An electrochemical biosensor for the detection of microRNA-31 as a potential oral cancer biomarker

被引:0
|
作者
Nagdeve, Sanket Naresh [1 ]
Suganthan, Baviththira [1 ]
Ramasamy, Ramaraja P. [1 ]
机构
[1] Univ Georgia, Nano Electrochem Lab, Sch Chem Mat & Biomed Engn, Athens, GA 30602 USA
来源
JOURNAL OF BIOLOGICAL ENGINEERING | 2025年 / 19卷 / 01期
关键词
Impedance; Graphene; ssDNA; Nanomaterials; Nucleic acid; Serum; SENSING PLATFORM; SERUM; IMMUNOSENSOR; OPTIMIZATION; TECHNOLOGIES; SENSORS;
D O I
10.1186/s13036-025-00492-1
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Oral cancer presents substantial challenges to global health due to its elevated mortality rates. Approximately 90% of these malignancies are oral squamous cell carcinoma (OSCC). A significant contributor to the prevalence of oral cancer is the difficulty in detecting cancerous biomarkers, further exacerbated by socioeconomic disadvantages and late-stage diagnoses. Given the critical nature of oral cancer, the early detection of biomarkers is essential for reducing mortality rates. This study investigates the application of microRNA-31 (miRNA-31) as a biomarker for the electrochemical detection of oral cancer, recognizing the considerable potential that microRNAs have demonstrated in cancer screening and diagnosis. The methodology employed includes the use of a glassy carbon electrode modified with graphene and a molecular tethering agent designed to enhance sensitivity and specificity. The biosensor exhibited a limit of detection of 10- 11 M (70 pg/mL or 6.022 x 106 copies/mu L) in buffer and 10- 10 M (700 pg/mL or 6.022 x 107 copies/mu L) in diluted serum for the complementary target miRNA-31 using the Six Sigma method. The efficacy of this biosensor was further validated through specificity studies utilizing a non-complementary miRNA in both buffer and human serum samples. The electrochemical biosensor displayed exceptional performance and high sensitivity in detecting miRNA-31, confirming its role as an innovative sensor for the non-invasive diagnosis of oral cancer. Furthermore, the proposed biosensor demonstrates several advantages over current methodologies, including reduced detection time, and cost-effective reagents.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] A new insight into the diverse facets of microRNA-31 in oral squamous cell carcinoma
    M. Kavitha
    D. Jayachandran
    S. Y. Aishwarya
    P. Md. Younus
    A. Venugopal
    H. W. Suresh Babu
    E. Ajay
    M. Sanjana
    N. Arul
    V. Balachandar
    Egyptian Journal of Medical Human Genetics, 23
  • [22] A CMOS-Based Capacitive Biosensor for Detection of a Breast Cancer MicroRNA Biomarker
    Kuo, YU-Husan
    Chen, YI-Sin
    Huang, PO-Chiun
    Lee, Gwo-Bin
    IEEE OPEN JOURNAL OF NANOTECHNOLOGY, 2020, 1 (01): : 157 - 162
  • [23] Conditional knockout of microRNA-31 promotes the development of colitis associated cancer
    Liu, Zhaoyuan
    Bai, Jing
    Zhang, Lingyun
    Lou, Fangzhou
    Ke, Fang
    Cai, Wei
    Wang, Honglin
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2017, 490 (01) : 62 - 68
  • [24] MicroRNA-31 Function as a Suppressor Was Regulated by Epigenetic Mechanisms in Gastric Cancer
    Wei, Jun
    Wang, Zijian
    Wang, Zhixiang
    Yang, Yong
    Fu, Changlai
    Zhu, Jianqing
    Jiang, Danbin
    BIOMED RESEARCH INTERNATIONAL, 2017, 2017
  • [25] Advance in microRNA as a potential biomarker for early detection of pancreatic cancer
    Huang J.
    Liu J.
    Chen-Xiao K.
    Zhang X.
    Paul Lee W.N.
    Go V.L.W.
    Xiao G.G.
    Biomarker Research, 4 (1)
  • [26] Overexpression of the Oral Mucosa-Specific microRNA-31 Promotes Skin Wound Closure
    Chen, Lin
    Simoes, Alyne
    Chen, Zujian
    Zhao, Yan
    Wu, Xinming
    Dai, Yang
    DiPietro, Luisa A.
    Zhou, Xiaofeng
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2019, 20 (15)
  • [27] MicroRNA-31 upregulation predicts increased risk of progression of oral potentially malignant disorder
    Hung, Kai-Feng
    Liu, Chung-Ji
    Chiu, Peng-Chih
    Lin, Jiun-Sheng
    Chang, Kuo-Wei
    Shih, Wen-Yu
    Kao, Shou-Yen
    Tu, Hsi-Feng
    ORAL ONCOLOGY, 2016, 53 : 42 - 47
  • [28] Carbohydrate-based electrochemical biosensor for detection of a cancer biomarker in human plasma
    Devillers, Marion
    Ahmad, Lama
    Korri-Youssoufi, Hafsa
    Salmon, Laurent
    BIOSENSORS & BIOELECTRONICS, 2017, 96 : 178 - 185
  • [29] Association of microRNA-31 with BRAF mutation, colorectal cancer survival and serrated pathway
    Nosho, Katsuhiko
    Igarashi, Hisayoshi
    Nojima, Masanori
    Ito, Miki
    Maruyama, Reo
    Yoshii, Shinji
    Naito, Takafumi
    Sukawa, Yasutaka
    Mikami, Masashi
    Sumioka, Wakana
    Yamamoto, Eiichiro
    Kurokawa, Sei
    Adachi, Yasushi
    Takahashi, Hiroaki
    Okuda, Hiroyuki
    Kusumi, Takaya
    Hosokawa, Masao
    Fujita, Masahiro
    Hasegawa, Tadashi
    Okita, Kenji
    Hirata, Koichi
    Suzuki, Hiromu
    Yamamoto, Hiroyuki
    Shinomura, Yasuhisa
    CARCINOGENESIS, 2014, 35 (04) : 776 - 783
  • [30] MicroRNA-31 induced by Fusobacterium nucleatum infection promotes colorectal cancer tumorigenesis
    Tang, Bin
    Lu, Xiaoxue
    Tong, Yanan
    Feng, Yuyang
    Mao, Yilan
    Dun, Guodong
    Li, Jing
    Xu, Qiaolin
    Tang, Jie
    Zhang, Tao
    Deng, Ling
    He, Xiaoyi
    Lan, Yuanzhi
    Luo, Huaxing
    Zeng, Linghai
    Xiang, Yuanyuan
    Li, Qian
    Zeng, Dongzhu
    Mao, Xuhu
    ISCIENCE, 2023, 26 (05)