Area of research
Biomedical Engineering · Automotive Engineering
Research interest
Research interests include Materials science, Biofabrication, Self-healing hydrogels, Nanotechnology, 3D printing, and 3D bioprinting.
The road ahead in materials and technologies for volumetric 3D printing
Thermal Shrinking of Biopolymeric Hydrogels for High Resolution 3D Printing of Kidney Tubules
Volumetric Printing Across Melt Electrowritten Scaffolds Fabricates Multi‐Material Living Constructs with Tunable Architecture and Mechanics
A review of materials used in tomographic volumetric additive manufacturing
Spatial‐Selective Volumetric 4D Printing and Single‐Photon Grafting of Biomolecules within Centimeter‐Scale Hydrogels via Tomographic Manufacturing
Programming Delayed Dissolution Into Sacrificial Bioinks For Dynamic Temporal Control of Architecture within 3D‐Bioprinted Constructs
Biofunctionalization of 3D printed collagen with bevacizumab-loaded microparticles targeting pathological angiogenesis
Volumetric Bioprinting of Organoids and Optically Tuned Hydrogels to Build Liver‐Like Metabolic Biofactories
Biofabricating the vascular tree in engineered bone tissue
Human adult, pediatric and microtia auricular cartilage harbor fibronectin-adhering progenitor cells with regenerative ear reconstruction potential
High-resolution lithographic biofabrication of hydrogels with complex microchannels from low-temperature-soluble gelatin bioresins
Hydrogel-Based Bioinks for Cell Electrowriting of Well-Organized Living Structures with Micrometer-Scale Resolution
Bioprinting of Human Liver‐Derived Epithelial Organoids for Toxicity Studies
One‐Step Photoactivation of a Dual‐Functionalized Bioink as Cell Carrier and Cartilage‐Binding Glue for Chondral Regeneration
Volumetric Bioprinting of Complex Living‐Tissue Constructs within Seconds
Biofabrication: Volumetric Bioprinting of Complex Living‐Tissue Constructs within Seconds (Adv. Mater. 42/2019)