Quantitative structure-property/activity relationship (QSPR/QSAR) model towards the prediction of novel fullerene derivatives as drug nanocarriers: the case of the CXCR7 protein and chemotherapy drugs used for breast cancer

dc.audience.educationlevelPúblico en general/General publices_MX
dc.contributor.advisorMiralrio Pineda, Alan Joel
dc.contributor.authorRobles Hernández, Jonathan Siu Loong
dc.contributor.catalogeremiggomez, emipsanchezes_MX
dc.contributor.committeememberDel Castillo Vázques, Roxana Mitzayé
dc.contributor.departmentEscuela de ingeniería y cienciases_MX
dc.contributor.institutionCampus Estado de Méxicoes_MX
dc.contributor.mentorMedina Medina, Dora Iliana
dc.date.accepted2023-06-06
dc.date.accessioned2024-07-21T20:54:59Z
dc.date.available2024-07-21T20:54:59Z
dc.date.issued2023-06-20
dc.descriptionhttps://orcid.org/0000-0002-7992-3718es_MX
dc.description.abstractThis project aimed to study the CXCR7 protein, related to the membrane and expressed in various forms of cancer. We will seek to calculate the binding score between breast cancer drugs and the most favorable active site in CXCR7, isolated and forming a complex with water-soluble derivatives of fullerene C60 as a nanocarrier, by molecular docking. Antitumoral drugs were tested to evaluate the behavior of the C60 to act as a drug nanocarrier. A collection of quantitative structure activity/property relationship (QSAR/QSPR) models were obtained to predict the protein-ligand binding score based on descriptors of the isolated molecules. To propose new nanomaterials that serve as drug carriers, this project proposes creating a QSPR model to predict the binding score between drugs and ligand-nanocarrier complexes. As a result of this study, it has been obtained that the binding score, when is used the fullerenes C60 or C60-COOH, has a higher magnitude in comparison with the binding score of the isolated drug. Another important conclusion is that the binding site for the isolated drugs with the CXCR7 protein is different in comparison to the drug with fullerene C60, in the first case the binding site is inside of the protein, and in the second case is outside of the protein. The case of drug-C60-COOH complex has three possible binding sites. With this project was possible to obtain mathematical models to predict the binding score between the protein and the isolated drug, the complex drug-C60, and drug-C60-COOH. In case of isolated drug, was possible to obtain a model with a MAPE (Mean Absolute Percentage Error) value of 6.17% by the use of artificial intelligence (AI). Besides, for drug-C60 complex was possible to obtain a mathematical model by multiple linear regression (MLR) with a MAPE of 4.97%. Finally, for drug-C60-COOH complex was possible to obtain a model with MAPE value of 6.7% by MLR.es_MX
dc.description.degreeMaster in nanotechnology.es_MX
dc.format.mediumTextoes_MX
dc.identificator3||32||3209||320902es_MX
dc.identifier.citationRobles Hernández, J.S.L.(2023).Quantitative structure-property/activity relationship (QSPR/QSAR) model towards the prediction of novel fullerene derivatives as drug nanocarriers: the case of the CXCR7 protein and chemotherapy drugs used for breast cancer.[Tesis maestría]. Instituto Tecnológico y de Estudios Superiores de Monterrey. Recuperado de: https://hdl.handle.net/11285/676175es_MX
dc.identifier.cvu1153751es_MX
dc.identifier.doihttps://doi.org/10.60473/ffqy-e970
dc.identifier.orcidhttps://orcid.org/0009-0004-8982-0650es_MX
dc.identifier.urihttps://hdl.handle.net/11285/676175
dc.language.isoenges_MX
dc.publisherInstituto Tecnológico y de Estudios Superiores de Monterreyes_MX
dc.relation.isFormatOfpublishedVersiones_MX
dc.rightsopenAccesses_MX
dc.rights.urihttp://creativecommons.org/licenses/by/4.0es_MX
dc.subject.classificationMEDICINA Y CIENCIAS DE LA SALUD::CIENCIAS MÉDICAS::FARMACOLOGÍA::COMPOSICIÓN DE MEDICAMENTOSes_MX
dc.subject.keywordNanocarrierses_MX
dc.subject.keywordDrug deliveryes_MX
dc.subject.keywordProteines_MX
dc.subject.keywordBreast canceres_MX
dc.subject.lcshSciencees_MX
dc.titleQuantitative structure-property/activity relationship (QSPR/QSAR) model towards the prediction of novel fullerene derivatives as drug nanocarriers: the case of the CXCR7 protein and chemotherapy drugs used for breast canceres_MX
dc.typeTesis de maestría

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