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Therapy-Induced Stromal Senescence Promoting Aggressiveness of Prostate and Ovarian Cancer

Cancer progression is supported by the cross-talk between tumor cells and the surrounding stroma. In this context, senescent cells in the tumor microenvironment contribute to the development of a pro-inflammatory milieu and the acquisition of aggressive traits by cancer cells. Anticancer treatments...

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Autores principales: Pardella, Elisa, Pranzini, Erica, Nesi, Ilaria, Parri, Matteo, Spatafora, Pietro, Torre, Eugenio, Muccilli, Angela, Castiglione, Francesca, Fambrini, Massimiliano, Sorbi, Flavia, Cirri, Paolo, Caselli, Anna, Puhr, Martin, Klocker, Helmut, Serni, Sergio, Raugei, Giovanni, Magherini, Francesca, Taddei, Maria Letizia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9776582/
https://www.ncbi.nlm.nih.gov/pubmed/36552790
http://dx.doi.org/10.3390/cells11244026
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author Pardella, Elisa
Pranzini, Erica
Nesi, Ilaria
Parri, Matteo
Spatafora, Pietro
Torre, Eugenio
Muccilli, Angela
Castiglione, Francesca
Fambrini, Massimiliano
Sorbi, Flavia
Cirri, Paolo
Caselli, Anna
Puhr, Martin
Klocker, Helmut
Serni, Sergio
Raugei, Giovanni
Magherini, Francesca
Taddei, Maria Letizia
author_facet Pardella, Elisa
Pranzini, Erica
Nesi, Ilaria
Parri, Matteo
Spatafora, Pietro
Torre, Eugenio
Muccilli, Angela
Castiglione, Francesca
Fambrini, Massimiliano
Sorbi, Flavia
Cirri, Paolo
Caselli, Anna
Puhr, Martin
Klocker, Helmut
Serni, Sergio
Raugei, Giovanni
Magherini, Francesca
Taddei, Maria Letizia
author_sort Pardella, Elisa
collection PubMed
description Cancer progression is supported by the cross-talk between tumor cells and the surrounding stroma. In this context, senescent cells in the tumor microenvironment contribute to the development of a pro-inflammatory milieu and the acquisition of aggressive traits by cancer cells. Anticancer treatments induce cellular senescence (therapy-induced senescence, TIS) in both tumor and non-cancerous cells, contributing to many detrimental side effects of therapies. Thus, we focused on the effects of chemotherapy on the stromal compartment of prostate and ovarian cancer. We demonstrated that anticancer chemotherapeutics, regardless of their specific mechanism of action, promote a senescent phenotype in stromal fibroblasts, resulting in metabolic alterations and secretion of paracrine factors, sustaining the invasive and clonogenic potential of both prostate and ovarian cancer cells. The clearance of senescent stromal cells, through senolytic drug treatment, reverts the malignant phenotype of tumor cells. The clinical relevance of TIS was validated in ovarian and prostate cancer patients, highlighting increased accumulation of lipofuscin aggregates, a marker of the senescent phenotype, in the stromal compartment of tissues from chemotherapy-treated patients. These data provide new insights into the potential efficacy of combining traditional anticancer strategies with innovative senotherapy to potentiate anticancer treatments and overcome the adverse effects of chemotherapy.
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spelling pubmed-97765822022-12-23 Therapy-Induced Stromal Senescence Promoting Aggressiveness of Prostate and Ovarian Cancer Pardella, Elisa Pranzini, Erica Nesi, Ilaria Parri, Matteo Spatafora, Pietro Torre, Eugenio Muccilli, Angela Castiglione, Francesca Fambrini, Massimiliano Sorbi, Flavia Cirri, Paolo Caselli, Anna Puhr, Martin Klocker, Helmut Serni, Sergio Raugei, Giovanni Magherini, Francesca Taddei, Maria Letizia Cells Article Cancer progression is supported by the cross-talk between tumor cells and the surrounding stroma. In this context, senescent cells in the tumor microenvironment contribute to the development of a pro-inflammatory milieu and the acquisition of aggressive traits by cancer cells. Anticancer treatments induce cellular senescence (therapy-induced senescence, TIS) in both tumor and non-cancerous cells, contributing to many detrimental side effects of therapies. Thus, we focused on the effects of chemotherapy on the stromal compartment of prostate and ovarian cancer. We demonstrated that anticancer chemotherapeutics, regardless of their specific mechanism of action, promote a senescent phenotype in stromal fibroblasts, resulting in metabolic alterations and secretion of paracrine factors, sustaining the invasive and clonogenic potential of both prostate and ovarian cancer cells. The clearance of senescent stromal cells, through senolytic drug treatment, reverts the malignant phenotype of tumor cells. The clinical relevance of TIS was validated in ovarian and prostate cancer patients, highlighting increased accumulation of lipofuscin aggregates, a marker of the senescent phenotype, in the stromal compartment of tissues from chemotherapy-treated patients. These data provide new insights into the potential efficacy of combining traditional anticancer strategies with innovative senotherapy to potentiate anticancer treatments and overcome the adverse effects of chemotherapy. MDPI 2022-12-13 /pmc/articles/PMC9776582/ /pubmed/36552790 http://dx.doi.org/10.3390/cells11244026 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
Pardella, Elisa
Pranzini, Erica
Nesi, Ilaria
Parri, Matteo
Spatafora, Pietro
Torre, Eugenio
Muccilli, Angela
Castiglione, Francesca
Fambrini, Massimiliano
Sorbi, Flavia
Cirri, Paolo
Caselli, Anna
Puhr, Martin
Klocker, Helmut
Serni, Sergio
Raugei, Giovanni
Magherini, Francesca
Taddei, Maria Letizia
Therapy-Induced Stromal Senescence Promoting Aggressiveness of Prostate and Ovarian Cancer
title Therapy-Induced Stromal Senescence Promoting Aggressiveness of Prostate and Ovarian Cancer
title_full Therapy-Induced Stromal Senescence Promoting Aggressiveness of Prostate and Ovarian Cancer
title_fullStr Therapy-Induced Stromal Senescence Promoting Aggressiveness of Prostate and Ovarian Cancer
title_full_unstemmed Therapy-Induced Stromal Senescence Promoting Aggressiveness of Prostate and Ovarian Cancer
title_short Therapy-Induced Stromal Senescence Promoting Aggressiveness of Prostate and Ovarian Cancer
title_sort therapy-induced stromal senescence promoting aggressiveness of prostate and ovarian cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9776582/
https://www.ncbi.nlm.nih.gov/pubmed/36552790
http://dx.doi.org/10.3390/cells11244026
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