Desenvolvimento de um biossensor impedimétrico de DNA com silsesquioxano para detecção label-free do vírus zika
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Universidade Estadual de Ponta Grossa
Abstract
Zika virus (ZIKV) detection has become a global health challenge in recent years due to its
rapid geographical expansion associated with the increase of neurological abnormalities such
as Guillain-Barré syndrome and Microcephaly. Currently, the techniques for ZIKV diagnosis
require labor intense, costly and lengthy tests using sophisticated equipment; moreover, false
positives occur. This work aimed to develop an impedimetric DNA biosensor for label-free
detection of this virus. For this, a platform consisting of an oxidized glassy carbon electrode
(ox-ECV) modified with gold nanoparticles functionalized by the polyelectrolyte 3-npropylpyridine chloride silsesquioxane (AuNPs-SiPy) was obtained. This nanohybrid was
characterized by UV-VIS, DLS, FTIR, Raman and XRD measurements, and the nanohybrid
modified carbon glass electrode, ox-ECV-[AuNPs-SiPy] by electrochemical techniques. After
the immobilization of a specific synthetic oligonucleotide of the ZIKV genome with thiol
grouping (ZIKV1) on this electrode, the biosensor ox-ECV-[AuNPs-SiPy]/ZIKV1 was formed,
whose modification steps were optimized through univariate and multivariate. The optimized
biosensor was characterized by electrochemical impedance spectroscopy, cyclic voltammetry
and atomic force microscopy. The recognition of the ZIKV target ssDNA was monitored by the
variation transfer resistance (ΔRct) of the electrochemical marker used ([Fe(CN)6]
4-
/
3-
) and the
roughness (Rq) of the electrode surface. This biosensor presented a detection limit (LOD) of
0.41 pmol L-1 with a linear range of 1.0 x 10-12 – 1.0 x 10-6 mol L-1
. The proposed device also
presents to be stable for 90 days (98.02 % of the initial response), sensitive and selective to
quantify the target of ZIKV in serum samples, and is therefore a promising tool for the early
diagnosis of ZIKV.
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STEINMETZ, Marines. Desenvolvimento de um biossensor impedimétrico de DNA com silsesquioxano para detecção label-free do vírus zika. 2019. Dissertação (Mestrado em Química Aplicada) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2019.
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