Area of research
Biomedical Engineering · Condensed Matter Physics
Research interest
Research interests include Micro and Nano Robotics, Molecular Communication and Nanonetworks, Microfluidic and Bio-sensing Technologies, and Advanced biosensing and bioanalysis techniques.
Nanoparticle-modified microrobots for in vivo antibiotic delivery to treat acute bacterial pneumonia
Smart Materials for Microrobots
Physical Disruption of Solid Tumors by Immunostimulatory Microrobots Enhances Antitumor Immunity
Enzyme-powered Janus platelet cell robots for active and targeted drug delivery
Fantastic Voyage of Nanomotors into the Cell
Multicompartment Tubular Micromotors Toward Enhanced Localized Active Delivery
Active Delivery of VLPs Promotes Anti‐Tumor Activity in a Mouse Ovarian Tumor Model
Wearable biosensors for healthcare monitoring
Biomimetic Micromotor Enables Active Delivery of Antigens for Oral Vaccination
A Macrophage–Magnesium Hybrid Biomotor: Fabrication and Characterization
A Nanomotor-Based Active Delivery System for Intracellular Oxygen Transport
Micromotors for Active Delivery of Minerals toward the Treatment of Iron Deficiency Anemia
Rotibot: Use of Rotifers as Self‐Propelling Biohybrid Microcleaners
Hybrid biomembrane–functionalized nanorobots for concurrent removal of pathogenic bacteria and toxins
Active Intracellular Delivery of a Cas9/sgRNA Complex Using Ultrasound‐Propelled Nanomotors
Micromotors for “Chemistry-on-the-Fly”
Micromotor Pills as a Dynamic Oral Delivery Platform
Delayed Sensor Activation Based on Transient Coatings: Biofouling Protection in Complex Biofluids
Micro/nanorobots for biomedicine: Delivery, surgery, sensing, and detoxification
Micromotor-enabled active drug delivery for in vivo treatment of stomach infection
Micromotors Spontaneously Neutralize Gastric Acid for pH‐Responsive Payload Release
Biomimetic Platelet‐Camouflaged Nanorobots for Binding and Isolation of Biological Threats
Nanomotor-Enabled pH-Responsive Intracellular Delivery of Caspase-3: Toward Rapid Cell Apoptosis
Chitosan-based water-propelled micromotors with strong antibacterial activity
Targeting and isolation of cancer cells using micro/nanomotors
Micromotors Go In Vivo: From Test Tubes to Live Animals
Nano/microvehicles for efficient delivery and (bio)sensing at the cellular level
Chemotactic Guidance of Synthetic Organic/Inorganic Payloads Functionalized Sperm Micromotors
Bioinspired Chemical Communication between Synthetic Nanomotors