4.7 Article

Highly sensitive electrochemical immunosensor using a protein-polyvinylidene fluoride nanocomposite for human thyroglobulin

期刊

BIOELECTROCHEMISTRY
卷 142, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.bioelechem.2021.107888

关键词

Electrochemical immunosensor; Thyroglobulin; PVDF nanocomposites gold nanoparticles; Point-of-care

资金

  1. UFAM (Federal University of Amazonas)
  2. FAPEAM (Research Support Foundation of the State of Amazonas)
  3. CAPES (Coordination for the Improvement of Higher Education Personnel)
  4. SisNANO Program
  5. MCTIC
  6. CNPq

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An electrochemical immunosensor for the highly sensitive detection of serum thyroglobulin (Tg) antigen was developed using innovative nanocomposites, showing excellent sensitivity, selectivity, and reproducibility. The sensor demonstrated the potential to determine low levels of Tg in in vitro assays and may be considered for patient serum analysis.
The highly sensitive detection of serum thyroglobulin (Tg) is essential in the post-treatment follow-up of patients with differentiated thyroid cancer undergoing total or partial thyroidectomy and radioactive iodine ablation and requires sensitive, accurate and stable methods. This work proposes an electrochemical immunosensor for the detection of serum Tg antigen, making use of innovative nanocomposites including polyvinylidene fluoride (PVDF) microparticles coated with streptavidin (MP) and gold nanoparticles (AuNPs). The functionalized polymer matrices were characterized by UV-Vis, FTIR, XPS, SEM, dynamic light scattering, and free surface energy. Immobilization of biotin-labeled anti-thyroglobulin monoclonal antibodies was achieved by binding these to the polymer nanocomposite via streptavidin proteins. The analytical response was measured in quintuplicate and had a linear profile from 2.0 to 10.0 ng/mL Tg, with r(2) of 0.985. The limits of detection and quantification were excellent, equal to 0.015 and 0.047 ng/mL, respectively. In addition, the recovery factor was equal to 95.4% (1.0 ng/mL Tg). Overall, the innovative polymer-based nanocomposite used herein enabled the production of an electrochemical-based immunosensor with excellent sensitivity, selectivity, and reproducibility. It evidenced the remarkable potential of determining low levels of Tg in in vitro assays, thereby suggesting that it may be considered for the analyzes of serum patients. (C) 2021 Elsevier B.V. All rights reserved.

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