Area of research
Biomedical Engineering · Surgery
Research interest
Research interests include Nanotechnology, Materials science, 3D bioprinting, Regeneration (biology), Biomedical engineering, and Tissue engineering.
Engineered stimuli-responsive MOFs: Toward intelligent drug delivery systems for precision biomedicine
Recent advances in metal–organic frameworks for stimuli-responsive drug delivery
A review of biomacromolecule-based 3D bioprinting strategies for structure-function integrated repair of skin tissues
Multifunctional aerogel: A unique and advanced biomaterial for tissue regeneration and repair
Biomimetic fabrication bioprinting strategies based on decellularized extracellular matrix for musculoskeletal tissue regeneration: Current status and future perspectives
Integrated design and application of stimuli-responsive metal–organic frameworks in biomedicine: current status and future perspectives
Nanomaterials-based photothermal therapies for antibacterial applications
Metal-organic framework-based advanced therapeutic tools for antimicrobial applications
Multifunctional metal–organic frameworks for wound healing and skin regeneration
Recent advances in biofabrication strategies based on bioprinting for vascularized tissue repair and regeneration
Recent Advances in Decellularized Extracellular Matrix-Based Bioinks for 3D Bioprinting in Tissue Engineering
Integrated design and fabrication strategies based on bioprinting for skeletal muscle regeneration: Current status and future perspectives
Integrated osteoimmunomodulatory strategies based on designing scaffold surface properties in bone regeneration
Design and fabrication of intracellular therapeutic cargo delivery systems based on nanomaterials: current status and future perspectives
Recent progress in Mg-based alloys as a novel bioabsorbable biomaterials for orthopedic applications
Progress of Phototherapy Applications in the Treatment of Bone Cancer
3D Bioprinting for Vascularized Tissue-Engineered Bone Fabrication
Human Urine-Derived Stem Cells: Potential for Cell-Based Therapy of Cartilage Defects