Medical Physics, AI and Neurotechnology · University of Rome Tor Vergata

fismed@uniroma2.it

FISMED / LABORATORIES

Molecular Methods and Nanomaterials

Molecular and cellular measurements connect biological mechanisms with material design and quantitative analysis. Research develops aptamer-based detection, fluorescence assays and approaches to studying extracellular vesicles and engineered nanocarriers. Microscopy, histology and computational modelling help characterise biological interactions, transport and material effects, including predictive methods for nanomaterial safety and environmental exposure.

06 / LABORATORY

Molecular Methods and Nanomaterials

Molecular and cellular measurements connect biological mechanisms with material design and quantitative analysis. Research develops aptamer-based detection, fluorescence assays and approaches to studying extracellular vesicles and engineered nanocarriers. Microscopy, histology and computational modelling help characterise biological interactions, transport and material effects, including predictive methods for nanomaterial safety and environmental exposure.

  • Aptamers and molecular detection
  • Fluorescence assays and extracellular vesicles
  • Nanocarriers and material–cell interactions
  • Nanoinformatics and exposure modelling