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Mechanisms of T-Cell Exhaustion in Pancreatic Cancer

T-cell exhaustion is a phenomenon that represents the dysfunctional state of T cells in chronic infections and cancer and is closely associated with poor prognosis in many cancers. The endogenous T-cell immunity and genetically edited cell therapies (CAR-T) failed to prevent tumor immune evasion. Th...

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Autores principales: Saka, Didem, Gökalp, Muazzez, Piyade, Betül, Cevik, Nedim Can, Arik Sever, Elif, Unutmaz, Derya, Ceyhan, Güralp O., Demir, Ihsan Ekin, Asimgil, Hande
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464444/
https://www.ncbi.nlm.nih.gov/pubmed/32823814
http://dx.doi.org/10.3390/cancers12082274
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author Saka, Didem
Gökalp, Muazzez
Piyade, Betül
Cevik, Nedim Can
Arik Sever, Elif
Unutmaz, Derya
Ceyhan, Güralp O.
Demir, Ihsan Ekin
Asimgil, Hande
author_facet Saka, Didem
Gökalp, Muazzez
Piyade, Betül
Cevik, Nedim Can
Arik Sever, Elif
Unutmaz, Derya
Ceyhan, Güralp O.
Demir, Ihsan Ekin
Asimgil, Hande
author_sort Saka, Didem
collection PubMed
description T-cell exhaustion is a phenomenon that represents the dysfunctional state of T cells in chronic infections and cancer and is closely associated with poor prognosis in many cancers. The endogenous T-cell immunity and genetically edited cell therapies (CAR-T) failed to prevent tumor immune evasion. The effector T-cell activity is perturbed by an imbalance between inhibitory and stimulatory signals causing a reprogramming in metabolism and the high levels of multiple inhibitory receptors like programmed cell death protein-1 (PD-1), cytotoxic T-lymphocyte-associated protein 4 (CTLA-4), T cell immunoglobulin and mucin domain-containing protein 3 (TIM-3), and Lymphocyte-activation gene 3 (Lag-3). Despite the efforts to neutralize inhibitory receptors by a single agent or combinatorial immune checkpoint inhibitors to boost effector function, PDAC remains unresponsive to these therapies, suggesting that multiple molecular mechanisms play a role in stimulating the exhaustion state of tumor-infiltrating T cells. Recent studies utilizing transcriptomics, mass cytometry, and epigenomics revealed a critical role of Thymocyte selection-associated high mobility group box protein (TOX) genes and TOX-associated pathways, driving T-cell exhaustion in chronic infection and cancer. Here, we will review recently defined molecular, genetic, and cellular factors that drive T-cell exhaustion in PDAC. We will also discuss the effects of available immune checkpoint inhibitors and the latest clinical trials targeting various molecular factors mediating T-cell exhaustion in PDAC.
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spelling pubmed-74644442020-09-04 Mechanisms of T-Cell Exhaustion in Pancreatic Cancer Saka, Didem Gökalp, Muazzez Piyade, Betül Cevik, Nedim Can Arik Sever, Elif Unutmaz, Derya Ceyhan, Güralp O. Demir, Ihsan Ekin Asimgil, Hande Cancers (Basel) Review T-cell exhaustion is a phenomenon that represents the dysfunctional state of T cells in chronic infections and cancer and is closely associated with poor prognosis in many cancers. The endogenous T-cell immunity and genetically edited cell therapies (CAR-T) failed to prevent tumor immune evasion. The effector T-cell activity is perturbed by an imbalance between inhibitory and stimulatory signals causing a reprogramming in metabolism and the high levels of multiple inhibitory receptors like programmed cell death protein-1 (PD-1), cytotoxic T-lymphocyte-associated protein 4 (CTLA-4), T cell immunoglobulin and mucin domain-containing protein 3 (TIM-3), and Lymphocyte-activation gene 3 (Lag-3). Despite the efforts to neutralize inhibitory receptors by a single agent or combinatorial immune checkpoint inhibitors to boost effector function, PDAC remains unresponsive to these therapies, suggesting that multiple molecular mechanisms play a role in stimulating the exhaustion state of tumor-infiltrating T cells. Recent studies utilizing transcriptomics, mass cytometry, and epigenomics revealed a critical role of Thymocyte selection-associated high mobility group box protein (TOX) genes and TOX-associated pathways, driving T-cell exhaustion in chronic infection and cancer. Here, we will review recently defined molecular, genetic, and cellular factors that drive T-cell exhaustion in PDAC. We will also discuss the effects of available immune checkpoint inhibitors and the latest clinical trials targeting various molecular factors mediating T-cell exhaustion in PDAC. MDPI 2020-08-14 /pmc/articles/PMC7464444/ /pubmed/32823814 http://dx.doi.org/10.3390/cancers12082274 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Saka, Didem
Gökalp, Muazzez
Piyade, Betül
Cevik, Nedim Can
Arik Sever, Elif
Unutmaz, Derya
Ceyhan, Güralp O.
Demir, Ihsan Ekin
Asimgil, Hande
Mechanisms of T-Cell Exhaustion in Pancreatic Cancer
title Mechanisms of T-Cell Exhaustion in Pancreatic Cancer
title_full Mechanisms of T-Cell Exhaustion in Pancreatic Cancer
title_fullStr Mechanisms of T-Cell Exhaustion in Pancreatic Cancer
title_full_unstemmed Mechanisms of T-Cell Exhaustion in Pancreatic Cancer
title_short Mechanisms of T-Cell Exhaustion in Pancreatic Cancer
title_sort mechanisms of t-cell exhaustion in pancreatic cancer
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464444/
https://www.ncbi.nlm.nih.gov/pubmed/32823814
http://dx.doi.org/10.3390/cancers12082274
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