Interplay of Hydropathy and Heterogeneous Diffusion in the Molecular Transport within Lamellar Lipid Mesophases

Author:

Bosch Antonio M.1,Assenza Salvatore123ORCID

Affiliation:

1. Departamento de Física Teórica de la Materia Condensada, Universidad Autónoma de Madrid, 28049 Madrid, Spain

2. Condensed Matter Physics Center (IFIMAC), Universidad Autónoma de Madrid, 28049 Madrid, Spain

3. Instituto Nicolás Cabrera, Universidad Autónoma de Madrid, 28049 Madrid, Spain

Abstract

Lipid mesophases are being intensively studied as potential candidates for drug-delivery purposes. Extensive experimental characterization has unveiled a wide palette of release features depending on the nature of the host lipids and of the guest molecule, as well as on the environmental conditions. However, only a few simulation works have addressed the matter, which hampers a solid rationalization of the richness of outcomes observed in experiments. Particularly, to date, there are no theoretical works addressing the impact of hydropathy on the transport of a molecule within lipid mesophases, despite the significant fraction of hydrophobic molecules among currently-available drugs. Similarly, the high heterogeneity of water mobility in the nanoscopic channels within lipid mesophases has also been neglected. To fill this gap, we introduce here a minimal model to account for these features in a lamellar geometry, and systematically study the role played by hydropathy and water–mobility heterogeneity by Brownian-dynamics simulations. We unveil a fine interplay between the presence of free-energy barriers, the affinity of the drug for the lipids, and the reduced mobility of water in determining the net molecular transport. More in general, our work is an instance of how multiscale simulations can be fruitfully employed to assist experiments in release systems based on lipid mesophases.

Funder

“la Caixa” Foundation

European Union

Publisher

MDPI AG

Subject

Pharmaceutical Science

Reference84 articles.

1. The temperature-composition phase diagram and mesophase structure characterization of the monoolein/water system;Briggs;J. Phys. II,1996

2. Inverse bicontinuous cubic phases in 2: 1 fatty acid/phosphatidylcholine mixtures. The effects of chain length, hydration, and temperature;Templer;J. Phys. Chem. B,1998

3. Electrostatic swelling of bicontinuous cubic lipid phases;Tyler;Soft Matter,2015

4. Shear rheology of lyotropic liquid crystals: A case study;Mezzenga;Langmuir,2005

5. Diffusion, molecular separation, and drug delivery from lipid mesophases with tunable water channels;Negrini;Langmuir,2012

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