Literature DB >> 20224911

How to predict diffusion of medium-sized molecules in polymer matrices. From atomistic to coarse grain simulations.

Alfonso Gautieri1, Simone Vesentini, Alberto Redaelli.   

Abstract

The normal diffusion regime of many small and medium-sized molecules occurs on a time scale that is too long to be studied by atomistic simulations. Coarse-grained (CG) molecular simulations allow to investigate length and time scales that are orders of magnitude larger compared to classical molecular dynamics simulations, hence providing a valuable approach to span time and length scales where normal diffusion occurs. Here we develop a novel multi-scale method for the prediction of diffusivity in polymer matrices which combines classical and CG molecular simulations. We applied an atomistic-based method in order to parameterize the CG MARTINI force field, providing an extension for the study of diffusion behavior of penetrant molecules in polymer matrices. As a case study, we found the parameters for benzene (as medium sized penetrant molecule whose diffusivity cannot be determined through atomistic models) and Poly (vinyl alcohol) (PVA) as polymer matrix. We validated our extended MARTINI force field determining the self diffusion coefficient of benzene (2.27·10⁻⁹m² s⁻¹) and the diffusion coefficient of benzene in PVA (0.263·10⁻¹² m² s⁻¹). The obtained diffusion coefficients are in remarkable agreement with experimental data (2.20·10⁻⁹m² s⁻¹ and 0.25·10⁻¹² m² s⁻¹, respectively). We believe that this method can extend the application range of computational modeling, providing modeling tools to study the diffusion of larger molecules and complex polymeric materials.

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Year:  2010        PMID: 20224911     DOI: 10.1007/s00894-010-0687-7

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  8 in total

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Review 2.  Coarse-grained models for proteins.

Authors:  Valentina Tozzini
Journal:  Curr Opin Struct Biol       Date:  2005-04       Impact factor: 6.809

3.  The MARTINI force field: coarse grained model for biomolecular simulations.

Authors:  Siewert J Marrink; H Jelger Risselada; Serge Yefimov; D Peter Tieleman; Alex H de Vries
Journal:  J Phys Chem B       Date:  2007-06-15       Impact factor: 2.991

4.  The MARTINI Coarse-Grained Force Field: Extension to Proteins.

Authors:  Luca Monticelli; Senthil K Kandasamy; Xavier Periole; Ronald G Larson; D Peter Tieleman; Siewert-Jan Marrink
Journal:  J Chem Theory Comput       Date:  2008-05       Impact factor: 6.006

5.  Water and polymer dynamics in chemically cross-linked hydrogels of poly(vinyl alcohol): a molecular dynamics simulation study.

Authors:  Ester Chiessi; Francesca Cavalieri; Gaio Paradossi
Journal:  J Phys Chem B       Date:  2007-02-27       Impact factor: 2.991

6.  Molecular simulation of the effect of temperature and architecture on polyethylene barrier properties.

Authors:  Patricia Gestoso; Nikos Ch Karayiannis
Journal:  J Phys Chem B       Date:  2008-04-12       Impact factor: 2.991

7.  All-atom empirical potential for molecular modeling and dynamics studies of proteins.

Authors:  A D MacKerell; D Bashford; M Bellott; R L Dunbrack; J D Evanseck; M J Field; S Fischer; J Gao; H Guo; S Ha; D Joseph-McCarthy; L Kuchnir; K Kuczera; F T Lau; C Mattos; S Michnick; T Ngo; D T Nguyen; B Prodhom; W E Reiher; B Roux; M Schlenkrich; J C Smith; R Stote; J Straub; M Watanabe; J Wiórkiewicz-Kuczera; D Yin; M Karplus
Journal:  J Phys Chem B       Date:  1998-04-30       Impact factor: 2.991

8.  Coarse-grained models reveal functional dynamics--II. Molecular dynamics simulation at the coarse-grained level--theories and biological applications.

Authors:  Choon-Peng Chng; Lee-Wei Yang
Journal:  Bioinform Biol Insights       Date:  2008-03-05
  8 in total
  6 in total

1.  Nanomechanics of collagen microfibrils.

Authors:  Simone Vesentini; Alberto Redaelli; Alfonso Gautieri
Journal:  Muscles Ligaments Tendons J       Date:  2013-05-21

2.  Atomistic modeling of water diffusion in hydrolytic biomaterials.

Authors:  Alfonso Gautieri; Andrea Mezzanzanica; Alberto Motta; Alberto Redealli; Simone Vesentini
Journal:  J Mol Model       Date:  2011-07-23       Impact factor: 1.810

3.  The experimental evaluation and molecular dynamics simulation of a heat-enhanced transdermal delivery system.

Authors:  Daniel P Otto; Melgardt M de Villiers
Journal:  AAPS PharmSciTech       Date:  2012-12-11       Impact factor: 3.246

4.  Nanostructure and stability of calcitonin amyloids.

Authors:  Federica Rigoldi; Pierangelo Metrangolo; Alberto Redaelli; Alfonso Gautieri
Journal:  J Biol Chem       Date:  2017-03-10       Impact factor: 5.157

5.  Thermal stabilization of the deglycating enzyme Amadoriase I by rational design.

Authors:  Federica Rigoldi; Stefano Donini; Francesca Giacomina; Federico Sorana; Alberto Redaelli; Tiziano Bandiera; Emilio Parisini; Alfonso Gautieri
Journal:  Sci Rep       Date:  2018-02-14       Impact factor: 4.379

6.  Prediction of methane diffusion coefficient in water using molecular dynamics simulation.

Authors:  Hojatollah Moradi; Hedayat Azizpour; Hossein Bahmanyar; Mohammad Mohammadi; Mahdi Akbari
Journal:  Heliyon       Date:  2020-11-02
  6 in total

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