体必需的活性物质。生物硫醇和H2S的识别和检测对某些疾病的早期诊断具有重要意义。本文合成了一种用于检测生物硫醇和H2S的新型双激发双发射荧光探针——碳量子点-O-7-硝基苯并-2-氧杂-1,3-二唑(CQDs-O-NBD)。以对苯二酚为碳源,采用微波辅助法合成了碳量子点(CQDs-OH)(lambda-ex/em-maxima=377 nm/467 nm)。通过碳量子点的酚羟基与4-氯-7-硝基苯并-2-氧-1,3-二唑(NBD-Cl)反应,合成了CQDs-ONBD。由于从CQDs到NBD的静态猝灭(SQ)和光诱导电子转移(PET),CQDs-O-NBD的荧光非常微弱。在添加生物硫醇和H2S后,CQDs-O-NBD的醚键通过亲核取代反应被打破,从而导致CQDs OH的释放(通道1开启)并生成新化合物NBD硫醇(通道2)。作为探针的CQDs-O-NBD显示了通道1对Cys/Hcy/GSH/NaHS(LOD为0.24μM/0.21μM/0.19μM/0.18μM)的高选择性和灵敏度。NBD和Cys/Hcy形成的新化合物在470 nm波长的光激发下具有强荧光(通道2打开),而NBD和GSH/NaHS形成的化合物没有荧光(没有通道2),因此CQDs-O-NBD可以区分Cys/Hcy(LOD:0.07μM/0.06μM)和GSH/NaHS。此外,CQDs-O-NBD具有低毒性,可用于胎牛血清中Cys的检测和活细胞成像。

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