About
Antonella Motta is full professor at the University of Trento, Department of Industrial Engineering and Chair of BIOtech Resarch Center (Italy); and European Institute of Excellence on Tissue Engineering and Regenerative Medicine, Italy. Research activities of Prof Motta are mainly focused on nature-derived polymers for tissue engineering applications, scaffold design, and interactions of material–biological systems. She mainly teaches bioengineering and tissue engineering and regenerative medicine courses. She has published about 90 papers, edited many chapters on tissue engineering topics, and owns some patents. She is member of the European Institute on Tissue Engineering and Regenerative Medicine, associate editor of the Journal of Bioactive and Compatible Polymers, member of the editorial board of the Journal of Biomaterials Science, Polymer Edition, and reviewer for many international journals and research agencies.
Employment
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University of Trento Associate professor2014 - 2020
Education
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University of Trento PhD Biomaterials1996 - 2000
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University of Padua Natural Sciences1983 - 1988
Projects & Funding
Projects & funding information is unavailable.
Publications (144)
- Effect of Sterilization Methods on the Physicochemical Properties of Silk Fibroin Hydrogels Save
- Silk fibroin from production wastes, a new raw material for biomaterial applications: physicochemical properties and biological performance Save
- Silk Fibroin Biomimetic Membranes with Villus–Crypt Architecture for In Vitro Intestinal Epithelium Modeling Save
- Bioprinted Constructs in the Regulatory Landscape: Current State and Future Perspectives Save
- Fabrication and characterization of SiOC(N) cellular structures via 3D-printed polyurethane templates impregnated with polysilazane Save
- Optimising β-Ti21S Alloy Lattice Structures for Enhanced Femoral Implants: A Study on Mechanical and Biological Performance Save
- Physico-Chemical Characterizations of Composited Calcium-Ortho-Phosphate Porous Particles and Their Controlled Release Behavior of Clindamycin Phosphate and Amikacin Sulfate Save
- Silk Fibroin Film Decorated with Ultralow FeCo Content by Sputtering Deposition Results in a Flexible and Robust Biomaterial for Magnetic Actuation Save
- Silk fibroin-based inks for in situ 3D printing using a double crosslinking process Save
- Nanocomposite Methacrylated Silk Fibroin-Based Scaffolds for Bone Tissue Engineering Save