Real-time monitoring of serotonin with highly selective aptamer-functionalized conducting polymer nanohybrids

Author:

Lim Seong Gi,Seo Sung Eun,Park Seon Joo,Kim Jinyeong,Kim Yejin,Kim Kyung Ho,An Jai Eun,Kwon Oh SeokORCID

Abstract

AbstractAdequate serotonin levels are pivotal to human well-being; thus, serotonin can be used as a biomarker because it regulates a wide range of physical and psychological functions. As an imbalance of serotonin is highly likely to initiate the pathogenesis of various disorders, monitoring serotonin levels in real time is in high demand for the early detection of disease. We fabricated a field-effect transistor (FET) biosensor based on aptamer-immobilized conducting polymer nanohybrids, which showed an instantaneous response toward serotonin in solution. The mechanism of serotonin detection was based on aptamer deformation after aptamer-ligand interaction and the consequential decrease in the charge carrier density of the FET template. Docking simulations with AutoDock/Vina and PyMOL were successfully used to investigate the binding site of serotonin in the loop structure of the aptamer. The fabricated FET template showed high sensitivity toward serotonin in the range of 10 fM to 100 nM, and the limit of detection (LOD) was exceptionally low at 10 fM. Moreover, the selectivity toward serotonin was confirmed by observing no signal after the injection of structural analogs, functional analogs and excess physiological biomolecules. The potential clinical application of this sensor was confirmed because it remained consistent when the buffer solution was exchanged for artificial serum or artificial cerebrospinal fluid (CSF).  S.G.L. and S.E.S. contributed equally to this work.

Funder

Korea Institute of Planning and Evaluation for Technology in Food, Agriculture and Forestry

National Research Foundation of Korea

National Research Council of Science and Technology

Korea Ministry of Environment (MOE) through Technology Development Project for Safety Management of Household Chemical Products Program (or Project), funded by Korea Ministry of Environmen

Korea Research Institute of Bioscience and Biotechnology

Publisher

Springer Science and Business Media LLC

Subject

General Engineering,General Materials Science

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