Molecular dynamics simulation techniques have been in the spotlight of recent nanomedicine research, becoming an indispensable tool for unveiling complex molecular mechanisms that are sometimes unreachable by experimental methods. Here, I will exemplify how MD simulations can complement existing experimental knowledge or provide new mechanistic insights into relevant aspects of nanoscale devices designed for nanomedicine. Through some case studies - from how thermodynamic variables (e.g., pH and ionic strength) affect the protein corona formation onto organic-functionalized nanoparticles to the impact of lipid composition in the permeation process of anti-tumoral drugs in membranes - this presentation will address how classical MD simulations can be helpful bridging the simulated microscopic behavior to their corresponding macroscopic manifestation.

Siani, P., Donadoni, E., Frigerio, G., DI VALENTIN, C. (2023). Mechanistic Insigths from Molecular Dynamics in Nanomedicine Research. Intervento presentato a: NANO23@uniVR, Verona, Italy..

Mechanistic Insigths from Molecular Dynamics in Nanomedicine Research

Paulo Siani
Primo
;
Edoardo Donadoni
Secondo
;
Giulia Frigerio
Penultimo
;
Cristiana Di Valentin
Ultimo
2023

Abstract

Molecular dynamics simulation techniques have been in the spotlight of recent nanomedicine research, becoming an indispensable tool for unveiling complex molecular mechanisms that are sometimes unreachable by experimental methods. Here, I will exemplify how MD simulations can complement existing experimental knowledge or provide new mechanistic insights into relevant aspects of nanoscale devices designed for nanomedicine. Through some case studies - from how thermodynamic variables (e.g., pH and ionic strength) affect the protein corona formation onto organic-functionalized nanoparticles to the impact of lipid composition in the permeation process of anti-tumoral drugs in membranes - this presentation will address how classical MD simulations can be helpful bridging the simulated microscopic behavior to their corresponding macroscopic manifestation.
relazione (orale)
protein corona, zeta potential, biomembranes
English
NANO23@uniVR
2023
2023
none
Siani, P., Donadoni, E., Frigerio, G., DI VALENTIN, C. (2023). Mechanistic Insigths from Molecular Dynamics in Nanomedicine Research. Intervento presentato a: NANO23@uniVR, Verona, Italy..
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/482019
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