Using a multiscale (dual resolution) approach combining an atomistic (GROMOS96) and coarse-grain (MARTINI) force field, we have been able to simulate the process of drug–polymer nanoparticle assembly by nanoprecipitation from mixed solvents. Here, we present the development and application of this method to the interaction of three poly(glycerol adipate) polymer variants with the anticancer drug dexamethasone phosphate. Differences in encapsulation efficiency and drug loading between the polymers are in agreement with the experimental trend. Reference atomistic simulations at key points along the predicted aggregation pathway support the accuracy of the much more computationally efficient multiscale methodology
Polymeric nanoparticles are a highly promising drug delivery formulation. However, a lack of underst...
International audienceDrug-polymer conjugates which can self-assemble into nanoparticles are promisi...
Amphotericin B (AmB) and Nystatin (Nys) are the drugs of choice for treatment of systemic and superf...
Using a multiscale (dual resolution) approach combining an atomistic (GROMOS96) and coarse-grain (MA...
Delivery of poorly soluble anticancer drugs can be achieved by employing polymeric drug delivery sys...
Selecting polymers for drug encapsulation in pharmaceutical formulations is usually made after exten...
A systematic multiscale method is presented for studying the structure–performance relationship of d...
© The Royal Society of Chemistry 2020. This article is licensed under a Creative Commons Attribution...
Polymer based nanoparticle formulations attract attention as potentially highly tunable drug deliver...
Experimental studies have reported the fundamental and applied science aspects of polyelectrolyte (P...
Using multi-scale molecular dynamics (MD) simulations, we systematically study the influences of nan...
Polymer-based drug delivery systems have fantastic potential in chemotherapy as they can reduce drug...
terest due to their potential as an ideal non-toxic vehicle for the delivery of active compounds in...
Nanotherapeutics is a promising field for numerous diseases and represents the forefront of modern m...
Molecular dynamics simulation is a very powerful tool to understand biomolecular processes. In this ...
Polymeric nanoparticles are a highly promising drug delivery formulation. However, a lack of underst...
International audienceDrug-polymer conjugates which can self-assemble into nanoparticles are promisi...
Amphotericin B (AmB) and Nystatin (Nys) are the drugs of choice for treatment of systemic and superf...
Using a multiscale (dual resolution) approach combining an atomistic (GROMOS96) and coarse-grain (MA...
Delivery of poorly soluble anticancer drugs can be achieved by employing polymeric drug delivery sys...
Selecting polymers for drug encapsulation in pharmaceutical formulations is usually made after exten...
A systematic multiscale method is presented for studying the structure–performance relationship of d...
© The Royal Society of Chemistry 2020. This article is licensed under a Creative Commons Attribution...
Polymer based nanoparticle formulations attract attention as potentially highly tunable drug deliver...
Experimental studies have reported the fundamental and applied science aspects of polyelectrolyte (P...
Using multi-scale molecular dynamics (MD) simulations, we systematically study the influences of nan...
Polymer-based drug delivery systems have fantastic potential in chemotherapy as they can reduce drug...
terest due to their potential as an ideal non-toxic vehicle for the delivery of active compounds in...
Nanotherapeutics is a promising field for numerous diseases and represents the forefront of modern m...
Molecular dynamics simulation is a very powerful tool to understand biomolecular processes. In this ...
Polymeric nanoparticles are a highly promising drug delivery formulation. However, a lack of underst...
International audienceDrug-polymer conjugates which can self-assemble into nanoparticles are promisi...
Amphotericin B (AmB) and Nystatin (Nys) are the drugs of choice for treatment of systemic and superf...