One-pot synthesis of strongly fluorescent DNA-CuInS2 quantum dots for label-free and ultrasensitive detection of anthrax lethal factor DNA

被引:12
作者
Liu, Ziping [1 ]
Su, Xingguang [1 ]
机构
[1] Jilin Univ, Dept Analyt Chem, Coll Chem, Changchun 130012, Peoples R China
基金
中国国家自然科学基金;
关键词
Fluorescence biosensor; DNA-QDs; Anthrax lethal factor DNA; Graphene oxide; One-pot synthesis; GRAPHENE OXIDE; NANOCRYSTALS; STRATEGY; NANOSENSOR; SURFACE; GROWTH;
D O I
10.1016/j.aca.2016.09.004
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Herein, high quality DNA-CuInS2 QDs are facilely synthesized through a one-pot hydrothermal method with fluorescence quantum yield as high as 23.4%, and the strongly fluorescent DNA-CuInS2 QDs have been utilized as a novel fluorescent biosensor for label-free and ultrasensitive detection of anthrax lethal factor DNA. L-Cysteine (L-Cys) and a specific-sequence DNA are used as co-ligands to stabilize the CuInS2 QDs. The specific-sequence DNA consists of two domains: phosphorothiolates domain (sulfur-containing variants of the usual phosphodiester backbone) controls the nanocrystal passivation and serves as a ligand, and the functional domain (non-phosphorothioates) controls the biorecognition. The as-prepared DNA-CuInS2 QDs have high stability, good water-solubility and low toxicity. Under the optimized conditions, a linear correlation was established between the fluorescence intensity ratio I/I-0 (I-0 is the original fluorescence intensity of DNA-CuInS2 QDs, and I is the fluorescence intensity of DNA-CuInS2 QDs/GO with the addition of various concentrations of anthrax lethal factor DNA) and the concentration of anthrax lethal factor DNA in the range of 0.029-0.733 nmol L-1 with a detection limit of 0.013 nmol L-1. The proposed method has been successfully applied to the determination of anthrax lethal factor DNA sequence in human serum samples with satisfactory results. Because of low toxicity and fine biocompatibility, DNA-CuInS2 QDs also hold potential applications in bioimaging. (C) 2016 Published by Elsevier B.V.
引用
收藏
页码:86 / 95
页数:10
相关论文
共 59 条
[1]   Structures and interaction energies of stacked graphene-nucleobase complexes [J].
Antony, Jens ;
Grimme, Stefan .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2008, 10 (19) :2722-2729
[2]   Understanding Oligonucleotide-Templated Nanocrystals: Growth Mechanisms and Surface Properties [J].
Cha, Tae-Gon ;
Baker, Benjamin A. ;
Salgado, Janette ;
Bates, Christopher J. ;
Chen, Kok Hao ;
Chang, Alice C. ;
Akatay, M. Cem ;
Han, Jae-Hee ;
Strano, Michael S. ;
Choi, Jong Hyun .
ACS NANO, 2012, 6 (09) :8136-8143
[3]   Method for multiplex cellular detection of mRNAs using quantum dot fluorescent in situ hybridization [J].
Chan, PM ;
Yuen, T ;
Ruf, F ;
Gonzalez-Maeso, J ;
Sealfon, SC .
NUCLEIC ACIDS RESEARCH, 2005, 33 (18) :1-8
[4]   Graphene Fluorescence Resonance Energy Transfer Aptasensor for the Thrombin Detection [J].
Chang, Haixin ;
Tang, Longhua ;
Wang, Ying ;
Jiang, Jianhui ;
Li, Jinghong .
ANALYTICAL CHEMISTRY, 2010, 82 (06) :2341-2346
[5]   The cytotoxicity of cadmium-based quantum dots [J].
Chen, Nan ;
He, Yao ;
Su, Yuanyuan ;
Li, Xiaoming ;
Huang, Qing ;
Wang, Haifeng ;
Zhang, Xiangzhi ;
Tai, Renzhong ;
Fan, Chunhai .
BIOMATERIALS, 2012, 33 (05) :1238-1244
[6]   Anthrax lethal factor proteolysis and inactivation of MAPK kinase [J].
Chopra, AP ;
Boone, SA ;
Liang, XD ;
Duesbery, NS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (11) :9402-9406
[7]   The chemistry of graphene oxide [J].
Dreyer, Daniel R. ;
Park, Sungjin ;
Bielawski, Christopher W. ;
Ruoff, Rodney S. .
CHEMICAL SOCIETY REVIEWS, 2010, 39 (01) :228-240
[8]   Chemically Derived Graphene Oxide: Towards Large-Area Thin-Film Electronics and Optoelectronics [J].
Eda, Goki ;
Chhowalla, Manish .
ADVANCED MATERIALS, 2010, 22 (22) :2392-2415
[9]   Small is different: Shape-, size-, and composition-dependent properties of some colloidal semiconductor nanocrystals [J].
El-Sayed, MA .
ACCOUNTS OF CHEMICAL RESEARCH, 2004, 37 (05) :326-333
[10]   Optical molecular sensing with semiconductor quantum dots (QDs) [J].
Freeman, Ronit ;
Willner, Itamar .
CHEMICAL SOCIETY REVIEWS, 2012, 41 (10) :4067-4085