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T Cell–Mediated Antitumor Immunity Cooperatively Induced By TGFβR1 Antagonism and Gemcitabine Counteracts Reformation of the Stromal Barrier in Pancreatic Cancer

The desmoplastic stroma of pancreatic cancers forms a physical barrier that impedes intratumoral drug delivery. Attempts to modulate the desmoplastic stroma to increase delivery of administered chemotherapy have not shown positive clinical results thus far, and preclinical reports in which chemother...

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Autores principales: Li, Dandan, Schaub, Nicholas, Guerin, Theresa M., Bapiro, Tashinga E., Richards, Frances M., Chen, Vicky, Talsania, Keyur, Kumar, Parimal, Gilbert, Debra J., Schlomer, Jerome J., Kim, Seong-Jin, Sorber, Rebecca, Teper, Yaroslav, Bautista, Wendy, Palena, Claudia, Ock, Chan-Young, Jodrell, Duncan I., Pate, Nathan, Mehta, Monika, Zhao, Yongmei, Kozlov, Serguei, Rudloff, Udo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8492543/
https://www.ncbi.nlm.nih.gov/pubmed/34376576
http://dx.doi.org/10.1158/1535-7163.MCT-20-0620
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author Li, Dandan
Schaub, Nicholas
Guerin, Theresa M.
Bapiro, Tashinga E.
Richards, Frances M.
Chen, Vicky
Talsania, Keyur
Kumar, Parimal
Gilbert, Debra J.
Schlomer, Jerome J.
Kim, Seong-Jin
Sorber, Rebecca
Teper, Yaroslav
Bautista, Wendy
Palena, Claudia
Ock, Chan-Young
Jodrell, Duncan I.
Pate, Nathan
Mehta, Monika
Zhao, Yongmei
Kozlov, Serguei
Rudloff, Udo
author_facet Li, Dandan
Schaub, Nicholas
Guerin, Theresa M.
Bapiro, Tashinga E.
Richards, Frances M.
Chen, Vicky
Talsania, Keyur
Kumar, Parimal
Gilbert, Debra J.
Schlomer, Jerome J.
Kim, Seong-Jin
Sorber, Rebecca
Teper, Yaroslav
Bautista, Wendy
Palena, Claudia
Ock, Chan-Young
Jodrell, Duncan I.
Pate, Nathan
Mehta, Monika
Zhao, Yongmei
Kozlov, Serguei
Rudloff, Udo
author_sort Li, Dandan
collection PubMed
description The desmoplastic stroma of pancreatic cancers forms a physical barrier that impedes intratumoral drug delivery. Attempts to modulate the desmoplastic stroma to increase delivery of administered chemotherapy have not shown positive clinical results thus far, and preclinical reports in which chemotherapeutic drugs were coadministered with antistromal therapies did not universally demonstrate increased genotoxicity despite increased intratumoral drug levels. In this study, we tested whether TGFβ antagonism can break the stromal barrier, enhance perfusion and tumoral drug delivery, and interrogated cellular and molecular mechanisms by which the tumor prevents synergism with coadministered gemcitabine. TGFβ inhibition in genetically engineered murine models (GEMM) of pancreas cancer enhanced tumoral perfusion and increased intratumoral gemcitabine levels. However, tumors rapidly adapted to TGFβ-dependent stromal modulation, and intratumoral perfusion returned to pre-treatment levels upon extended TGFβ inhibition. Perfusion was governed by the phenotypic identity and distribution of cancer-associated fibroblasts (CAF) with the myelofibroblastic phenotype (myCAFs), and myCAFs which harbored unique genomic signatures rapidly escaped the restricting effects of TGFβ inhibition. Despite the reformation of the stromal barrier and reversal of initially increased intratumoral exposure levels, TGFβ inhibition in cooperation with gemcitabine effectively suppressed tumor growth via cooperative reprogramming of T regulatory cells and stimulation of CD8 T cell–mediated antitumor activity. The antitumor activity was further improved by the addition of anti–PD-L1 immune checkpoint blockade to offset adaptive PD-L1 upregulation induced by TGFβ inhibition. These findings support the development of combined antistroma anticancer therapies capable of impacting the tumor beyond the disruption of the desmoplastic stroma as a physical barrier to improve drug delivery.
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spelling pubmed-84925432021-10-06 T Cell–Mediated Antitumor Immunity Cooperatively Induced By TGFβR1 Antagonism and Gemcitabine Counteracts Reformation of the Stromal Barrier in Pancreatic Cancer Li, Dandan Schaub, Nicholas Guerin, Theresa M. Bapiro, Tashinga E. Richards, Frances M. Chen, Vicky Talsania, Keyur Kumar, Parimal Gilbert, Debra J. Schlomer, Jerome J. Kim, Seong-Jin Sorber, Rebecca Teper, Yaroslav Bautista, Wendy Palena, Claudia Ock, Chan-Young Jodrell, Duncan I. Pate, Nathan Mehta, Monika Zhao, Yongmei Kozlov, Serguei Rudloff, Udo Mol Cancer Ther Small Molecule Therapeutics The desmoplastic stroma of pancreatic cancers forms a physical barrier that impedes intratumoral drug delivery. Attempts to modulate the desmoplastic stroma to increase delivery of administered chemotherapy have not shown positive clinical results thus far, and preclinical reports in which chemotherapeutic drugs were coadministered with antistromal therapies did not universally demonstrate increased genotoxicity despite increased intratumoral drug levels. In this study, we tested whether TGFβ antagonism can break the stromal barrier, enhance perfusion and tumoral drug delivery, and interrogated cellular and molecular mechanisms by which the tumor prevents synergism with coadministered gemcitabine. TGFβ inhibition in genetically engineered murine models (GEMM) of pancreas cancer enhanced tumoral perfusion and increased intratumoral gemcitabine levels. However, tumors rapidly adapted to TGFβ-dependent stromal modulation, and intratumoral perfusion returned to pre-treatment levels upon extended TGFβ inhibition. Perfusion was governed by the phenotypic identity and distribution of cancer-associated fibroblasts (CAF) with the myelofibroblastic phenotype (myCAFs), and myCAFs which harbored unique genomic signatures rapidly escaped the restricting effects of TGFβ inhibition. Despite the reformation of the stromal barrier and reversal of initially increased intratumoral exposure levels, TGFβ inhibition in cooperation with gemcitabine effectively suppressed tumor growth via cooperative reprogramming of T regulatory cells and stimulation of CD8 T cell–mediated antitumor activity. The antitumor activity was further improved by the addition of anti–PD-L1 immune checkpoint blockade to offset adaptive PD-L1 upregulation induced by TGFβ inhibition. These findings support the development of combined antistroma anticancer therapies capable of impacting the tumor beyond the disruption of the desmoplastic stroma as a physical barrier to improve drug delivery. American Association for Cancer Research 2021-10-01 2021-08-10 /pmc/articles/PMC8492543/ /pubmed/34376576 http://dx.doi.org/10.1158/1535-7163.MCT-20-0620 Text en ©2021 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Small Molecule Therapeutics
Li, Dandan
Schaub, Nicholas
Guerin, Theresa M.
Bapiro, Tashinga E.
Richards, Frances M.
Chen, Vicky
Talsania, Keyur
Kumar, Parimal
Gilbert, Debra J.
Schlomer, Jerome J.
Kim, Seong-Jin
Sorber, Rebecca
Teper, Yaroslav
Bautista, Wendy
Palena, Claudia
Ock, Chan-Young
Jodrell, Duncan I.
Pate, Nathan
Mehta, Monika
Zhao, Yongmei
Kozlov, Serguei
Rudloff, Udo
T Cell–Mediated Antitumor Immunity Cooperatively Induced By TGFβR1 Antagonism and Gemcitabine Counteracts Reformation of the Stromal Barrier in Pancreatic Cancer
title T Cell–Mediated Antitumor Immunity Cooperatively Induced By TGFβR1 Antagonism and Gemcitabine Counteracts Reformation of the Stromal Barrier in Pancreatic Cancer
title_full T Cell–Mediated Antitumor Immunity Cooperatively Induced By TGFβR1 Antagonism and Gemcitabine Counteracts Reformation of the Stromal Barrier in Pancreatic Cancer
title_fullStr T Cell–Mediated Antitumor Immunity Cooperatively Induced By TGFβR1 Antagonism and Gemcitabine Counteracts Reformation of the Stromal Barrier in Pancreatic Cancer
title_full_unstemmed T Cell–Mediated Antitumor Immunity Cooperatively Induced By TGFβR1 Antagonism and Gemcitabine Counteracts Reformation of the Stromal Barrier in Pancreatic Cancer
title_short T Cell–Mediated Antitumor Immunity Cooperatively Induced By TGFβR1 Antagonism and Gemcitabine Counteracts Reformation of the Stromal Barrier in Pancreatic Cancer
title_sort t cell–mediated antitumor immunity cooperatively induced by tgfβr1 antagonism and gemcitabine counteracts reformation of the stromal barrier in pancreatic cancer
topic Small Molecule Therapeutics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8492543/
https://www.ncbi.nlm.nih.gov/pubmed/34376576
http://dx.doi.org/10.1158/1535-7163.MCT-20-0620
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