Nanomaterial-based cocaine aptasensors

被引:98
作者
Mokhtarzadeh, Ahad [1 ]
Dolatabadi, Jafar Ezzati Nazhad [2 ]
Abnous, Khalil [1 ]
de la Guardia, Miguel [3 ]
Ramezani, Mohammad [1 ]
机构
[1] Mashhad Univ Med Sci, Sch Pharm, Pharmaceut Res Ctr, Mashhad, Iran
[2] Tabriz Univ Med Sci, Res Ctr Pharmaceut Nanotechnol, Tabriz, Iran
[3] Univ Valencia, Dept Analyt Chem, E-46100 Valencia, Spain
关键词
Cocaine; Aptasensors; Nanosensors; Optical; Colorimetric assays; Electrochemical; STRAND-DISPLACEMENT AMPLIFICATION; SURFACE-PLASMON RESONANCE; GOLD NANOPARTICLES; ELECTROCHEMICAL APTASENSOR; BLOOD-SERUM; ELECTRONIC DETECTION; AMPLIFIED DETECTION; APTAMERIC SENSOR; MOLECULAR PROBES; DNA;
D O I
10.1016/j.bios.2014.12.052
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Up to now, many different methods have been developed for detection of cocaine, but most of these methods are usually time-consuming, tedious and require special or expensive equipment. Therefore, the development of simple, sensitive and rapid detection methods is necessary. In the last decade, aptamers have been used as a new biosensor platform for detection of cocaine in different samples. Aptamers are artificial single-stranded DNA or RNA oligonucleotides capable of binding to specific molecular targets with high affinity and if integrated to nanomaterials, it may lead in precise methods for cocaine detection in the common laboratories. In this review, recent advances and applications of aptamer-based biosensors and nanobiosensors, have been updated, paying attention to the use of fluorescence, colorimetric and electrochemical techniques for the detection and quantitative determination of cocaine. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:95 / 106
页数:12
相关论文
共 76 条
[1]   Selectivity mechanisms at self-assembled monolayers on gold: Implications in redox recycling amplification systems [J].
Bergren, Adam Johan ;
Porter, Marc D. .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2007, 599 (01) :12-22
[2]   Biosensors: the new wave in cancer diagnosis [J].
Bohunicky, Brian ;
Mousa, Shaker A. .
NANOTECHNOLOGY SCIENCE AND APPLICATIONS, 2011, 4 :1-10
[3]  
Brody E N, 2000, J Biotechnol, V74, P5, DOI 10.1016/S1389-0352(99)00004-5
[4]   Determination of cocaine on banknotes through an aptamer-based electrochemiluminescence biosensor [J].
Cai, Qihong ;
Chen, Lifen ;
Luo, Fang ;
Qiu, Bin ;
Lin, Zhenyu ;
Chen, Guonan .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2011, 400 (01) :289-294
[5]   Human growth hormone-specific aptamer identification using improved oligonucleotide ligand evolution method [J].
Calik, Pinar ;
Balci, Oguz ;
Ozdamar, Tuncer H. .
PROTEIN EXPRESSION AND PURIFICATION, 2010, 69 (01) :21-28
[6]   CS-SELEX Generates High-Affinity ssDNA Aptamers as Molecular Probes for Hepatitis C Virus Envelope Glycoprotein E2 [J].
Chen, Fang ;
Hu, Yilan ;
Li, Dongqing ;
Chen, Haidan ;
Zhang, Xiao-Lian .
PLOS ONE, 2009, 4 (12)
[7]   A New Aptameric Biosensor for Cocaine Based on Surface-Enhanced Raman Scattering Spectroscopy [J].
Chen, Jiwei ;
Jiang, Jianhui ;
Gao, Xing ;
Liu, Guokun ;
Shen, Guoli ;
Yu, Ruqin .
CHEMISTRY-A EUROPEAN JOURNAL, 2008, 14 (27) :8374-8382
[8]   Assays for aptamer-based platforms [J].
Citartan, Marimuthu ;
Gopinath, Subash C. B. ;
Tominaga, Junji ;
Tan, Soo-Choon ;
Tang, Thean-Hock .
BIOSENSORS & BIOELECTRONICS, 2012, 34 (01) :1-11
[9]   Electrochemical immunosensor using p-aminophenol redox cycling by hydrazine combined with a low background current [J].
Das, Jagotamoy ;
Jo, Kyungmin ;
Lee, Jae Wook ;
Yang, Haesik .
ANALYTICAL CHEMISTRY, 2007, 79 (07) :2790-2796
[10]   Cocaine detection by structure-switch aptamer-based capillary zone electrophoresis [J].
Deng, Qin-Pei ;
Tie, Cai ;
Zhou, Ying-Lin ;
Zhang, Xin-Xiang .
ELECTROPHORESIS, 2012, 33 (9-10) :1465-1470