Area of research
Biomedical Engineering · Rheumatology
Research interest
Research interests include Cartilage, Mesenchymal stem cell, Self-healing hydrogels, Materials science, Chondrogenesis, and Biomedical engineering.
Personalized bioceramic grafts for craniomaxillofacial bone regeneration
Hybrid Co‐Spinning and Melt Electrowriting Approach Enables Fabrication of Heterotypic Tubular Scaffolds Resembling the Non‐Linear Mechanical Properties of Human Blood Vessels
Beyond resorption: osteoclasts as drivers of bone formation
Calcium phosphate with submicron topography influences primary human macrophage response, enhancing downstream angiogenesis and osteogenesis in vitro
Biofabricating the vascular tree in engineered bone tissue
High-resolution lithographic biofabrication of hydrogels with complex microchannels from low-temperature-soluble gelatin bioresins
Acceleration of Bone Regeneration Induced by a Soft‐Callus Mimetic Material
The chondrogenic differentiation potential of dental pulp stem cells
Endochondral Bone Regeneration by Non-autologous Mesenchymal Stem Cells
Gel Casting as an Approach for Tissue Engineering of Multilayered Tubular Structures
Visible Light Cross‐Linking of Gelatin Hydrogels Offers an Enhanced Cell Microenvironment with Improved Light Penetration Depth
Heterotypic Scaffold Design Orchestrates Primary Cell Organization and Phenotypes in Cocultured Small Diameter Vascular Grafts
A Versatile Biosynthetic Hydrogel Platform for Engineering of Tissue Analogues
Layer-specific cell differentiation in bi-layered vascular grafts under flow perfusion
Effect of donor variation on osteogenesis and vasculogenesis in hydrogel cocultures
Complete regeneration of large bone defects in rats with commercially available fibrin loaded with BMP-2
Contrast enhanced computed tomography for real-time quantification of glycosaminoglycans in cartilage tissue engineered constructs
Bio-ink development for three-dimensional bioprinting of hetero-cellular cartilage constructs
The impact of immune response on endochondral bone regeneration
Engineering of a complex bone tissue model with endothelialised channels and capillary-like networks
Development of a thermosensitive HAMA-containing bio-ink for the fabrication of composite cartilage repair constructs
Hyaluronic Acid-Based Hydrogel Coating Does Not Affect Bone Apposition at the Implant Surface in a Rabbit Model
Inflammation-Induced Osteogenesis in a Rabbit Tibia Model
Gelatin-Methacryloyl Hydrogels: Towards Biofabrication-Based Tissue Repair
Yield stress determines bioprintability of hydrogels based on gelatin-methacryloyl and gellan gum for cartilage bioprinting
A Synthetic Thermosensitive Hydrogel for Cartilage Bioprinting and Its Biofunctionalization with Polysaccharides
Three-Dimensional Bioprinting and Its Potential in the Field of Articular Cartilage Regeneration
Direct Cell–Cell Contact with Chondrocytes Is a Key Mechanism in Multipotent Mesenchymal Stromal Cell-Mediated Chondrogenesis
Endochondral bone formation in gelatin methacrylamide hydrogel with embedded cartilage-derived matrix particles
Does Implant Coating With Antibacterial-Loaded Hydrogel Reduce Bacterial Colonization and Biofilm Formation in Vitro?