Related Experiment Video
Updated: Jun 16, 2026

Postproduction Processing of Electrospun Fibres for Tissue Engineering
Published on: August 9, 2012
Additively Manufactured Bioreactors for Scaffold-Coupled Electrical Stimulation
Mone't Sawyer1, Hailey Burgoyne2,3, Enrique Lopez4
1Biomedical Engineering Doctoral Program, Boise State University, Boise, Idaho 83725, United States.
Abstract:
Electrical stimulation (ES) modulates diverse cellular processes, yet in vitro platforms often lack precision, scalability, and compatibility with 3D bioscaffolds. We present a modular bioreactor system that delivers low-voltage, bioscaffold-coupled ES via conductive graphene foam, enabling real-time waveform monitoring and live cell imaging. Components were fabricated using low-cost stereolithography with BioMed Clear resin and validated through mechanical, chemical, and cytocompatibility analyses. Printed parts exhibited high dimensional accuracy, retained mechanical integrity post-sterilization, and supported >90% cell viability. Electrical measurements confirmed ohmic behavior and signal fidelity under physiological conditions. Calcium imaging revealed a >230% fluorescence increase during stimulation, indicating a robust cellular response. This platform provides a reproducible, accessible tool for probing ES-driven behavior in electroactive 3D microenvironments.
Related Concept Videos
Bioreactor Design and Operational System
Bioreactor Controls-II

