Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Materials science, Drug delivery, Nanotechnology, Wound healing, Self-healing hydrogels, and Medicine.
Nanoparticle-Based Hybrid Scaffolds for Deciphering the Role of Multimodal Cues in Cardiac Tissue Engineering
Drug delivery systems and materials for wound healing applications
Smart Bandage for Monitoring and Treatment of Chronic Wounds
Electrically Driven Microengineered Bioinspired Soft Robots
A pH‐Mediated Electronic Wound Dressing for Controlled Drug Delivery
An Advanced Multifunctional Hydrogel‐Based Dressing for Wound Monitoring and Drug Delivery
A Textile Dressing for Temporal and Dosage Controlled Drug Delivery
Rapid prototyping of whole-thermoplastic microfluidics with built-in microvalves using laser ablation and thermal fusion bonding
Biodegradable elastic nanofibrous platforms with integrated flexible heaters for on-demand drug delivery
A Bioactive Carbon Nanotube‐Based Ink for Printing 2D and 3D Flexible Electronics
A toolkit of thread-based microfluidics, sensors, and electronics for 3D tissue embedding for medical diagnostics
Textile Technologies and Tissue Engineering: A Path Toward Organ Weaving
Oxygen-Generating Photo-Cross-Linkable Hydrogels Support Cardiac Progenitor Cell Survival by Reducing Hypoxia-Induced Necrosis
Highly Elastic and Conductive Human‐Based Protein Hybrid Hydrogels
Dermal Patch with Integrated Flexible Heater for on Demand Drug Delivery
Wireless Flexible Smart Bandage for Continuous Monitoring of Wound Oxygenation
Biodegradable Nanofibrous Polymeric Substrates for Generating Elastic and Flexible Electronics