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Computational and experimental approaches for development of methotrexate nanosuspensions by bottom-up nanoprecipitation

dc.contributor.authordos Santos, Aline Martins [UNESP]
dc.contributor.authorCarvalho, Flávia Chiva
dc.contributor.authorTeixeira, Deiver Alessandro
dc.contributor.authorAzevedo, David Lima
dc.contributor.authorde Barros, Wander Miguel
dc.contributor.authorGremião, Maria Palmira Daflon [UNESP]
dc.contributor.institutionUniversidade Estadual Paulista (Unesp)
dc.contributor.institutionFederal University of Alfenas-UNIFAL
dc.contributor.institutionFederal Institute of Mato Grosso-IFMT
dc.contributor.institutionInstitute of Physical—University of Brasília-UnB
dc.date.accessioned2018-12-11T17:32:06Z
dc.date.available2018-12-11T17:32:06Z
dc.date.issued2017-05-30
dc.description.abstractDevelopment of nanosuspensions offers a promising tool for formulations involving poorly water-soluble drugs. In this study, methotrexate (MTX) nanosuspensions were prepared using a bottom-up process based on acid-base neutralization reactions. Computational studies were performed to determine structural and electronic properties for isolated molecules and molecular clusters in order to evaluate the mechanism of MTX nanoparticle formation. Computational results indicated that the clusters in zwitterionic and cationic states presented larger dimensions and higher energies of interaction between MTX molecules, which favored aggregation. In contrast, the clusters in the anionic state exhibited lower energies of interaction, indicating aggregation was less likely to occur. Experimental results indicated that the higher the HCl proportion during drug precipitation, the greater the particle size, resulting in micrometric particles (2874–7308 nm) (cationic and zwitterionic forms). However, MTX nanoparticles ranging in size from 132 to 186 nm were formed using the lowest HCl proportion during drug precipitation (anionic form). In vitro release profiles indicated that the drug release rate from nanosuspension was increased (approximately 2.6 times) over that of the raw material. Overall, computational modeling and experimental analysis were complementary and assisted in the rational design of the nanosuspension based on acid-base reactions.en
dc.description.affiliationDepartment of Drugs and Pharmaceutics Faculty of Pharmaceutical Sciences São Paulo State University-UNESP
dc.description.affiliationFaculty of Pharmaceutical Sciences Federal University of Alfenas-UNIFAL
dc.description.affiliationFederal Institute of Mato Grosso-IFMT
dc.description.affiliationInstitute of Physical—University of Brasília-UnB
dc.description.affiliationUnespDepartment of Drugs and Pharmaceutics Faculty of Pharmaceutical Sciences São Paulo State University-UNESP
dc.format.extent330-338
dc.identifierhttp://dx.doi.org/10.1016/j.ijpharm.2017.03.068
dc.identifier.citationInternational Journal of Pharmaceutics, v. 524, n. 1-2, p. 330-338, 2017.
dc.identifier.doi10.1016/j.ijpharm.2017.03.068
dc.identifier.file2-s2.0-85017399633.pdf
dc.identifier.issn1873-3476
dc.identifier.issn0378-5173
dc.identifier.lattes9129780536724256
dc.identifier.scopus2-s2.0-85017399633
dc.identifier.urihttp://hdl.handle.net/11449/178792
dc.language.isoeng
dc.relation.ispartofInternational Journal of Pharmaceutics
dc.relation.ispartofsjr1,172
dc.rights.accessRightsAcesso abertopt
dc.sourceScopus
dc.subjectAcid-base neutralization
dc.subjectBottom-up process
dc.subjectComputational modeling
dc.subjectMethotrexate
dc.subjectNanosuspensions
dc.titleComputational and experimental approaches for development of methotrexate nanosuspensions by bottom-up nanoprecipitationen
dc.typeArtigopt
dspace.entity.typePublication
relation.isDepartmentOfPublicatione214da1b-9929-4ae9-b8fd-655e9bfeda4b
relation.isDepartmentOfPublication.latestForDiscoverye214da1b-9929-4ae9-b8fd-655e9bfeda4b
unesp.author.lattes9129780536724256
unesp.departmentFármacos e Medicamentos - FCFpt

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