Related Experiment Video
Updated: May 14, 2026

Hollow Microneedle-based Sensor for Multiplexed Transdermal Electrochemical Sensing
Published on: June 1, 2012
A design-to-translation framework for microneedle electrochemical sensors for continuous biochemical monitoring
1Institute of Microelectronics of Seville (IMSE-CNM), CSIC-Universidad de Sevilla, Av. Américo Vespucio, 28. Sevilla TechPark, Sevilla, 41092, Spain.
Abstract:
Microneedle-based electrochemical sensors have been dominating the field of biochemical monitoring by providing miniaturized biointerfaces with the ability to transduce biochemical information from our body into electrical signals. These sensors have demonstrated the capability to continuously profile physiologically and clinically relevant biomarkers, therefore supporting timely decision-making processes and potentially aiding in the diagnosis and treatment of various diseases. Despite several recent publications demonstrating accurate in vivo continuous profiling, significant analytical challenges remain, particularly in enhancing the stability of these sensors for long-term continuous monitoring. This review provides a rational guide for designing conductive microneedle architectures and describes subsequent functionalization strategies for developing reliable sensor electrodes. Furthermore, a comprehensive framework of the full analytical characterization of microneedle-based electrochemical sensors is provided, from in vitro evaluation to in vivo tests. This roadmap will assist sensor developers in evaluating the analytical capabilities and maximizing their success in the in vivo validation. Crucially, the remaining analytical challenges for microneedle-based electrochemical sensors are described, and potential solutions are presented. In the last section, the review delineates advances in microneedle-based electrochemical sensors, emphasizing the integration of diverse technologies with sensors to develop the next generation of self-powered and intelligent medical devices. These innovations aim to facilitate the wearable long-term monitoring of valuable biomarkers, thereby enhancing the quality of life of patients and users.
More Related Videos
13:42Dry Film Photoresist-based Electrochemical Microfluidic Biosensor Platform: Device Fabrication, On-chip Assay Preparation, and System Operation
Published on: September 19, 2017
08:15Fabrication of Fine Electrodes on the Tip of Hypodermic Needle Using Photoresist Spray Coating and Flexible Photomask for Biomedical Applications
Published on: November 28, 2017