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Análisis molecular y funcional de la respuesta de macrófagos de pacientes con diabetes a la infección in vitro por Mycobacterium tuberculosis

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dc.contributor Jose Antonio Enciso-Moreno;0000-0002-2793-0473 es_MX
dc.contributor Christian Alberto Garcia-Sepulveda;0000-0002-1169-7857 es_MX
dc.contributor.advisor Enciso Moreno, José Antonio
dc.contributor.advisor García Sepúlveda, Christian Alberto
dc.contributor.author Jaime Sánchez, Elena
dc.coverage.spatial México. Zacatecas. Zacatecas es_MX
dc.creator Elena Jaime-Sánchez;0000-0003-2090-5280 es_MX
dc.date.accessioned 2022-09-08T15:27:59Z
dc.date.available 2023-09-06
dc.date.available 2022-09-08T15:27:59Z
dc.date.issued 2022-09
dc.identifier.uri https://repositorioinstitucional.uaslp.mx/xmlui/handle/i/7949
dc.description.abstract The molecular mechanisms that lead to tuberculosis-diabetes comorbidity are only partially known. In this work, a transcriptomic study focused on tuberculosis-diabetes disease associated with poor glycaemic control was carried out in patients with type 2 diabetes (DM2), as these subjects are at high risk of becoming ill with tuberculosis. Human blood samples from five groups of individuals: healthy controls (CTRL), tuberculosis (TB), TB-Type 2 diabetes comorbidity (TB-DM2), DM2 patients (HbA1c < 8.9%) and DM2 patients with poor glycaemic control (PDM2; HbA1c > 10%) were analyzed using differential expression microarrays. The differentially expressed genes (DEG) specific for TB-DM2 and PDM2 (P < 0.05, fold change > 2) were analyzed throughout a network strategy for the identification of potential molecular patterns linking PDM2 and TB-DM2. OSM, PRKCD and SOCS3 were found as potential key regulatory genes of immune pathways that drives the susceptibility of PDM2 patients to develop TB. RT-qPCR assays confirmed the induction of the OSM, PRKCD and SOCS3 genes in patients with TB-DM2. Furthermore, these molecules showed a protein-protein interaction network scored composed of 19 proteins and 30 pathways interactions. These analyzes suggest that poorly controlled DM2 leads to a transcriptional change that modifies the expression of key regulatory molecules associated with the poor immune response observed in patients with TB and provides essential information to better understand the molecular pathology of TB-DM2. es_MX
dc.description.sponsorship CONACYT, Beca 487638 es_MX
dc.description.sponsorship IMSS, Beca 2017-058 es_MX
dc.description.sponsorship Proyecto de Ciencia Básica CONACyT número A1-S-48232 (registro IMSS: R-2018-785-118) es_MX
dc.description.statementofresponsibility Grupos de la comunidad es_MX
dc.description.statementofresponsibility Investigadores es_MX
dc.description.statementofresponsibility Estudiantes es_MX
dc.language Inglés es_MX
dc.relation.requires Transcriptional signature associated with early rheumatoid arthritis and healthy individuals at high risk to develop the disease. PLoS One. 2018. PMID: 29584756. DOI: 10.1371/journal.pone.0194205. Artículo es_MX
dc.relation.requires Glycerophospholipid Metabolism Alterations in Patients with Type 2 Diabetes Mellitus and Tuberculosis Comorbidity. Arch Med Res. 2019. PMID: 31349956. DOI: 10.1016/j.arcmed.2019.05.006. Artículo es_MX
dc.rights Acceso Embargado es_MX
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/4.0 es_MX
dc.subject Poor glycaemic control es_MX
dc.subject diabetes-tuberculosis comorbidity es_MX
dc.subject transcriptomics es_MX
dc.subject molecular patterns es_MX
dc.subject regulatory genes es_MX
dc.subject.other BIOLOGÍA Y QUIMICA es_MX
dc.subject.other MEDICINA Y CIENCIAS DE LA SALUD es_MX
dc.title Análisis molecular y funcional de la respuesta de macrófagos de pacientes con diabetes a la infección in vitro por Mycobacterium tuberculosis es_MX
dc.type Tesis de doctorado es_MX
dc.degree.name Doctorado en Ciencias Biomédicas Básicas es_MX
dc.degree.department Facultad de Medicina es_MX


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