Drug delivery dynamics of biopolymer-protein based nanostructures cues via experimental approach and mathematical modeling

dc.audience.educationlevelInvestigadores/Researcherses_MX
dc.contributor.advisorNasir Iqbal, Hafiz Muhammad
dc.contributor.authorIbarra Sánchez, Luis Ángel
dc.contributor.catalogeremipsanchezes_MX
dc.contributor.committeememberParra Saldívar, Roberto
dc.contributor.committeememberMelchor Martínez, Elda Madai
dc.contributor.committeememberGámez Méndez, Ana María
dc.contributor.departmentSchool of Engineering and Scienceses_MX
dc.contributor.institutionCampus Monterreyes_MX
dc.contributor.mentorSosa Hernández, Juan Eduardo
dc.creatorIQBAL, HAFIZ MUHAMMAD NASIR; 735340
dc.date.accepted2022-05-31
dc.date.accessioned2022-11-15T04:28:34Z
dc.date.available2022-11-15T04:28:34Z
dc.date.issued2022-06-07
dc.descriptionhttps://orcid.org/0000-0003-4855-2720es_MX
dc.description.abstractRespiratory diseases are leading the burden in public health, usually found in the top chart of leading causes of death for many countries. Moreover, COVID-19 has aggravated this situation, having numerous patients with mild to severe symptoms. Besides, lung tissue inflammation and mucus overproduction are critical factors in patients’ comorbidity, not only for COVID-19 but also in other pulmonary diseases. In this project, the aim was to integrate the natural therapeutics curcumin (with a studied anti-inflammatory effect) and papain (a proteolytic enzyme used for mucus degradation) into a drug delivery nanostructure to administer intranasally. To reach this goal, curcumin was encapsulated in alginate particles with the emulsion-gelation method, obtaining an encapsulation efficiency of 81.23%. Also, curcumin particles showed a mean size of 500.8 nm, and a surface charge of -23.5 mV. Nonetheless, more studies are required to fully understand the emulsion system to obtain smaller and less disperse particles. Also, bioavailability and efficacy test are required to confirm feasibility of the project. In summary, nanoencapsulation in alginate via emulsion-gelation method has shown promising results for enhancing the curcumin solubility, bioavailability, and stability, to develop more efficient pulmonary treatments against inflammation.es_MX
dc.description.degreeMaestro en Ciencias de la Nanotecnologíaes_MX
dc.format.mediumTextoes_MX
dc.identificator7||33||3314||331499es_MX
dc.identifier.citationIbarra Sánchez, L.A. (2022). Drug delivery dynamics of biopolymer-protein based nanostructures cues via experimental approach and mathematical modeling, (Tesis Maestría). Instituto Tecnológico y de Estudios Superiores de Monterrey. Recuperado de: https://hdl.handle.net/11285/649898
dc.identifier.cvu1078456es_MX
dc.identifier.orcidhttps://orcid.org/0000-0001-5658-0831es_MX
dc.identifier.orcidhttps://orcid.org/0000-0001-5658-0831es_MX
dc.identifier.scopusid57479307700es_MX
dc.identifier.urihttps://hdl.handle.net/11285/649898
dc.language.isoenges_MX
dc.publisherInstituto Tecnológico y de Estudios Superiores de Monterreyes_MX
dc.relation.isFormatOfsubmittedVersiones_MX
dc.relation.isreferencedbyREPOSITORIO NACIONAL CONACYT
dc.rightsopenAccesses_MX
dc.rights.embargoreasonSe está preparando una publicación original a partir de los resultados presentados en éste documento de tesis.es_MX
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/4.0es_MX
dc.subject.classificationINGENIERÍA Y TECNOLOGÍA::CIENCIAS TECNOLÓGICAS::TECNOLOGÍA MÉDICA::OTRASes_MX
dc.subject.keywordDrug deliveryes_MX
dc.subject.keywordRespiratory diseaseses_MX
dc.subject.keywordEmulsion-gelationes_MX
dc.subject.keywordAlginatees_MX
dc.subject.lcshSciencees_MX
dc.titleDrug delivery dynamics of biopolymer-protein based nanostructures cues via experimental approach and mathematical modelinges_MX
dc.typeTesis de maestría

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