Cao Ying, Liu Jiaojiao, Zou Lina, Ye Baoxian, Li Gaiping
College of Chemistry, Zhengzhou University, Zhengzhou, 450001, PR China.
College of Chemistry, Zhengzhou University, Zhengzhou, 450001, PR China.
Anal Chim Acta. 2021 Feb 8;1145:46-51. doi: 10.1016/j.aca.2020.12.019. Epub 2020 Dec 15.
In this work, a facile ratiometric fluorescence sensor for GSH measurement was designed based on MnO nanosheet (NS), carbon dots (CDs), as well as a simple substrate o-phenylenediamine (OPD). Herein, MnO NS played triple essential roles in the sensing system. First, it could be reduced by GSH through a special reaction, and therefore served as GSH recognizer. Second, it played as a fluorescence nanoquencher to strongly quench the fluorescence of CDs. Third, it could directly oxidize OPD to yield a luminescent product 2, 3-diaminophenazine (DAP) via the intrinsic oxidase-like activity. It revealed that MnO NS could be reduced to Mn in the presence of GSH. Thus its oxidase-like activity and fluorescence quenching abilities were inhibited, which then restricted the generation of DAP and recovered the fluorescence of CDs. Based on this phenomenon, a novel ratiometric fluorescence sensor for GSH determination was fabricated by measuring the ratio of fluorescent intensity of DAP to that of CDs. Besides, the constructed ratiometric fluorescent sensor, which could be facilely operated with single-wavelength excitation, exhibited high sensitivity and selectivity with a wider linear range and a lower detection limit.
在本工作中,基于MnO纳米片(NS)、碳点(CDs)以及简单底物邻苯二胺(OPD)设计了一种用于谷胱甘肽(GSH)测定的简便比率荧光传感器。在此,MnO NS在传感系统中发挥了三重重要作用。首先,它可通过特殊反应被GSH还原,因此作为GSH识别器。其次,它作为荧光纳米猝灭剂强烈猝灭CDs的荧光。第三,它可通过其内在的类氧化酶活性直接氧化OPD生成发光产物2,3 - 二氨基吩嗪(DAP)。结果表明,在GSH存在下MnO NS可被还原为Mn。因此其类氧化酶活性和荧光猝灭能力受到抑制,进而限制了DAP的生成并恢复了CDs的荧光。基于此现象,通过测量DAP与CDs荧光强度之比构建了一种用于测定GSH的新型比率荧光传感器。此外,所构建的比率荧光传感器可通过单波长激发轻松操作,具有高灵敏度和选择性,线性范围宽且检测限低。