CVD Graphene Electrode for Direct Electrochemical Detection of Double-Stranded DNA

被引:1
|
作者
Bardaoui, Afrah [1 ]
Hammami, Asma [1 ]
Elkarous, Rabiaa [1 ]
Ali Aloui, Mohamed [1 ]
Oueslati, Rania [1 ]
Messaoud, Olfa [2 ]
Santos, Diogo M. F. [3 ]
Chtourou, Radhouane [1 ]
机构
[1] Borj Cedria Sci & Technol Pk, Res & Technol Ctr Energy, Lab Nanomat & Renewable Energy Syst, BP 95, Hammam Lif 2050, Tunisia
[2] Univ Tunis El Manar, Inst Pasteur Tunis, Biomed Genom & Oncogenet Lab, Tunis 1068, Tunisia
[3] Univ Lisbon, Ctr Phys & Engn Adv Mat, Chem Engn Dept, Lab Phys Mat & Emerging Technol,Inst Super Tecni, P-1049001 Lisbon, Portugal
关键词
graphene; CVD; Raman spectroscopy; electrochemical detection; double-stranded DNA; FIELD-EFFECT TRANSISTOR; BIOSENSORS; ELECTROCATALYSIS; NANOMATERIALS; HYBRIDIZATION; SENSOR; COPPER;
D O I
10.3390/inorganics11040173
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Understanding and regulating DNA interactions with solvents and redox-active centers opens up new possibilities for improving electrochemical signals and developing adequate biosensors. This work reports the development of a modified indium tin oxide (ITO) electrode by chemical vapor deposition (CVD) of graphene for the detection of double-stranded DNA. The modified electrode shows a better electrical conductivity than ITO, as confirmed by electrochemical impedance spectroscopy (EIS), where a drastic decrease in the charge-transfer resistance, R-ct, from similar to 320 to similar to 60 omega was observed. Sequences of double-stranded genomic DNA with a different number of base pairs are evaluated through differential pulse voltammetry (DPV), using ferri/ferrocyanide ([Fe(CN)(6)](3-/4-)) as a mediator in the solution. Variations in the electrochemical response of the [Fe(CN)(6)](3-/4-) probe are observed after introducing redox inactive double-stranded DNA ions. The redox-active [Fe(CN)(6)](3-/4-) probe serves as a scaffold to bring DNA into the graphene-modified ITO electrode surface, provoking an increase in the current and a change in the potential when the number of base pairs increases. These results are confirmed by EIS, which shows a variation in the R-ct. The calibration of DPV intensity and R-ct vs. DNA base pairs (bps) number were linear in the 495-607 bps range. The proposed method could replace the nucleic acid gel electrophoresis technique to determine the presence of a DNA fragment and quantify its size.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Characterization of Supercoiled Double-Stranded RNA, and Comparison to Double-Stranded DNA
    Skinner, Gary M.
    Donkers, Serge P.
    Lipfert, Jan
    Huang, Zhuangxiong
    Dekker, Nynke H.
    BIOPHYSICAL JOURNAL, 2011, 100 (03) : 236 - 236
  • [22] A double-stranded DNA rotaxane
    Ackermann, Damian
    Schmidt, Thorsten L.
    Hannam, Jeffrey S.
    Purohit, Chandra S.
    Heckel, Alexander
    Famulok, Michael
    NATURE NANOTECHNOLOGY, 2010, 5 (06) : 436 - 442
  • [23] Double-stranded DNA chips
    Natalie DeWitt
    Nature Biotechnology, 1999, 17 (6) : 523 - 523
  • [24] A double-stranded DNA rotaxane
    Ackermann D.
    Schmidt T.L.
    Hannam J.S.
    Purohit C.S.
    Heckel A.
    Famulok M.
    Nature Nanotechnology, 2010, 5 (6) : 436 - 442
  • [25] Polymerase incorporation of fluorescein or rhodamine modified 2′-deoxyuridine-5′-triphosphates into double-stranded DNA for direct electrochemical detection
    Suprun, Elena, V
    Khmeleva, Svetlana A.
    Bibik, Konstantin, V
    Ptitsyn, Konstantin G.
    Kurbatov, Leonid K.
    Radko, Sergey P.
    JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2023, 236
  • [26] CONFORMATION OF DOUBLE-STRANDED DNA
    CYRIAX, B
    GATH, R
    NATURWISSENSCHAFTEN, 1978, 65 (02) : 106 - 108
  • [27] Using Triplex-Forming Oligonucleotide Probes for the Reagentless, Electrochemical Detection of Double-Stranded DNA
    Patterson, Adriana
    Caprio, Felice
    Vallee-Belisle, Alexis
    Moscone, Danila
    Plaxco, Kevin W.
    Palleschi, Giuseppe
    Ricci, Francesco
    ANALYTICAL CHEMISTRY, 2010, 82 (21) : 9109 - 9115
  • [28] Highly sensitive electrochemical sensor for dopamine with a double-stranded deoxyribonucleic acid/gold nanoparticle/graphene modified electrode
    Wang, Wencheng
    Cheng, Yong
    Yan, Lijun
    Zhu, Huanhuan
    Li, Guangjiu
    Li, Jing
    Sun, Wei
    ANALYTICAL METHODS, 2015, 7 (05) : 1878 - 1883
  • [29] ELECTRON TRAPPING IN DOUBLE-STRANDED DNA - IMPLICATIONS FOR FORMATION OF DOUBLE-STRANDED BREAKS
    RACKOVSKY, S
    BERNHARD, WA
    JOURNAL OF PHYSICAL CHEMISTRY, 1989, 93 (12): : 5006 - 5008
  • [30] Direct detection of synthetic and biologically generated double-stranded DNA by MALDI-TOF MS
    Little, DP
    Jacob, A
    Becker, T
    Braun, A
    Darnhofer-Demar, B
    Jurinke, C
    van den Boom, D
    Koster, H
    INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 1997, 169 : 323 - 330