Nanostructured Immunosensors. Application to the detection of Progesterone
J.-M. Pingarron, P. Yanez-Sedeno, A. Gonzalez-Cortes, V. Carralero

TL;DR
This paper presents a novel nanostructured electrochemical immunosensor utilizing gold nanoparticles and a graphite-Teflon matrix for sensitive progesterone detection, achieving low detection limits and high recovery in milk samples.
Contribution
It introduces a new nanostructured immunosensor combining gold nanoparticles with a graphite-Teflon electrode for improved progesterone detection.
Findings
Detection limit of 0.84 ng/ml for progesterone.
Mean recovery of 101% in spiked milk samples.
Enhanced electrooxidation response due to gold nanoparticle modification.
Abstract
A novel nanostructured electrochemical immunsensor for the determination of progesterone is reported. The approach combines the properties of gold nanoparticles with the use of a graphite-Teflon composite electrode matrix, into which gold nanoparticles are incorporated by simple physical inclusion. The antibody anti-progesterone was directly attached to the electrode surface. The immunosensor functioning is based on competitive assay between progesterone and alkaline phosphatase-labelled progesterone. Monitoring of the affinity reaction was accomplished by the electrochemical oxidation of 1-naphtol. Modification of the graphite -Teflon electrode matrix with gold nanoparticles improves substantially the electrooxidation response of 1-naphtol. Using a detection potential of +0.3V, a detection limit for progesterone of 0.84 ng ml-1 was obtained. Analysis of seven milk samples spiked at a…
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Taxonomy
TopicsAdvanced biosensing and bioanalysis techniques · Pharmacological Effects and Assays · Electrochemical sensors and biosensors
