Mobile device integrated graphene oxide quantum dots based electrochemical biosensor design for detection of miR-141 as a pancreatic cancer biomarker

被引:34
作者
Akin, Merve [1 ]
Bekmezci, Muhammed [1 ]
Bayat, Ramazan [1 ]
Coguplugil, Zeynep Kazel [1 ]
Sen, Fatih [1 ]
Karimi, Fatemeh [2 ]
Karimi-Maleh, Hassan [2 ,3 ,4 ]
机构
[1] SRG Inc Co, Kutahya Design & Technopole, TR-43100 Kutahya, Turkey
[2] Quchan Univ Technol, Dept Chem Engn, Quchan, Iran
[3] Univ Elect Sci & Technol China, Sch Resources & Environm, Xiyuan Ave, Chengdu 611731, Peoples R China
[4] SIMATS, Saveetha Sch Engn, Dept Sustainable Engn, Chennai 602105, India
关键词
Electrochemical biosensors; miR-141; Screen printed electrode; ss-DNA; MICRORNA DYSREGULATION; SENSING PLATFORM; NANOPARTICLES; MOS2; NANOTECHNOLOGY; EXPRESSION; OXIDATION; ELECTRODE; INVASION; TM4SF1;
D O I
10.1016/j.electacta.2022.141390
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Among all cancer forms, pancreatic cancer has one of the highest mortality rates. Early pancreatic cancer detection is crucial at this time. For this purpose, in this study, a simple and sensitive electrochemical sensor was developed for the detection of microRNA (miRNAs-(miR-141)), which is a pancreatic cancer biomarker. Gra-phene oxide quantum dots (GoQdot) modified and thiolated single-stranded DNA detection probes (thiol-ss-DNA) on Screen Printed Electrode (SPE) interacted with miR-141 and gave significant results on electron transfer. Differential Pulse Voltammetry (DPV) and Cyclic Voltammetry (CV) measurements showed that the binding of ss-DNA to SPE and the concentration-dependent increase of miR-141 decreased electron transfer. The current values obtained for 2.3 and 6.1 nM miR-141 concentrations were calculated, and the detection limit (LOD) was found to be 0.091 pM and the limit of quantitation (LOQ) was calculated as 0.27 pM. Significant results were obtained by connecting to mobile devices with SPE. The resulting sensor system had label-free, fast, and easy application possibilities. This sensor system, obtained with GoQdot, has achieved innovative outputs for the early detection of this type of cancer diseases.
引用
收藏
页数:9
相关论文
共 84 条
[1]  
Akin M., 2021, NANOMATERIALS DIRECT, V2021, P319, DOI [10.1016/B978-0-12-821713-9.00025-1, DOI 10.1016/B978-0-12-821713-9.00025-1]
[2]  
Akin M., 2021, Nanomater. Direct Alcohol Fuel Cells, P75
[3]   Glucose nano biosensor with non-enzymatic excellent sensitivity prepared with nickel-cobalt nanocomposites on f-MWCNT [J].
Arikan, Kubilay ;
Burhan, Hakan ;
Bayat, Ramazan ;
Sen, Fatih .
CHEMOSPHERE, 2022, 291
[4]   Superior thermal conductivity of single-layer graphene [J].
Balandin, Alexander A. ;
Ghosh, Suchismita ;
Bao, Wenzhong ;
Calizo, Irene ;
Teweldebrhan, Desalegne ;
Miao, Feng ;
Lau, Chun Ning .
NANO LETTERS, 2008, 8 (03) :902-907
[5]   MicroRNAs: Genomics, biogenesis, mechanism, and function (Reprinted from Cell, vol 116, pg 281-297, 2004) [J].
Bartel, David P. .
CELL, 2007, 131 (04) :11-29
[6]   Stability and Exfoliation of Germanane: A Germanium Graphane Analogue [J].
Bianco, Elisabeth ;
Butler, Sheneve ;
Jiang, Shishi ;
Restrepo, Oscar D. ;
Windl, Wolfgang ;
Goldberger, Joshua E. .
ACS NANO, 2013, 7 (05) :4414-4421
[7]   Electrochemical quantification of mancozeb through tungsten oxide/ reduced graphene oxide nanocomposite: A potential method for environmental remediation [J].
Buledi, Jamil A. ;
Mahar, Nasrullah ;
Mallah, Arfana ;
Solangi, Amber R. ;
Palabiyik, Ismail M. ;
Qambrani, Nadeem ;
Karimi, Fatemeh ;
Vasseghian, Yasser ;
Karimi-Maleh, Hassan .
FOOD AND CHEMICAL TOXICOLOGY, 2022, 161
[8]   Novel enzymatic graphene oxide based biosensor for the detection of glutathione in biological body fluids [J].
Cheraghi, Somaye ;
Taher, Mohammad A. ;
Karimi-Maleh, H. ;
Karimi, Fatmeh ;
Shabani-Nooshabadi, Mehdi ;
Alizadeh, Marzieh ;
Al-Othman, Amani ;
Erk, Nevin ;
Raman, Praveen Kumar Yegya ;
Karaman, Ceren .
CHEMOSPHERE, 2022, 287
[9]   Causes and consequences of microRNA dysregulation in cancer [J].
Croce, Carlo M. .
NATURE REVIEWS GENETICS, 2009, 10 (10) :704-714
[10]   Sensitive electrochemical sensing platform for microRNAs detection based on shortened multi-walled carbon nanotubes with high-loaded thionin [J].
Deng, Keqin ;
Liu, Xinyan ;
Li, Chunxiang ;
Huang, Haowen .
BIOSENSORS & BIOELECTRONICS, 2018, 117 :168-174