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Starvation-induced activation of ATM/Chk2/p53 signaling sensitizes cancer cells to cisplatin

BACKGROUND: Optimizing the safety and efficacy of standard chemotherapeutic agents such as cisplatin (CDDP) is of clinical relevance. Serum starvation in vitro and short-term food starvation in vivo both stress cells by the sudden depletion of paracrine growth stimulation. METHODS: The effects of se...

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Autores principales: Shi, Yandong, Felley-Bosco, Emanuela, Marti, Thomas M, Orlowski, Katrin, Pruschy, Martin, Stahel, Rolf A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3527202/
https://www.ncbi.nlm.nih.gov/pubmed/23211021
http://dx.doi.org/10.1186/1471-2407-12-571
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author Shi, Yandong
Felley-Bosco, Emanuela
Marti, Thomas M
Orlowski, Katrin
Pruschy, Martin
Stahel, Rolf A
author_facet Shi, Yandong
Felley-Bosco, Emanuela
Marti, Thomas M
Orlowski, Katrin
Pruschy, Martin
Stahel, Rolf A
author_sort Shi, Yandong
collection PubMed
description BACKGROUND: Optimizing the safety and efficacy of standard chemotherapeutic agents such as cisplatin (CDDP) is of clinical relevance. Serum starvation in vitro and short-term food starvation in vivo both stress cells by the sudden depletion of paracrine growth stimulation. METHODS: The effects of serum starvation on CDDP toxicity were investigated in normal and cancer cells by assessing proliferation, cell cycle distribution and activation of DNA-damage response and of AMPK, and were compared to effects observed in cells grown in serum-containing medium. The effects of short-term food starvation on CDDP chemotherapy were assessed in xenografts-bearing mice and were compared to effects on tumor growth and/or regression determined in mice with no diet alteration. RESULTS: We observed that serum starvation in vitro sensitizes cancer cells to CDDP while protecting normal cells. In detail, in normal cells, serum starvation resulted in a complete arrest of cellular proliferation, i.e. depletion of BrdU-incorporation during S-phase and accumulation of the cells in the G0/G1-phase of the cell cycle. Further analysis revealed that proliferation arrest in normal cells is due to p53/p21 activation, which is AMPK-dependent and ATM-independent. In cancer cells, serum starvation also decreased the fraction of S-phase cells but to a minor extent. In contrast to normal cells, serum starvation-induced p53 activation in cancer cells is both AMPK- and ATM-dependent. Combination of CDDP with serum starvation in vitro increased the activation of ATM/Chk2/p53 signaling pathway compared to either treatment alone resulting in an enhanced sensitization of cancer cells to CDDP. Finally, short-term food starvation dramatically increased the sensitivity of human tumor xenografts to cisplatin as indicated not only by a significant growth delay, but also by the induction of complete remission in 60% of the animals bearing mesothelioma xenografts, and in 40% of the animals with lung carcinoma xenografts. CONCLUSION: In normal cells, serum starvation in vitro induces a cell cycle arrest and protects from CDDP induced toxicity. In contrast, proliferation of cancer cells is only moderately reduced by serum starvation whereas CDDP toxicity is enhanced. The combination of CDDP treatment with short term food starvation improved outcome in vivo. Therefore, starvation has the potential to enhance the therapeutic index of cisplatin-based therapy.
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spelling pubmed-35272022012-12-21 Starvation-induced activation of ATM/Chk2/p53 signaling sensitizes cancer cells to cisplatin Shi, Yandong Felley-Bosco, Emanuela Marti, Thomas M Orlowski, Katrin Pruschy, Martin Stahel, Rolf A BMC Cancer Research Article BACKGROUND: Optimizing the safety and efficacy of standard chemotherapeutic agents such as cisplatin (CDDP) is of clinical relevance. Serum starvation in vitro and short-term food starvation in vivo both stress cells by the sudden depletion of paracrine growth stimulation. METHODS: The effects of serum starvation on CDDP toxicity were investigated in normal and cancer cells by assessing proliferation, cell cycle distribution and activation of DNA-damage response and of AMPK, and were compared to effects observed in cells grown in serum-containing medium. The effects of short-term food starvation on CDDP chemotherapy were assessed in xenografts-bearing mice and were compared to effects on tumor growth and/or regression determined in mice with no diet alteration. RESULTS: We observed that serum starvation in vitro sensitizes cancer cells to CDDP while protecting normal cells. In detail, in normal cells, serum starvation resulted in a complete arrest of cellular proliferation, i.e. depletion of BrdU-incorporation during S-phase and accumulation of the cells in the G0/G1-phase of the cell cycle. Further analysis revealed that proliferation arrest in normal cells is due to p53/p21 activation, which is AMPK-dependent and ATM-independent. In cancer cells, serum starvation also decreased the fraction of S-phase cells but to a minor extent. In contrast to normal cells, serum starvation-induced p53 activation in cancer cells is both AMPK- and ATM-dependent. Combination of CDDP with serum starvation in vitro increased the activation of ATM/Chk2/p53 signaling pathway compared to either treatment alone resulting in an enhanced sensitization of cancer cells to CDDP. Finally, short-term food starvation dramatically increased the sensitivity of human tumor xenografts to cisplatin as indicated not only by a significant growth delay, but also by the induction of complete remission in 60% of the animals bearing mesothelioma xenografts, and in 40% of the animals with lung carcinoma xenografts. CONCLUSION: In normal cells, serum starvation in vitro induces a cell cycle arrest and protects from CDDP induced toxicity. In contrast, proliferation of cancer cells is only moderately reduced by serum starvation whereas CDDP toxicity is enhanced. The combination of CDDP treatment with short term food starvation improved outcome in vivo. Therefore, starvation has the potential to enhance the therapeutic index of cisplatin-based therapy. BioMed Central 2012-12-04 /pmc/articles/PMC3527202/ /pubmed/23211021 http://dx.doi.org/10.1186/1471-2407-12-571 Text en Copyright ©2012 Shi et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Shi, Yandong
Felley-Bosco, Emanuela
Marti, Thomas M
Orlowski, Katrin
Pruschy, Martin
Stahel, Rolf A
Starvation-induced activation of ATM/Chk2/p53 signaling sensitizes cancer cells to cisplatin
title Starvation-induced activation of ATM/Chk2/p53 signaling sensitizes cancer cells to cisplatin
title_full Starvation-induced activation of ATM/Chk2/p53 signaling sensitizes cancer cells to cisplatin
title_fullStr Starvation-induced activation of ATM/Chk2/p53 signaling sensitizes cancer cells to cisplatin
title_full_unstemmed Starvation-induced activation of ATM/Chk2/p53 signaling sensitizes cancer cells to cisplatin
title_short Starvation-induced activation of ATM/Chk2/p53 signaling sensitizes cancer cells to cisplatin
title_sort starvation-induced activation of atm/chk2/p53 signaling sensitizes cancer cells to cisplatin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3527202/
https://www.ncbi.nlm.nih.gov/pubmed/23211021
http://dx.doi.org/10.1186/1471-2407-12-571
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