Area of research
Mechanics of Materials · Biomedical Engineering
Research interest
Research interests include Rock Mechanics and Modeling, Micro and Nano Robotics, Molecular Communication and Nanonetworks, and Nanoplatforms for cancer theranostics.
Gout management using uricase and sodium citrate hollow mesoporous nanomotors
A Biomimetic Sweeping Microrobot for Active Therapy of Ulcerative Colitis
RNA‐Seq Reveals the Mechanism of Synergistic Hydrogen‐Chemotherapy Based on Active Magnesium Micromotors for Inhibiting Glioblastoma Recurrence by Modulating Tumor Microenvironment
NIR‐Actuated Ferroptosis Nanomotor for Enhanced Tumor Penetration and Therapy
NIR-II Light-Actuated Nanomotors for Enhanced Photoimmunotherapy Toward Hepatocellular Carcinoma
Self‐Propelled Proteomotors with Active Cell‐Free mtDNA Clearance for Enhanced Therapy of Sepsis‐Associated Acute Lung Injury
Hyperthermia-triggered biomimetic bubble nanomachines
Mobile mechanical signal generator for macrophage polarization
Light‐Driven Biomimetic Nanomotors for Enhanced Photothermal Therapy
Bladder microenvironment actuated proteomotors with ammonia amplification for enhanced cancer treatment
Micromotor‐Enabled Active Hydrogen and Tobramycin Delivery for Synergistic Sepsis Therapy
Immunostimulant In Situ Fibrin Gel for Post-operative Glioblastoma Treatment by Macrophage Reprogramming and Photo–Chemo-Immunotherapy
A NIR-driven green affording-oxygen microrobot for targeted photodynamic therapy of tumors
Application of Microscopic Highly Hydrophilic Silica-Based Nanocomposites with High Surface Exposure in the Efficient Identification of Intact N-Glycopeptides
Arthritic Microenvironment Actuated Nanomotors for Active Rheumatoid Arthritis Therapy
Magnetically Actuated Biohybrid Microswimmers for Precise Photothermal Muscle Contraction
Micromotor Based Mini-Tablet for Oral Delivery of Insulin
Light driven micromotor swarm for tumor photothermal therapy
Visible-light-driven TiO2@N-Au nanorobot penetrating the vitreous
NH2-SiO2-C3H7 with abundant surface groups exposure as the efficient catalyst for the Aldol condensation reaction
MnO<sub>2</sub>-Based Nanomotors with Active Fenton-like Mn<sup>2+</sup> Delivery for Enhanced Chemodynamic Therapy
Hydrogen‐Powered Microswimmers for Precise and Active Hydrogen Therapy Towards Acute Ischemic Stroke
Control the Neural Stem Cell Fate with Biohybrid Piezoelectrical Magnetite Micromotors
Apoptotic Tumor DNA Activated Nanomotor Chemotaxis
Magnetic Helical Hydrogel Motor for Directing T Cell Chemotaxis
Wireless Manipulation of Magnetic/Piezoelectric Micromotors for Precise Neural Stem‐Like Cell Stimulation
Hyperthermia‐Triggered On‐Demand Biomimetic Nanocarriers for Synergetic Photothermal and Chemotherapy
Photoelectrochemical TiO<sub>2</sub>‐Au‐Nanowire‐Based Motor for Precise Modulation of Single‐Neuron Activities
Magnesium-based micromotors for enhanced active and synergistic hydrogen chemotherapy