高等学校化学学报 ›› 2020, Vol. 41 ›› Issue (5): 1004.doi: 10.7503/cjcu20190689

• 分析化学 • 上一篇    下一篇

基于硫代黄素T诱导G-四联体构成的生物传感器检测铅离子

夏姣云1,*(),徐彤1,卿静1,熊艳2,刘俊杰1,龚福春1   

  1. 1. 长沙理工大学化学与食品工程学院, 长沙 410114
    2. 国家城市供水水质监测网长沙监测站, 长沙 410009
  • 收稿日期:2019-12-18 出版日期:2020-05-10 发布日期:2020-02-17
  • 通讯作者: 夏姣云 E-mail:xiajy625@163.com
  • 基金资助:
    湖南省自然科学基金(2018JJ2422);湖南省教育厅项目(18C0189)

Highly Sensitive Sensor for Lead Ion Based on Thioflavin T-induced G-quadruplex Formation

XIA Jiaoyun1,*(),XU Tong1,QING Jing1,XIONG Yan2,LIU Junjie1,GONG Fuchun1   

  1. 1. School of Chemistry and Food Engineering, Changsha University of Science and Technology, Changsha 410114, China
    2. National City Water Supply Water Quality Monitoring Network Changsha Monitoring Station, Changsha 410009, China
  • Received:2019-12-18 Online:2020-05-10 Published:2020-02-17
  • Contact: Jiaoyun XIA E-mail:xiajy625@163.com
  • Supported by:
    † Supported by the Natural Science Foundation of Hunan Province, China(2018JJ2422);the Hunan Provincial Department of Education Project, China(18C0189)

摘要:

硫代黄素T(ThT)荧光分子在自由状态下荧光强度很弱, 通过在Tris-HCl缓冲液中加入Pb2+的适配体即富含G的DNA序列, 可与ThT荧光分子形成G-四联体结构, 使荧光信号迅速增强; 向溶液中加入Pb2+, Pb2+与其适配体有很好的结合特异性, 可生成更牢固的G-四联体结构, 使ThT分子被释放出来, 导致溶液的荧光强度降低, 基于此可检测溶液中的Pb2+离子. 实验中优化了缓冲溶液组成、 ThT荧光分子浓度、 Pb2+适配体浓度及反应时间等条件. 结果表明, 在10 mmol/L Tris-HCl(pH=8.3, 含2 mmol/L MgCl2)缓冲溶液中, ThT荧光分子和Pb2+适配体的浓度分别为10 μmol/L和200 nmol/L, 反应10 min时, 随着溶液中Pb 2+浓度的增加, 荧光强度减弱. Pb2+浓度在20~1000 nmol/L范围内时, 荧光强度与Pb2+的浓度呈现良好的线性关系(R2=0.9941), 检出限为1 nmol/L. 实际水样测试结果表明, 该方法的回收率在98.8%~101.3%之间. 该传感器灵敏、 快速、 无需化学修饰荧光分子且成本低.

关键词: 硫代黄素T, G-四联体, 铅离子

Abstract:

The simple and rapid Pb2+ detection method is constructed by using a fluorescent aptasensor that is based on G-quadruplex formation in Tris-HCl buffer solution. In the absence of Pb2+, the Thioflavin T (ThT) dye binds to the G-rich Pb2+ aptamer and forms a Pb2+ aptamer/ThT G-quadruplex complex, which results in high fluorescence intensity. Upon addition of Pb2+, the Pb2+ aptamer/ThT complex will be replaced by the formation of a Pb2+ aptamer/Pb2+ complex and the fluorescence intensity of the solution decreases dramatically.The experimental conditions such as the buffer solution, the concentration of ThT fluorescent molecules, the concentration of Pb2+ aptamer, and the reaction time were optimized. When the concentrations of ThT fluorescent molecules and Pb2+ aptamers were 10 μmol/L and 200 nmol/L, respectively, the fluorescence intensity decreased with the increase of Pb 2+ concentration in 10 mmol/L Tris-HCl(pH=8.3, containing 2 mmol/L MgCl2) buffer solution. When the concentration of Pb2+ was in the range of 20—1000 nmol/L, there was a good linear relationship between the fluorescence intensity and the concentration of Pb2+(R2=0.9941), and this fluorescence aptasensor was highly sensitive and rapid, with a detection limit of 1 nmol/L and a total reaction time of only 10 min. Furthermore, this method is cost-effective and simple, removing the requirement for labeling the detection reagents with a fluorophore-quencher pair.

Key words: Thioflavin T, G-quadruplex, Lead ion

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