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dc.contributor.authorChapa, Christian
dc.date.accessioned2024-12-10T20:02:03Z
dc.date.available2024-12-10T20:02:03Z
dc.date.issued2024-07-20es_MX
dc.identifier.urihttps://cathi.uacj.mx/20.500.11961/29463
dc.description.abstractStarch is a promising polymer for creating novel microparticulate systems with superior biocompatibility and controlled drug delivery capabilities. In this study, we synthesized polyethylene glycol (PEG)-modified starch microparticles and encapsulated folic acid using a solvent-mediated acid-base precipitation method with magnetic stirring, which is a simple and effective method. To evaluate particle degradation, we simulated physiological conditions by employing an enzymatic degradation approach. Our results with FTIR and SEM confirmed the successful synthesis of starch–PEG microparticles encapsulating folic acid. The average size of starch microparticles encapsulating folic acid was 4.97 μm and increased to 6.01 μm upon modification with PEG. The microparticles were first exposed to amylase at pH 6.7 and pepsin at pH 1.5 at different incubation times at physiological temperature with shaking. Post-degradation analysis revealed changes in particle size and morphology, indicating effective enzymatic degradation. FTIR spectroscopy was used to assess the chemical composition before and after degradation. The initial FTIR spectra displayed characteristic peaks of starch, PEG, and folic acid, which showed decreased intensities after enzymatic degradation, suggesting alterations in chemical composition. These findings demonstrate the ongoing development of starch–PEG microparticles for controlled drug delivery and other biomedical applications and provide the basis for further exploration of PEG–starch as a versatile biomaterial for encapsulating bioactive compounds.es_MX
dc.description.urihttps://www.mdpi.com/2073-4360/16/14/2075es_MX
dc.language.isoen_USes_MX
dc.relation.ispartofProducto de investigación IITes_MX
dc.relation.ispartofInstituto de Ingeniería y Tecnologíaes_MX
dc.rightsAtribución 2.5 México*
dc.rights.urihttp://creativecommons.org/licenses/by/2.5/mx/*
dc.subjectbiomateriales_MX
dc.subjectstarches_MX
dc.subjectenzymees_MX
dc.subjectamylasees_MX
dc.subjectpepsines_MX
dc.subjectdrug deliveryes_MX
dc.subjectpolyethylene glycoles_MX
dc.subjectfolic acides_MX
dc.subjectmicroencapsulationes_MX
dc.subjectdegradationes_MX
dc.subject.otherinfo:eu-repo/classification/cti/2es_MX
dc.subject.otherinfo:eu-repo/classification/cti/7es_MX
dc.titleProtective Encapsulation of a Bioactive Compound in Starch–Polyethylene Glycol-Modified Microparticles: Degradation Analysis with Enzymeses_MX
dc.typeArtículoes_MX
dcterms.thumbnailhttp://ri.uacj.mx/vufind/thumbnails/rupiiit.pnges_MX
dcrupi.institutoInstituto de Ingeniería y Tecnologíaes_MX
dcrupi.cosechableSies_MX
dcrupi.norevista14es_MX
dcrupi.volumen16es_MX
dcrupi.nopagina2075es_MX
dc.identifier.doihttps://doi.org/10.3390/polym16142075es_MX
dc.journal.titlePolymerses_MX
dc.contributor.authorexternoValenzuela Villela, Karen Sofía
dc.contributor.coauthorexternoGarcía Casillas, Perla Elvia
dcrupi.impactosocialSies_MX
dcrupi.pronacesSaludes_MX


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