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基于核酸适配体的新型荧光纳米生物传感器用于凝血酶的测定
引用本文:徒永华,程圭芳,林莉,郑静,吴自荣,何品刚,方禹之. 基于核酸适配体的新型荧光纳米生物传感器用于凝血酶的测定[J]. 高等学校化学学报, 2006, 27(12): 2266-2270
作者姓名:徒永华  程圭芳  林莉  郑静  吴自荣  何品刚  方禹之
作者单位:1. 华东师范大学化学系,上海,200062
2. 华东师范大学生命科学学院,上海,200062
基金项目:国家自然科学基金(批准号:20675031)资助.
摘    要:利用凝血酶的两条核酸适配体与凝血酶的高亲和力构建了三明治结构, 利用磁性纳米颗粒的磁性分离技术, 设计并制作了一种新型的荧光纳米生物传感器, 用其检测凝血酶. 此法对凝血酶的响应线性范围为2.24×10-11~4.03×10-9 mol/L, 其线性方程为I=0.9758×1011c-2.628, 检出限为1.0×10-11 mol/L, 对浓度为2.68×10-10 mol/L的凝血酶检测10次, 其RSD为2.56%, 测得的荧光信号稳定, 24 h后测定并无衰减, 具有很高的检测特异性和灵敏度.

关 键 词:核酸适配体  凝血酶  磁性纳米颗粒  荧光
文章编号:0251-0790(2006)12-2266-04
收稿时间:2005-11-25
修稿时间:2005-11-25

Detection of Thrombin with a Novel Nano-biosensor Based on Aptamer Fluorescence
TU Yong-Hua,CHENG Gui-Fang,LIN Li,ZHENG Jing,WU Zi-Rong,HE Ping-Gang,FANG Yu-Zhi. Detection of Thrombin with a Novel Nano-biosensor Based on Aptamer Fluorescence[J]. Chemical Research In Chinese Universities, 2006, 27(12): 2266-2270
Authors:TU Yong-Hua  CHENG Gui-Fang  LIN Li  ZHENG Jing  WU Zi-Rong  HE Ping-Gang  FANG Yu-Zhi
Affiliation:Department of Chemistry, ;School of Life Science, East China Normal University, Shanghai 200062, China
Abstract:Thrombin is an important enzyme in physiology. It palys an important role in some physiological and pathological process, such as blood solidification, wound cicatrization and inflammation. Therefore, thrombin detection is very important in medicine. A novel nano-biosensor based on aptamer was designed and thrombin detection with sandwich-type based on magnetic separation was proposed. The equation of calibration plot is I=09758×1011c-668 in the concentration range of 2.24×10-11—4.03×10-9 mol/L and the detective limit is 1×10-11 mol/L of thrombin. The relative standard deviation(n=10) was 2.56%. The fluorescence intensity obtained was very stable, even no attenuation observed after 24 h. The experiments results demonstrate that the proposed method possesses the feasibility, high specificity and sensitivity. It is also hopeful to be applied to the field of biomedicine.
Keywords:Aptamer  Thrombin  Magnetic nanoparticle  Fluorescence
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