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T-Cell-Specific CerS4 Depletion Prolonged Inflammation and Enhanced Tumor Burden in the AOM/DSS-Induced CAC Model

To better understand the role of sphingolipids in the multifactorial process of inflammatory bowel disease (IBD), we elucidated the role of CerS4 in colitis and colitis-associated cancer (CAC). For this, we utilized the azoxymethane/dextran sodium sulphate (AOM/DSS)-induced colitis model in global C...

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Autores principales: El-Hindi, Khadija, Brachtendorf, Sebastian, Hartel, Jennifer Christina, Oertel, Stephanie, Birod, Kerstin, Merz, Nadine, Trautmann, Sandra, Thomas, Dominique, Weigert, Andreas, Schäufele, Tim J., Scholich, Klaus, Schiffmann, Susanne, Ulshöfer, Thomas, Utermöhlen, Olaf, Grösch, Sabine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8837088/
https://www.ncbi.nlm.nih.gov/pubmed/35163788
http://dx.doi.org/10.3390/ijms23031866
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author El-Hindi, Khadija
Brachtendorf, Sebastian
Hartel, Jennifer Christina
Oertel, Stephanie
Birod, Kerstin
Merz, Nadine
Trautmann, Sandra
Thomas, Dominique
Weigert, Andreas
Schäufele, Tim J.
Scholich, Klaus
Schiffmann, Susanne
Ulshöfer, Thomas
Utermöhlen, Olaf
Grösch, Sabine
author_facet El-Hindi, Khadija
Brachtendorf, Sebastian
Hartel, Jennifer Christina
Oertel, Stephanie
Birod, Kerstin
Merz, Nadine
Trautmann, Sandra
Thomas, Dominique
Weigert, Andreas
Schäufele, Tim J.
Scholich, Klaus
Schiffmann, Susanne
Ulshöfer, Thomas
Utermöhlen, Olaf
Grösch, Sabine
author_sort El-Hindi, Khadija
collection PubMed
description To better understand the role of sphingolipids in the multifactorial process of inflammatory bowel disease (IBD), we elucidated the role of CerS4 in colitis and colitis-associated cancer (CAC). For this, we utilized the azoxymethane/dextran sodium sulphate (AOM/DSS)-induced colitis model in global CerS4 knockout (CerS4 KO), intestinal epithelial (CerS4 Vil/Cre), or T-cell restricted knockout (CerS4 LCK/Cre) mice. CerS4 KO mice were highly sensitive to the toxic effect of AOM/DSS, leading to a high mortality rate. CerS4 Vil/Cre mice had smaller tumors than WT mice. In contrast, CerS4 LCK/Cre mice frequently suffered from pancolitis and developed more colon tumors. In vitro, CerS4-depleted CD8+ T-cells isolated from the thymi of CerS4 LCK/Cre mice showed impaired proliferation and prolonged cytokine production after stimulation in comparison with T-cells from WT mice. Depletion of CerS4 in human Jurkat T-cells led to a constitutively activated T-cell receptor and NF-κB signaling pathway. In conclusion, the deficiency of CerS4 in T-cells led to an enduring active status of these cells and prevents the resolution of inflammation, leading to a higher tumor burden in the CAC mouse model. In contrast, CerS4 deficiency in epithelial cells resulted in smaller colon tumors and seemed to be beneficial. The higher tumor incidence in CerS4 LCK/Cre mice and the toxic effect of AOM/DSS in CerS4 KO mice exhibited the importance of CerS4 in other tissues and revealed the complexity of general targeting CerS4.
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spelling pubmed-88370882022-02-12 T-Cell-Specific CerS4 Depletion Prolonged Inflammation and Enhanced Tumor Burden in the AOM/DSS-Induced CAC Model El-Hindi, Khadija Brachtendorf, Sebastian Hartel, Jennifer Christina Oertel, Stephanie Birod, Kerstin Merz, Nadine Trautmann, Sandra Thomas, Dominique Weigert, Andreas Schäufele, Tim J. Scholich, Klaus Schiffmann, Susanne Ulshöfer, Thomas Utermöhlen, Olaf Grösch, Sabine Int J Mol Sci Article To better understand the role of sphingolipids in the multifactorial process of inflammatory bowel disease (IBD), we elucidated the role of CerS4 in colitis and colitis-associated cancer (CAC). For this, we utilized the azoxymethane/dextran sodium sulphate (AOM/DSS)-induced colitis model in global CerS4 knockout (CerS4 KO), intestinal epithelial (CerS4 Vil/Cre), or T-cell restricted knockout (CerS4 LCK/Cre) mice. CerS4 KO mice were highly sensitive to the toxic effect of AOM/DSS, leading to a high mortality rate. CerS4 Vil/Cre mice had smaller tumors than WT mice. In contrast, CerS4 LCK/Cre mice frequently suffered from pancolitis and developed more colon tumors. In vitro, CerS4-depleted CD8+ T-cells isolated from the thymi of CerS4 LCK/Cre mice showed impaired proliferation and prolonged cytokine production after stimulation in comparison with T-cells from WT mice. Depletion of CerS4 in human Jurkat T-cells led to a constitutively activated T-cell receptor and NF-κB signaling pathway. In conclusion, the deficiency of CerS4 in T-cells led to an enduring active status of these cells and prevents the resolution of inflammation, leading to a higher tumor burden in the CAC mouse model. In contrast, CerS4 deficiency in epithelial cells resulted in smaller colon tumors and seemed to be beneficial. The higher tumor incidence in CerS4 LCK/Cre mice and the toxic effect of AOM/DSS in CerS4 KO mice exhibited the importance of CerS4 in other tissues and revealed the complexity of general targeting CerS4. MDPI 2022-02-07 /pmc/articles/PMC8837088/ /pubmed/35163788 http://dx.doi.org/10.3390/ijms23031866 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
El-Hindi, Khadija
Brachtendorf, Sebastian
Hartel, Jennifer Christina
Oertel, Stephanie
Birod, Kerstin
Merz, Nadine
Trautmann, Sandra
Thomas, Dominique
Weigert, Andreas
Schäufele, Tim J.
Scholich, Klaus
Schiffmann, Susanne
Ulshöfer, Thomas
Utermöhlen, Olaf
Grösch, Sabine
T-Cell-Specific CerS4 Depletion Prolonged Inflammation and Enhanced Tumor Burden in the AOM/DSS-Induced CAC Model
title T-Cell-Specific CerS4 Depletion Prolonged Inflammation and Enhanced Tumor Burden in the AOM/DSS-Induced CAC Model
title_full T-Cell-Specific CerS4 Depletion Prolonged Inflammation and Enhanced Tumor Burden in the AOM/DSS-Induced CAC Model
title_fullStr T-Cell-Specific CerS4 Depletion Prolonged Inflammation and Enhanced Tumor Burden in the AOM/DSS-Induced CAC Model
title_full_unstemmed T-Cell-Specific CerS4 Depletion Prolonged Inflammation and Enhanced Tumor Burden in the AOM/DSS-Induced CAC Model
title_short T-Cell-Specific CerS4 Depletion Prolonged Inflammation and Enhanced Tumor Burden in the AOM/DSS-Induced CAC Model
title_sort t-cell-specific cers4 depletion prolonged inflammation and enhanced tumor burden in the aom/dss-induced cac model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8837088/
https://www.ncbi.nlm.nih.gov/pubmed/35163788
http://dx.doi.org/10.3390/ijms23031866
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