Electrochemical nucleic acid hybridization biosensor based on poly(L-Aspartic acid)-modified electrode for the detection of short oligonucleotide sequences related to hepatitis C virus 1a

被引:4
|
作者
Donmez, Soner [1 ]
Cagdas, Leman [2 ]
Arslan, Halit [2 ]
Arslan, Fatma [2 ]
机构
[1] Burdur Mehmet Akif Ersoy Univ, Bucak Sch Hlth, TR-15300 Burdur, Turkey
[2] Gazi Univ, Fac Sci, Dept Chem, Ankara, Turkey
来源
关键词
Nucleic acid biosensor; Poly (L-aspartic acid); HCV; 1a; ATOMIC-FORCE MICROSCOPY; GLASSY-CARBON ELECTRODE; DNA BIOSENSOR; SENSOR; DOPAMINE;
D O I
10.1080/10826068.2019.1636279
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
This work describes, for the first time, the fabrication of poly(L-aspartic acid) (PAA) film modified pencil graphite electrode (PGE) for the detection of hepatitis C Virus 1a (HCV1a). The presence of PAA on the electrode surface can provide free carboxyl groups for covalent binding of biomolecules. The PGE surface was first coated with PAA via electropolymerization of the L-aspartic acid, and avidin was subsequently attached to the PAA modified electrode by covalent attachment. Biotinylated HCV1a probes were immobilized on avidin/PAA/PGE via avidin-biotin interaction. The morphology of PAA/PGE was examined using a scanning electron microscope. The hybridization events were monitored with square wave voltammetry using Meldola's blue (MDB). Compared to non-complementary oligonucleotide sequences, when hybridization was carried out between the probe and its synthetic targets or the synthetic polymerase chain reaction analog of HCV1a, the highest MDB signal was observed. The linear range of the biosensor was 12.5 to 100 nM and limit of detection was calculated as 8.7 nM. The biosensor exhibited favorable stability over relatively long-term storage. All these results suggest that PAA-modified electrode can be used to nucleic acid biosensor application and electropolymerization of L-aspartic acid can be considered as a good candidate for the immobilization of biomolecules.
引用
收藏
页码:900 / 907
页数:8
相关论文
共 27 条
  • [21] A nucleic acid dye-enhanced electrochemical biosensor for the label-free detection of Hg2+ based on a gold nanoparticle-modified disposable screen-printed electrode
    Liu, Wei
    Wang, Yunqi
    Sheng, Fangfang
    Wan, Bing
    Tang, Gangxu
    Xu, Shuxia
    ANALYTICAL METHODS, 2022, 14 (35) : 3451 - 3457
  • [22] Label-Free Electrochemical Detection of Short Sequences Related to the Hepatitis B Virus Using 4,4′-Diaminoazobenzene Based on Multiwalled Carbon Nanotube-Modified GCE
    Li, Xue-Mei
    Zhan, Zhi-Ming
    Ju, Heng-Qiang
    Zhang, Shu-Sheng
    OLIGONUCLEOTIDES, 2008, 18 (04) : 321 - 327
  • [23] A nucleic acid-based electrochemical biosensor for the detection of influenza B virus from PCR samples using gold nanoparticle-adsorbed disposable graphite electrode and Meldola's blue as an intercalator
    Aydinlik, Seyma
    Ozkan-Ariksoysal, Dilsat
    Kara, Pinar
    Sayiner, A. Arzu
    Ozsoz, Mehmet
    ANALYTICAL METHODS, 2011, 3 (07) : 1607 - 1614
  • [24] Simultaneous electrochemical detection of uric acid and xanthine based on electrodeposited B, N co-doped reduced graphene oxide, gold nanoparticles and electropolymerized poly (L-cysteine) gradually modified electrode platform
    Ghanbari, Mohammad Hossein
    Mashhadizadeh, Mohammad Hossein
    Norouzi, Zahra
    Salehzadeh, Hamid
    MICROCHEMICAL JOURNAL, 2022, 175
  • [25] An electrochemical DNA sensor based on electrodepositing aluminum ion films on stearic acid-modified carbon paste electrode and its application for the detection of specific sequences related to bar gene and CP4 Epsps gene
    Ren, Y
    Jiao, K
    Xu, GY
    Sun, W
    Gao, HW
    ELECTROANALYSIS, 2005, 17 (23) : 2182 - 2189
  • [26] Development of surface-enhanced Raman scattering-sensing Method by combining novel Ag@Au core/shell nanoparticle-based SERS probe with hybridization chain reaction for high-sensitive detection of hepatitis C virus nucleic acid
    Peng, Ruiying
    Qi, Wenchen
    Deng, Ting
    Si, Yanmei
    Li, Jishan
    ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2024, 416 (10) : 2515 - 2525
  • [27] Development of surface-enhanced Raman scattering-sensing Method by combining novel Ag@Au core/shell nanoparticle-based SERS probe with hybridization chain reaction for high-sensitive detection of hepatitis C virus nucleic acid
    Ruiying Peng
    Wenchen Qi
    Ting Deng
    Yanmei Si
    Jishan Li
    Analytical and Bioanalytical Chemistry, 2024, 416 : 2515 - 2525