Núria Oliva Jorge, PhD
Assistant Professor - Junior Leader F. La Caixa
+34932672000
RESEARCH LINES
- Bioadhesive-tissue interactions, nanotechnology for cancer treatment, smart biomaterials for cartilage regeneration
- Biomaterials and nanotechnology-enabled gene therapy
- Develoment of injectable and biocompatible materials
- Cartilage regenerationand osteoarthritis
MEMBER OF:
School of Engineering
Materials Engineering
Its activities focus on three main areas: the development of new functional materials, surface engineering and biomaterials.
School of Engineering
Chemical & Synthetic Biology for Biotherapies
This group combines chemistry and synthetic biology to develop precision bio-nano-therapeutics based on smart proteins and to generate molecular systems that enable transport of therapeutics to the brain.
LATEST PROJECTS
APTADEGRAD (Novel, first-in-class, protein degrader-based therapy for diabetic foot ulcer)
Development of a novel therapy using aptamer-base lysosomes to heal diabetic fool ulcers.
Funding Agency:
Research Group Link:
Materials Engineering (GEMAT)
Chemical & Synthetic Biology for Biotherapies (ChemSynBio)
Biomaterials Osteoarthritis (Combination of tough biomaterials and nanotechnology-enabled gene therapy to regenerate cartilage)
Innovative biomaterials to regenerate cartilage and treat osteoarthritis.
Funding Agency:
Research Group Link:
Materials Engineering (GEMAT)
Chemical & Synthetic Biology for Biotherapies (ChemSynBio)
HYDROMIRNA (Tratamiento del pie diabético con nanopartículas de micro-ARN)
Terapias basadas en la administración y dosificación de nanopartículas cargadas con micro-ARN como material terapeutico
Funding Agency:
Research Group Link:
Materials Engineering (GEMAT)
Chemical & Synthetic Biology for Biotherapies (ChemSynBio)