3D-Printed Hollow Microneedle Potentiometric Sensors: A Modular Approach
Autor/es
Wei, Qikun; Molinero Fernández, Águeda; Rojas, Daniel; Wang, Qianyu; Crespo, Gastón A.; [et al.]Fecha
2026-07-24Disciplina/s
FarmaciaMateria/s
Wearable sensorsAdditive manufacturing
Solid contact
Electrochemical Sensor
Sensor customization
Resumen
Microneedle sensors represent a genuine approach to continuous health monitoring with minimally invasive access to skin interstitial fluid. However, their clinical deployment is hindered by complex fabrication and functionalization processes that compromise reproducibility and scalability. Truly, recent advancements in additive manufacturing have diminished certain obstacles; yet, single-modality techniques continue to encounter a significant trade-off between attaining high resolution and including electrochemical functionality. Accordingly, we introduce herein a novel modular hollow microneedle (HMN) architecture that separates insertion mechanics from ion sensing functionality. This new strategy synergistically integrates two complementary 3D printing modalities: high-resolution masked stereolithography (MSLA) to produce a robust, HMN shell, and fused filament fabrication (FFF) to fabricate a conductive pillar electrode to be modified with the ion-sensing role. The modularity of the...





