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Patient Derived Organoids Confirm That PI3K/AKT Signalling Is an Escape Pathway for Radioresistance and a Target for Therapy in Rectal Cancer

OBJECTIVES: Partial or total resistance to preoperative chemoradiotherapy occurs in more than half of locally advanced rectal cancer patients. Several novel or repurposed drugs have been trialled to improve cancer cell sensitivity to radiotherapy, with limited success. We aimed to understand the mec...

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Autores principales: Wanigasooriya, Kasun, Barros-Silva, Joao D., Tee, Louise, El-asrag, Mohammed E., Stodolna, Agata, Pickles, Oliver J., Stockton, Joanne, Bryer, Claire, Hoare, Rachel, Whalley, Celina M., Tyler, Robert, Sillo, Toritseju, Yau, Christopher, Ismail, Tariq, Beggs, Andrew D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9289101/
https://www.ncbi.nlm.nih.gov/pubmed/35860583
http://dx.doi.org/10.3389/fonc.2022.920444
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author Wanigasooriya, Kasun
Barros-Silva, Joao D.
Tee, Louise
El-asrag, Mohammed E.
Stodolna, Agata
Pickles, Oliver J.
Stockton, Joanne
Bryer, Claire
Hoare, Rachel
Whalley, Celina M.
Tyler, Robert
Sillo, Toritseju
Yau, Christopher
Ismail, Tariq
Beggs, Andrew D.
author_facet Wanigasooriya, Kasun
Barros-Silva, Joao D.
Tee, Louise
El-asrag, Mohammed E.
Stodolna, Agata
Pickles, Oliver J.
Stockton, Joanne
Bryer, Claire
Hoare, Rachel
Whalley, Celina M.
Tyler, Robert
Sillo, Toritseju
Yau, Christopher
Ismail, Tariq
Beggs, Andrew D.
author_sort Wanigasooriya, Kasun
collection PubMed
description OBJECTIVES: Partial or total resistance to preoperative chemoradiotherapy occurs in more than half of locally advanced rectal cancer patients. Several novel or repurposed drugs have been trialled to improve cancer cell sensitivity to radiotherapy, with limited success. We aimed to understand the mechanisms of resistance to chemoradiotherapy in rectal cancer using patient derived organoid models. DESIGN: To understand the mechanisms underlying this resistance, we compared the pre-treatment transcriptomes of patient-derived organoids (PDO) with measured radiotherapy sensitivity to identify biological pathways involved in radiation resistance coupled with single cell sequencing, genome wide CRISPR-Cas9 and targeted drug screens. RESULTS: RNA sequencing enrichment analysis revealed upregulation of PI3K/AKT/mTOR and epithelial mesenchymal transition pathway genes in radioresistant PDOs. Single-cell sequencing of pre & post-irradiation PDOs showed mTORC1 and PI3K/AKT upregulation, which was confirmed by a genome-wide CRSIPR-Cas9 knockout screen using irradiated colorectal cancer (CRC) cell lines. We then tested the efficiency of dual PI3K/mTOR inhibitors in improving cancer cell sensitivity to radiotherapy. After irradiation, significant AKT phosphorylation was detected (p=0.027) which was abrogated with dual PI3K/mTOR inhibitors and lead to significant radiosensitisation of the HCT116 cell line and radiation resistant PDO lines. CONCLUSIONS: The PI3K/AKT/mTOR pathway upregulation contributes to radioresistance and its targeted pharmacological inhibition leads to significant radiosensitisation in CRC organoids, making it a potential target for clinical trials.
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spelling pubmed-92891012022-07-19 Patient Derived Organoids Confirm That PI3K/AKT Signalling Is an Escape Pathway for Radioresistance and a Target for Therapy in Rectal Cancer Wanigasooriya, Kasun Barros-Silva, Joao D. Tee, Louise El-asrag, Mohammed E. Stodolna, Agata Pickles, Oliver J. Stockton, Joanne Bryer, Claire Hoare, Rachel Whalley, Celina M. Tyler, Robert Sillo, Toritseju Yau, Christopher Ismail, Tariq Beggs, Andrew D. Front Oncol Oncology OBJECTIVES: Partial or total resistance to preoperative chemoradiotherapy occurs in more than half of locally advanced rectal cancer patients. Several novel or repurposed drugs have been trialled to improve cancer cell sensitivity to radiotherapy, with limited success. We aimed to understand the mechanisms of resistance to chemoradiotherapy in rectal cancer using patient derived organoid models. DESIGN: To understand the mechanisms underlying this resistance, we compared the pre-treatment transcriptomes of patient-derived organoids (PDO) with measured radiotherapy sensitivity to identify biological pathways involved in radiation resistance coupled with single cell sequencing, genome wide CRISPR-Cas9 and targeted drug screens. RESULTS: RNA sequencing enrichment analysis revealed upregulation of PI3K/AKT/mTOR and epithelial mesenchymal transition pathway genes in radioresistant PDOs. Single-cell sequencing of pre & post-irradiation PDOs showed mTORC1 and PI3K/AKT upregulation, which was confirmed by a genome-wide CRSIPR-Cas9 knockout screen using irradiated colorectal cancer (CRC) cell lines. We then tested the efficiency of dual PI3K/mTOR inhibitors in improving cancer cell sensitivity to radiotherapy. After irradiation, significant AKT phosphorylation was detected (p=0.027) which was abrogated with dual PI3K/mTOR inhibitors and lead to significant radiosensitisation of the HCT116 cell line and radiation resistant PDO lines. CONCLUSIONS: The PI3K/AKT/mTOR pathway upregulation contributes to radioresistance and its targeted pharmacological inhibition leads to significant radiosensitisation in CRC organoids, making it a potential target for clinical trials. Frontiers Media S.A. 2022-07-04 /pmc/articles/PMC9289101/ /pubmed/35860583 http://dx.doi.org/10.3389/fonc.2022.920444 Text en Copyright © 2022 Wanigasooriya, Barros-Silva, Tee, El-asrag, Stodolna, Pickles, Stockton, Bryer, Hoare, Whalley, Tyler, Sillo, Yau, Ismail and Beggs https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Wanigasooriya, Kasun
Barros-Silva, Joao D.
Tee, Louise
El-asrag, Mohammed E.
Stodolna, Agata
Pickles, Oliver J.
Stockton, Joanne
Bryer, Claire
Hoare, Rachel
Whalley, Celina M.
Tyler, Robert
Sillo, Toritseju
Yau, Christopher
Ismail, Tariq
Beggs, Andrew D.
Patient Derived Organoids Confirm That PI3K/AKT Signalling Is an Escape Pathway for Radioresistance and a Target for Therapy in Rectal Cancer
title Patient Derived Organoids Confirm That PI3K/AKT Signalling Is an Escape Pathway for Radioresistance and a Target for Therapy in Rectal Cancer
title_full Patient Derived Organoids Confirm That PI3K/AKT Signalling Is an Escape Pathway for Radioresistance and a Target for Therapy in Rectal Cancer
title_fullStr Patient Derived Organoids Confirm That PI3K/AKT Signalling Is an Escape Pathway for Radioresistance and a Target for Therapy in Rectal Cancer
title_full_unstemmed Patient Derived Organoids Confirm That PI3K/AKT Signalling Is an Escape Pathway for Radioresistance and a Target for Therapy in Rectal Cancer
title_short Patient Derived Organoids Confirm That PI3K/AKT Signalling Is an Escape Pathway for Radioresistance and a Target for Therapy in Rectal Cancer
title_sort patient derived organoids confirm that pi3k/akt signalling is an escape pathway for radioresistance and a target for therapy in rectal cancer
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9289101/
https://www.ncbi.nlm.nih.gov/pubmed/35860583
http://dx.doi.org/10.3389/fonc.2022.920444
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