Literature DB >> 34561814

Molecular Dynamics Simulations and Experimental Results Provide Insight into Clinical Performance Differences between Sandimmune® and Neoral® Lipid-Based Formulations.

Dallas B Warren1, Shadabul Haque2, Mitchell P McInerney2, Karen M Corbett2, Endri Kastrati2, Leigh Ford3, Hywel D Williams3, Vincent Jannin4, Hassan Benameur4, Christopher J H Porter2, David K Chalmers5, Colin W Pouton6.   

Abstract

OBJECTIVE: Molecular dynamics (MD) simulations provide an in silico method to study the structure of lipid-based formulations (LBFs) and the incorporation of poorly water-soluble drugs within such formulations. In order to validate the ability of MD to effectively model the properties of LBFs, this work investigates the well-known cyclosporine A formulations, Sandimmune® and Neoral®. Sandimmune® exhibits poor dispersibility and its absorption from the gastrointestinal tract is enhanced when administered after food, whereas Neoral® disperses comparatively well and shows no food effect.
METHODS: MD simulations were performed of both LBFs to investigate the differences observed in fasted and fed conditions. These conditions were also tested using an in vitro experimental model of dispersion and digestion.
RESULTS: These MD simulations were able to show that the food effect observed for Sandimmune® can be explained by large changes in drug solubilization on addition of bile. In contrast, Neoral® is well dispersed in water or in simulated fasted conditions, and this dispersion is relatively unchanged on moving to fed conditions. These differences were confirmed using dispersion and digestion in vitro experimental model.
CONCLUSIONS: The current data suggests that MD simulations are a potential method to model the fate of LBFs in the gastrointestinal tract, predict their dispersion and digestion, investigate behaviour of APIs within the formulations, and provide insights into the clinical performance of LBFs.
© 2021. The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.

Entities:  

Keywords:  aqueous phase behaviour; in vitro digestion; lipid-based formulation; molecular dynamics simulation

Mesh:

Substances:

Year:  2021        PMID: 34561814     DOI: 10.1007/s11095-021-03099-5

Source DB:  PubMed          Journal:  Pharm Res        ISSN: 0724-8741            Impact factor:   4.200


  38 in total

1.  Molecular dynamics simulation of a lipid diamond cubic phase.

Authors:  S J Marrink; D P Tieleman
Journal:  J Am Chem Soc       Date:  2001-12-12       Impact factor: 15.419

2.  Validation of a novel molecular dynamics simulation approach for lipophilic drug incorporation into polymer micelles.

Authors:  Aliya O Kasimova; Giovanni M Pavan; Andrea Danani; Karine Mondon; Andrea Cristiani; Leonardo Scapozza; Robert Gurny; Michael Möller
Journal:  J Phys Chem B       Date:  2012-04-02       Impact factor: 2.991

3.  A Nonionic Polyethylene Oxide (PEO) Surfactant Model: Experimental and Molecular Dynamics Studies of Kolliphor EL.

Authors:  Estelle J A Suys; Dallas B Warren; Anna C Pham; Cameron J Nowell; Andrew J Clulow; Hassan Benameur; Christopher J H Porter; Colin W Pouton; David K Chalmers
Journal:  J Pharm Sci       Date:  2018-11-28       Impact factor: 3.534

4.  Location of Solvated Probe Molecules Within Nonionic Surfactant Micelles Using Molecular Dynamics.

Authors:  Dallas B Warren; Emma McPhee; Woldeamanuel A Birru; Hassan Benameur; David K Chalmers; Colin W Pouton
Journal:  J Pharm Sci       Date:  2018-11-03       Impact factor: 3.534

5.  Structure and dynamics of glyceride lipid formulations, with propylene glycol and water.

Authors:  Dallas B Warren; David K Chalmers; Colin W Pouton
Journal:  Mol Pharm       Date:  2009 Mar-Apr       Impact factor: 4.939

Review 6.  Strategies to address low drug solubility in discovery and development.

Authors:  Hywel D Williams; Natalie L Trevaskis; Susan A Charman; Ravi M Shanker; William N Charman; Colin W Pouton; Christopher J H Porter
Journal:  Pharmacol Rev       Date:  2013-01       Impact factor: 25.468

7.  Molecular dynamics simulations of self-emulsifying drug-delivery systems (SEDDS): influence of excipients on droplet nanostructure and drug localization.

Authors:  Sven P Benson; Jürgen Pleiss
Journal:  Langmuir       Date:  2014-07-11       Impact factor: 3.882

8.  Molecular dynamics simulations of functional group effects on solvation thermodynamics of model solutes in decane and tricaprylin.

Authors:  Sagar S Rane; Bradley D Anderson
Journal:  Mol Pharm       Date:  2008 Nov-Dec       Impact factor: 4.939

9.  Computational Models of the Gastrointestinal Environment. 2. Phase Behavior and Drug Solubilization Capacity of a Type I Lipid-Based Drug Formulation after Digestion.

Authors:  Woldeamanuel A Birru; Dallas B Warren; Sifei Han; Hassan Benameur; Christopher J H Porter; Colin W Pouton; David K Chalmers
Journal:  Mol Pharm       Date:  2017-02-15       Impact factor: 4.939

10.  Molecular Structuring and Phase Transition of Lipid-Based Formulations upon Water Dispersion: A Coarse-Grained Molecular Dynamics Simulation Approach.

Authors:  Per Larsson; Linda C Alskär; Christel A S Bergström
Journal:  Mol Pharm       Date:  2017-08-29       Impact factor: 4.939

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