Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Nanoparticle-Based Drug Delivery, Nanoplatforms for cancer theranostics, Graphene and Nanomaterials Applications, and Advanced Drug Delivery Systems.
Solvent-dependent loading of curcumin on MXene for enhanced stability and photothermal/photodynamic antibacterial activity
Electroactive Nanomaterials in Tissue Engineering: Advances, Mechanisms and Future Perspectives.
Protein corona as a barrier compromises the photothermal antibacterial activity of graphene oxide nanosheets.
Graphene Oxide Nanosheets as Direct Photosensitizers for Photodynamic Therapy in a Size-Dependent Manner.
Improved photostability of indocyanine green via loading on graphene oxide for enhanced and multiple-time antibacterial phototherapy at a single dose
Non-crosslinked and near-neutral chitosan-based oral spray with potent antibacterial and biofilm-disrupting activity
MXene-based functional nanomaterials and their applications in cancer diagnosis and therapy
Advances of functional nanomaterials as either therapeutic agents or delivery systems in the treatment of periodontitis.
Advances of Functional Two-Dimensional Nanomaterials in the Treatment of Oral Diseases.
Photodynamic and Photothermal Effects of MXene Ti<sub>3</sub>C<sub>2</sub>T<sub><i>x</i></sub> Under 460/808 nm Light Against Methicillin‐Resistant <i>Staphylococcus aureus</i>
Chitosan-Based Hydrogels as Antibacterial/Antioxidant/Anti-Inflammation Multifunctional Dressings for Chronic Wound Healing.
Nanomaterials-based advanced systems for photothermal / photodynamic therapy of oral cancer.
Amorphous metal–organic frameworks: Pioneering frontiers in cancer diagnostics and therapeutics
Multifunctional Regeneration Silicon-Loaded Chitosan Hydrogels for MRSA-Infected Diabetic Wound Healing.
Functional nanomaterials as photosensitizers or delivery systems for antibacterial photodynamic therapy.
Multifunctional MXene Nanosheets and Their Applications in Antibacterial Therapy
Exosomes: The endogenous nanomaterials packed with potential for diagnosis and treatment of neurologic disorders.
Chitosan-Based Multifunctional Biomaterials as Active Agents or Delivery Systems for Antibacterial Therapy.
Reversing the Natural Drug Resistance of Gram-Negative Bacteria to Fusidic Acid via Forming Drug-Phospholipid Complex.
Drug-free and multifunctional sodium bicarbonate/hyaluronic acid hybrid dressing for synergistic healing of infected wounds.
2D nanomaterials-based delivery systems and their potentials in anticancer synergistic photo-immunotherapy.
Cationic liposomes as a drug-free system for efficient anticancer therapy by intracytoplasmic delivery of sodium bicarbonate.
Exosomes as Potential Functional Nanomaterials for Tissue Engineering.
Gut microbiota and its roles in the pathogenesis and therapy of endocrine system diseases.
Prevotella histicola Transplantation Ameliorates Cognitive Impairment and Decreases Oxidative Stress in Vascular Dementia Rats
Intratumor delivery of amino-modified graphene oxide as a multifunctional photothermal agent for efficient antitumor phototherapy.
AVE 0991 Suppresses Astrocyte-Mediated Neuroinflammation of Alzheimer’s Disease by Enhancing Autophagy
Prevention of bacterial biofilm formation on orthodontic brackets by non-crosslinked chitosan coating.
Efficient Removal of Dental Plaque Biofilm from Training Typodont Teeth via Water Flosser.
Bacterial outer membrane vesicles as potential biological nanomaterials for antibacterial therapy.