Interaction of Breast Cancer and Insulin Resistance on PD1 and TIM3 Expression in Peripheral Blood CD8 T Cells View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

2019-02-13

AUTHORS

Miriam Victoria Martín-Manzo, Carlos Lara, Cruz Vargas-de-Leon, Julio Carrero, Gloria Queipo, Miguel Fonseca-Sanchez, Nancy R. Mejia-Dominguez, David Kershenobich, Srinivas Mummidi, Alejandro Zentella-Dehesa, Joselin Hernandez

ABSTRACT

Epidemiological evidence points to a link between insulin resistance (IR) and breast cancer (BrCA). Insulin plays a role in CD8+ T cells (CD8T) differentiation and function and affects adipocytokines levels. CD8T activity in BrCA is associated with favorable outcome; while PD1 and TIM3 are markers of CD8T exhaustion and play critical roles in the negative regulation of T cell responses. Patients with (BrCA) have high expression levels of PD1 on circulating. Therefore, we hypothesized that BrCA and IR could affect PD1 and/or TIM3 expression on circulating CD8T. We determine PD1 and TIM3 expression on CD8T and analyze the relationship of CD8T phenotype with serum insulin and plasma adipocytokines levels in the different groups. We enrolled four groups of treatment-naive patients: women without neoplasms (Neo-)/without IR (IR-), Neo-/with IR (IR+), BrCa/IR- and BrCa/IR+. We found interactions between BrCA and IR with respect to TIM3 on naïve and central memory (CM) CD8T subsets. Furthermore, BrCA had a greater PD1 + TIM3- CD8T frequency in CD8T subsets than Neo-. IR+ presented a significantly lower PD1 + TIM3- frequency in CD8T subsets compare to Non-IR. In addition, we found a negative correlation between insulin levels, HOMA and frequency of PD1 + TIM3- in CD8T and a positive correlation between adiponectin levels and the frequency PD1 + TIM3- in CD8T. The increased expression of PD1 on different subsets of CD8T from BrCa patients is consistent with immunological tolerance, whereas IR has a contrary effect. IR could have a deleterious role in the activation of CD8T that can be relevant to new BrCa immunotherapy. More... »

PAGES

1-11

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/s12253-019-00610-7

DOI

http://dx.doi.org/10.1007/s12253-019-00610-7

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1112096778

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/30759303


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    "description": "Epidemiological evidence points to a link between insulin resistance (IR) and breast cancer (BrCA). Insulin plays a role in CD8+ T cells (CD8T) differentiation and function and affects adipocytokines levels. CD8T activity in BrCA is associated with favorable outcome; while PD1 and TIM3 are markers of CD8T exhaustion and play critical roles in the negative regulation of T cell responses. Patients with (BrCA) have high expression levels of PD1 on circulating. Therefore, we hypothesized that BrCA and IR could affect PD1 and/or TIM3 expression on circulating CD8T. We determine PD1 and TIM3 expression on CD8T and analyze the relationship of CD8T phenotype with serum insulin and plasma adipocytokines levels in the different groups. We enrolled four groups of treatment-naive patients: women without neoplasms (Neo-)/without IR (IR-), Neo-/with IR (IR+), BrCa/IR- and BrCa/IR+. We found interactions between BrCA and IR with respect to TIM3 on na\u00efve and central memory (CM) CD8T subsets. Furthermore, BrCA had a greater PD1\u2009+\u2009TIM3- CD8T frequency in CD8T subsets than Neo-. IR+ presented a significantly lower PD1\u2009+\u2009TIM3- frequency in CD8T subsets compare to Non-IR. In addition, we found a negative correlation between insulin levels, HOMA and frequency of PD1\u2009+\u2009TIM3- in CD8T and a positive correlation between adiponectin levels and the frequency PD1\u2009+\u2009TIM3- in CD8T. The increased expression of PD1 on different subsets of CD8T from BrCa patients is consistent with immunological tolerance, whereas IR has a contrary effect. IR could have a deleterious role in the activation of CD8T that can be relevant to new BrCa immunotherapy.", 
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281 https://www.grid.ac/institutes/grid.449717.8 schema:alternateName The University of Texas Rio Grande Valley
282 schema:name South Texas Diabetes and Obesity Institute, University of Texas Rio Grande Valley, Edinburg, TX, USA
283 rdf:type schema:Organization
284 https://www.grid.ac/institutes/grid.9486.3 schema:alternateName National Autonomous University of Mexico
285 schema:name Departamento de Genética, Hospital General de México Dr. Eduardo Liceaga, Ciudad de México, México
286 Departamento de Inmunología, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Ciudad de México, Mexico
287 Facultad de Medicina Universidad Nacional Autónoma de México, Ciudad de México, México
288 HIPAM, Unidad de Investigación en Medicina Experimental, Facultad de Medicina, Universidad Nacional Autónoma de México, Ciudad de México, México
289 Programa Institucional de Cáncer de Mama, Departamento de Toxicología Ambiental y Medicina Genómica, IIB, Universidad Nacional Autónoma de México, Departamento de Bioquímica INCMNSZ; Centro de Cáncer, CM AB, Ciudad de México, Mexico
290 Programa de Doctorado en Ciencias Biomédicas, Universidad Nacional Autónoma de México, Ciudad de México, México
291 Red de Apoyo a la Investigación (RAI), CIC-Universidad Nacional Autónoma de México, Ciudad de México, Mexico
292 rdf:type schema:Organization
 




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