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Label-Free Electrochemical Immunosensor Made with Tree-like Gold Dendrites for Monitoring 25-Hydroxyvitamin D3 Metabolite

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Author(s):
Martins, Thiago S. ; Bott-Neto, Jose L. ; Machado, Sergio A. S. ; Oliveira, Osvaldo N.
Total Authors: 4
Document type: Journal article
Source: ACS APPLIED MATERIALS & INTERFACES; v. 14, n. 27, p. 8-pg., 2022-07-13.
Abstract

Flexible, fully printed immunosensors can meet the requirements of precision nutrition, but this demands optimized molecular architectures to reach the necessary sensitivity. Herein, we report on flexible and label-free immunosensor chips made with tree-like gold dendrites (AuDdrites) electrochemically formed by selective desorption of L-cysteine (L-cys) on (111) gold planes. Electrodeposition was used because it is scalable and cost-effective for a rapid, direct growth of Au hyperbranched dendritic structures. The 25-hydroxyvitamin D3 (25(OH)D3) metabolite was detected within 15 min with a limit of detection (LOD) of 0.03 ng mL(-1). This high performance was possible due to the careful optimization of the electroactive layer and working conditions for square wave voltammetry (SWV). Electrocrystallization was manipulated by controlling the deposition potential and the molar ratio between HAuCl4 and L-cys. Metabolite detection was performed on human serum and saliva samples with adequate recovery between 97% and 100%. The immunosensors were stable and reproducible, unresponsive to interference from other molecules in human serum and saliva. They can be extended for use as wearable sensors with their mechanical flexibility and possible customization. (AU)

FAPESP's process: 19/13514-9 - Electrochemical sensors with a matrix containing graphene quantum dots or nanoribbons for the detection of biomarkers
Grantee:Jose Luiz Bott Neto
Support Opportunities: Scholarships in Brazil - Post-Doctoral
FAPESP's process: 18/22214-6 - Towards a convergence of technologies: from sensing and biosensing to information visualization and machine learning for data analysis in clinical diagnosis
Grantee:Osvaldo Novais de Oliveira Junior
Support Opportunities: Research Projects - Thematic Grants
FAPESP's process: 19/01777-5 - Manufacture of disposable electrochemical devices composed of hollow carbon nanospheres and carbon nanowires decorated with silver nanoparticles for the quantification of endocrine disruptors in supply water samples
Grantee:Sergio Antonio Spinola Machado
Support Opportunities: Regular Research Grants