Frigerio, G., Donadoni, E., Siani, P., Vertemara, J., Motta, S., Bonati, L., et al. (2024). Mechanism of a nanodevice binding to its target protein by atomistic molecular dynamics: the case of RGD-conjugated PEGylated TiO2 nanoparticles binding to integrins αVβ3. Intervento presentato a: Research and Nanomedicine - June 13, 2024, Pavia, Italia.

Mechanism of a nanodevice binding to its target protein by atomistic molecular dynamics: the case of RGD-conjugated PEGylated TiO2 nanoparticles binding to integrins αVβ3

Giulia Frigerio;Edoardo Donadoni;Paulo Siani;Jacopo Vertemara;Stefano Motta;Laura Bonati;Luca De Gioia;Cristiana Di Valentin
2024

relazione (orale)
Nanomedicine, Active targeting, Integrin αVβ3, Titanium dioxide, Nanoparticle, Ligand density, PEGylation, Molecular mechanics, Molecular dynamics, Free energy, Machine learning
English
Research and Nanomedicine - June 13, 2024
2024
2024
https://www.unipv.news/sites/magazine/files/2024-05/2024_06_13_Brochure_Research and Nanomedicine_v2.pdf
none
Frigerio, G., Donadoni, E., Siani, P., Vertemara, J., Motta, S., Bonati, L., et al. (2024). Mechanism of a nanodevice binding to its target protein by atomistic molecular dynamics: the case of RGD-conjugated PEGylated TiO2 nanoparticles binding to integrins αVβ3. Intervento presentato a: Research and Nanomedicine - June 13, 2024, Pavia, Italia.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/485820
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