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Updated: May 10, 2026

Ultrasensitive Detection of Biomarkers by Using a Molecular Imprinting Based Capacitive Biosensor
Published on: February 16, 2018
3D bioprinting biomimetic small intestinal microtissue-based molecularly imprinted electrochemical sensor for
Luwen Ye1, Yujia Yu1, Daokun Xu2
1College of Food Science and Engineering, Collaborative Innovation Center for Modern Grain Circulation and Safety, Key Laboratory of Grains and Oils Quality Control and Processing, Nanjing University of Finance and Economics, Nanjing, Jiangsu 210023, PR China.
Abstract:
This study presents a novel sensing strategy for ovalbumin (OVA) by integrating a controllable molecularly imprinted polymer (MIP) fabrication technique with three-dimensional (3D) bioprinting technology. A MIP with high specificity and affinity was designed and synthesized for OVA using the reverse microemulsion epitope-directed surface imprinting and coating (ROSIC) method with silylating monomers. The synthesized MIP was then innovatively incorporated into gelatin methacryloyl (GelMA) and uesd as bioink to 3D bioprint a biomimetic small intestinal microtissue, which was subsequently assembled into a working electrode. Together with a homemade Ag/AgCl reference electrode and a platinum wire counter electrode, the resulting interface formed a three-electrode electrochemical sensing system for OVA detection. The constructed sensor exhibited a linear response to OVA concentration in the range of 10-400 pg/mL. The standard curve equation was Ret = 11.12 COVA (pg/mL) + 3261.9, with a correlation coefficient R2 of 0.998, and a detection limit of 5.54 pg/mL.

