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Hollow Microneedle-based Sensor for Multiplexed Transdermal Electrochemical Sensing
Published on: June 1, 2012
U-shaped Sagnac optical microfiber coupler biosensor for dual-matrix glucose detection
Yibin Zhu1, Hongyan Xia2, Kang Xie1
1State Key Laboratory of Precision Electronic Manufacturing Technology and Equipment, School of Electromechanical Engineering, Guangdong University of Technology, Guangzhou, Guangdong, 510006, China.
Abstract:
A high-performance glucose biosensor based on a U-shaped Sagnac optical microfiber coupler (OMC) functionalized with a polyethylene glycol/chitosan-glucose oxidase (PEG/CS-GOD) composite coating is presented. The sensor is designed by integrating the Sagnac interferometer's common-mode noise rejection with the U-shaped microfiber's strong evanescent field, effectively addressing environmental instability in micro-structured optical sensors, while the multifunctional coating simultaneously provides antifouling properties, biocompatibility, and enzymatic specificity. The sensor exhibits a high refractive index sensitivity of ∼1717 nm/RIU, glucose sensitivities of 3.17 and 3.09 nm mL·mg-1 for two interference dips with excellent linearity (R2 > 0.99), a detection limit of 0.224 mg/mL, and a response time of 13 s in simulated urine. Operational stability is demonstrated by minimal hysteresis error (<2%), approximately 81% response retention over 14 days, and satisfactory selectivity against key interferents at physiologically relevant concentrations. Consistent performance in simulated urine (3.03 nm mL·mg-1) and artificial serum (3.03 nm mL·mg-1) confirms dual-matrix detection capability. A dual-dip demodulation matrix enables real-time temperature compensation. With its balanced combination of high sensitivity, rapid response, long-term stability, and dual-matrix compatibility, this biosensor represents a promising platform for future point-of-care glucose detection.

