| Literature DB >> 29376196 |
Irene Wood1,2, Juan M R Albano1,2, Pedro L O Filho3, Veronica Muniz Couto4, Marcelo A de Farias5, Rodrigo V Portugal5, Eneida de Paula4, Cristiano L P Oliveira3, Monica Pickholz6,7.
Abstract
In this work, we developed a coarse-grained model of sumatriptan suitable for extensive molecular dynamics simulations. First, we confirmed the interfacial distribution of this drug in bilayers through cryogenic transmission electron microscopy and small-angle X-ray scattering techniques, as was predicted by our previous atomistic simulations. Based on these simulations, we developed a coarse-grained model for sumatriptan able to reproduce its overall molecular behavior, captured by atomistic simulations and experiments. We then tested the sumatriptan model in a micellar environment along with experimental characterization of sumatriptan-loaded micelles. The simulation results showed good agreement with photon correlation spectroscopy and electrophoretic mobility experiments performed in this work. The particle size of the obtained micelles was comparable with the simulated ones; meanwhile, zeta-potential results suggest adsorption of the drug on the micellar surface. This model is a step forward in the search for a suitable drug-delivery system for sumatriptan.Entities:
Keywords: Coarse-grained model; Cryo-TEM; Molecular dynamics; SAXS; Sumatriptan
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Year: 2018 PMID: 29376196 DOI: 10.1007/s00249-018-1278-2
Source DB: PubMed Journal: Eur Biophys J ISSN: 0175-7571 Impact factor: 1.733