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◆ ACS sensors2026-08-28

Multi-Step Amperometry for Detecting Dopamine Using Boron-Doped Diamond Microelectrodes in the Striatum of the Mouse Brain.

Rina Okochi, Genki Ogata, Masayo Fujita, Lea Jiang, Soichiro Ide, Kazuto Kobayashi, Kazutaka Ikeda, Yasuaki Einaga

原始摘要(英文原文)· Original abstract
The real-time measurement of dopamine concentration in the brain is crucial in elucidating dopamine-related physiological functions and pathologies and guiding therapeutic development. Boron-doped diamond (BDD) electrodes have emerged as promising tools for use in biological measurement because of their exceptional durabilities, sensitivities, and biocompatibilities, but electrochemically distinguishing dopamine from norepinephrine, which exhibits a similar chemical structure, remains challenging. Other substances that interfere with dopamine detection include tyrosine, L-3,4-dihydroxyphenylalanine, epinephrine, and serotonin. In this study, we developed a method of selectively detecting dopamine using a BDD microelectrode in vitro and then applied it to in vivo measurement in wild-type and dopamine-deficient mice. Methamphetamine, which is a dopamine-releasing agent, was used to assess the dopamine dynamics. In wild-type mice, methamphetamine induced a clear increase in the oxidation current, corresponding to dopamine release, whereas dopamine-deficient mice displayed no significant changes in current, despite methamphetamine also promoting norepinephrine release. Therefore, incorporating an oxidation potential of 0.2 V into multi-step amperometry enabled the highly sensitive and selective detection of dopamine in vivo using BDD microelectrodes. This technique provides a powerful approach for use in investigating brain function and dopamine-related pathophysiology.
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Multi-Step Amperometry for Detecting Dopamine Using Boron-Doped Diamond Microelectrodes in the Striatum of the Mouse Brain. — 科研速览 Science Skim