MAINARDI, ANDREA
MAINARDI, ANDREA
DIPARTIMENTO DI ELETTRONICA, INFORMAZIONE E BIOINGEGNERIA
A microfluidic model to study the interaction between cardiomyocytes and fibroblast in cardiac scar formation
2019-01-01 Carminati, F; Isu, G; Diaz, Dr; Occhetta, P; Mainardi, A; Reid, G; Ugolini, S; Rasponi, M; Marsano, A
A microfluidic platform to assess the response of cartilage progenitor cells within 3D hydrogels to mechanical loading
2017-01-01 Occhetta, P; Mainardi, A; Votta, E; Ehrbar, M; Rasponi, M; Martin, I; Barbero, A
An OsteoChondral-Unit-on-Chip to Unravel the Mechano-Pathology of Osteoarthritis
2024-01-01 Mainardi, Andrea; Occhetta, Paola; Börsch, Anastasiya; Ivanek, Robert; Martin, Ivan; Rasponi, Marco; Barbero, Andrea
Beating organs-on-chip as advanced tools in drug screening: Engineered in vitro models of human organs and diseases
2019-01-01 Visone, Roberta; Mainardi, Andrea; Occhetta, Paola; Rasponi, Marco
Beating organs-on-chips as advanced preclinical tools for drug screening and disease modelling
2020-01-01 Occhetta, Paola; Visone, Roberta; Mainardi, Andrea; Piazza, Stefano; Barbero, Andrea; Rasponi, Marco
Cartilage on chip: Hyper-Physiological Compression in a microscale platform triggers osteoarthritic traits in a cartilage model
2018-01-01 Mainardi, Andrea; Occhetta, Paola; Votta, Emiliano; Ehrbar, Martin; Martin, Ivan; Barbero, Andrea; Rasponi, Marco
Cartilage on chip: Hyper-Physiological Compression in a microscale platform triggers osteoarthritic traits in a cartilage model EUROoC 2019 TU Graz
2019-01-01 Mainardi, A; Occhetta, P; Votta, E; Ehrbar, M; Martin, I; Barbero, A; Rasponi, M
Cartilage on chip: Hyper-Physiological Compression in a microscale platform triggers osteoarthritic traits in a cartilage model.
2019-01-01 Mainardi, Andrea; Occhetta, Paola; Votta, Emiliano; Vallmajo-Martin, Queralt; Ehrbar, Martin; Martin, Ivan; Barbero, Andrea; Rasponi, Marco
Cartilage-on-chip model: triggering osteoarthritis traits through mechanical compression
2018-01-01 Mainardi, A; Occhetta, P; Votta, E; Ehrbar, M; Martin, I; Barbero, A; Rasponi, M
Modeling in vitro osteoarthritis phenotypes in a human vascularized bone construct based on a bone-marrow derived mesenchymal cell line and endothelial cells
2021-01-01 Pirosa, Alessandro; Mainardi, Andrea; Occhetta, Paola; Tankus, Esma; Erhbar, Martin; Martin, Ivan; Rasponi, Marco; Andrea Barbero, And
Modelling cardiac fibrosis through a mechanically active multi-chamber organ on chip device
2020-01-01 Mainardi, Andrea; Occhetta, Paola; Ugolini, GIOVANNI STEFANO; Isu, Giuseppe; Visone, Roberta; Carminati, FRANCESCA GIULIA; Robles Diaz, Diana; Marsano, Anna; Rasponi, Marco
Modelling the joint on a chip: a Vertical Burst Valve allows for mechanically active, 3D, multi-layer vascularized osteochondral compartment OoC representations.
2021-01-01 Mainardi, Andrea; Occhetta, Paola; Martin, Ivan; Barbero, Andrea; Rasponi, Marco
Towards the joint on a chip: A microfluidic osteochondral model
2019-01-01 Mainardi, A.; Occhetta, P.; Ugolini, G. S.; Ehrbar, M.; Martin, I.; Barbero, A.; Rasponi, M.
Towards the joint on a chip: double layered directly interfaced tissues to mimic the Osteoarthritic cartilage-subchondral interface
2020-01-01 Mainardi, Andrea; Occhetta, Paola; Ugolini, GIOVANNI STEFANO; Martin, Ivan; Barbero, Andrea; Rasponi, Marco
Towards the knee on a chip: development of a microfluidic platform for the mechanical stimulation of three dimensional cartilaginous constructs.
2017-01-01 Mainardi, A; Occhetta, P; Votta, E; Rasponi, M