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Aryl hydrocarbon receptor knockout accelerates PanIN formation and fibro-inflammation in a mutant Kras-driven pancreatic cancer model

OBJECTIVES: The pathogenesis of pancreas cancer (PDAC) remains poorly understood, hindering efforts to develop a more effective therapy for PDAC. Recent discoveries show the aryl hydrocarbon receptor (AHR) plays a crucial role in the pathogenesis of several cancers, and can be targeted for therapeut...

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Autores principales: Walcheck, Morgan T., Schwartz, Patrick B., Carrillo, Noah D., Matkowsky, Kristina A., Nukaya, Manabu, Bradfield, Christopher A., Ronnekleiv-Kelly, Sean M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9915668/
https://www.ncbi.nlm.nih.gov/pubmed/36778364
http://dx.doi.org/10.1101/2023.02.01.526625
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author Walcheck, Morgan T.
Schwartz, Patrick B.
Carrillo, Noah D.
Matkowsky, Kristina A.
Nukaya, Manabu
Bradfield, Christopher A.
Ronnekleiv-Kelly, Sean M.
author_facet Walcheck, Morgan T.
Schwartz, Patrick B.
Carrillo, Noah D.
Matkowsky, Kristina A.
Nukaya, Manabu
Bradfield, Christopher A.
Ronnekleiv-Kelly, Sean M.
author_sort Walcheck, Morgan T.
collection PubMed
description OBJECTIVES: The pathogenesis of pancreas cancer (PDAC) remains poorly understood, hindering efforts to develop a more effective therapy for PDAC. Recent discoveries show the aryl hydrocarbon receptor (AHR) plays a crucial role in the pathogenesis of several cancers, and can be targeted for therapeutic effect. However, its involvement in PDAC remains unclear. Therefore, we evaluated the role of AHR in the development of PDAC in vivo. METHODS: We created a global AHR-null, mutant Kras-driven PDAC mouse model (A(−/−)KC) and evaluated the changes in PDAC precursor lesion formation (Pan-IN 1, 2, and 3) and associated fibro-inflammation between KC and A(−/−)KC at 5 months of age. We then examined the changes in the immune microenvironment followed by single-cell RNA-sequencing analysis to evaluate concomitant transcriptomic changes. RESULTS: We found a significant increase in PanIN-1 lesion formation and PanIN-1 associated fibro-inflammatory infiltrate in A(−/−)KC vs KC mice. This was associated with significant changes in the adaptive immune system, particularly a decrease in the CD4+/CD8+ T-cell ratio, as well as a decrease in the T-regulatory/Th17 T-cell ratio suggesting unregulated inflammation. CONCLUSION: These findings show the loss of AHR results in heightened Kras-induced PanIN formation, through modulation of immune cells within the pancreatic tumor microenvironment.
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spelling pubmed-99156682023-02-11 Aryl hydrocarbon receptor knockout accelerates PanIN formation and fibro-inflammation in a mutant Kras-driven pancreatic cancer model Walcheck, Morgan T. Schwartz, Patrick B. Carrillo, Noah D. Matkowsky, Kristina A. Nukaya, Manabu Bradfield, Christopher A. Ronnekleiv-Kelly, Sean M. bioRxiv Article OBJECTIVES: The pathogenesis of pancreas cancer (PDAC) remains poorly understood, hindering efforts to develop a more effective therapy for PDAC. Recent discoveries show the aryl hydrocarbon receptor (AHR) plays a crucial role in the pathogenesis of several cancers, and can be targeted for therapeutic effect. However, its involvement in PDAC remains unclear. Therefore, we evaluated the role of AHR in the development of PDAC in vivo. METHODS: We created a global AHR-null, mutant Kras-driven PDAC mouse model (A(−/−)KC) and evaluated the changes in PDAC precursor lesion formation (Pan-IN 1, 2, and 3) and associated fibro-inflammation between KC and A(−/−)KC at 5 months of age. We then examined the changes in the immune microenvironment followed by single-cell RNA-sequencing analysis to evaluate concomitant transcriptomic changes. RESULTS: We found a significant increase in PanIN-1 lesion formation and PanIN-1 associated fibro-inflammatory infiltrate in A(−/−)KC vs KC mice. This was associated with significant changes in the adaptive immune system, particularly a decrease in the CD4+/CD8+ T-cell ratio, as well as a decrease in the T-regulatory/Th17 T-cell ratio suggesting unregulated inflammation. CONCLUSION: These findings show the loss of AHR results in heightened Kras-induced PanIN formation, through modulation of immune cells within the pancreatic tumor microenvironment. Cold Spring Harbor Laboratory 2023-02-03 /pmc/articles/PMC9915668/ /pubmed/36778364 http://dx.doi.org/10.1101/2023.02.01.526625 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Walcheck, Morgan T.
Schwartz, Patrick B.
Carrillo, Noah D.
Matkowsky, Kristina A.
Nukaya, Manabu
Bradfield, Christopher A.
Ronnekleiv-Kelly, Sean M.
Aryl hydrocarbon receptor knockout accelerates PanIN formation and fibro-inflammation in a mutant Kras-driven pancreatic cancer model
title Aryl hydrocarbon receptor knockout accelerates PanIN formation and fibro-inflammation in a mutant Kras-driven pancreatic cancer model
title_full Aryl hydrocarbon receptor knockout accelerates PanIN formation and fibro-inflammation in a mutant Kras-driven pancreatic cancer model
title_fullStr Aryl hydrocarbon receptor knockout accelerates PanIN formation and fibro-inflammation in a mutant Kras-driven pancreatic cancer model
title_full_unstemmed Aryl hydrocarbon receptor knockout accelerates PanIN formation and fibro-inflammation in a mutant Kras-driven pancreatic cancer model
title_short Aryl hydrocarbon receptor knockout accelerates PanIN formation and fibro-inflammation in a mutant Kras-driven pancreatic cancer model
title_sort aryl hydrocarbon receptor knockout accelerates panin formation and fibro-inflammation in a mutant kras-driven pancreatic cancer model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9915668/
https://www.ncbi.nlm.nih.gov/pubmed/36778364
http://dx.doi.org/10.1101/2023.02.01.526625
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