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◆ International journal of biological macromolecules2026-09-22

Visible light-mediated synthesis of metal-free molecularly imprinted polymers for highly selective creatinine detection.

Sadia Ashraf, Minkyeong Pyo, Kainat, Nayeong Gwak, Jaehyun Hur, Chan Ho Park, Toheed Akhter

原始摘要(英文原文)· Original abstract
Early and reliable monitoring of creatinine is essential for the timely diagnosis of chronic kidney disease; however, many existing electrochemical sensors are limited by enzyme instability, high fabrication cost, and concerns associated with metal-containing catalytic systems. Here, we report the fabrication of a hydroxypropyl cellulose (HPC)-based surface-imprinted macromolecular network through visible-light-mediated organocatalyzed atom transfer radical polymerization (O-ATRP) using a grafting-from strategy, yielding a fully metal-free molecularly imprinted polymer (MIP) for selective creatinine detection. Following template removal, the resulting poly(methacrylic acid)-based imprinted cavities generated a porous recognition layer capable of analyte-dependent modulation of interfacial charge transfer at the electrode surface. Electrochemical measurements demonstrated distinct responses of the MIP-modified electrode toward creatinine compared to the non-imprinted control, together with clear discrimination against structurally related interferents. Differential pulse voltammetry achieved sensitive creatinine detection with a limit of detection of 0.20 μg mL-1 within a physiologically relevant concentration range. In addition, impedance analysis revealed a concentration-dependent increase in charge-transfer resistance, supporting selective analyte binding within the imprinted cavities. These results demonstrate that visible-light-mediated O-ATRP can be employed to transform a cellulose-derived biological macromolecule into a functional surface-imprinted recognition platform, providing a promising metal-free strategy for selective electrochemical creatinine sensing.
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Visible light-mediated synthesis of metal-free molecularly imprinted polymers for highly selective creatinine detection. — 科研速览 Science Skim