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Rapamycin Plus Doxycycline Combination Affects Growth Arrest and Selective Autophagy-Dependent Cell Death in Breast Cancer Cells

Metabolic alteration is characteristic during tumour growth and therapy; however, targeting metabolic rewiring could overcome therapy resistance. mTOR hyperactivity, autophagy and other metabolic processes, including mitochondrial functions, could be targeted in breast cancer progression. We investi...

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Autores principales: Dankó, Titanilla, Petővári, Gábor, Sztankovics, Dániel, Moldvai, Dorottya, Raffay, Regina, Lőrincz, Péter, Visnovitz, Tamás, Zsiros, Viktória, Barna, Gábor, Márk, Ágnes, Krencz, Ildikó, Sebestyén, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8347279/
https://www.ncbi.nlm.nih.gov/pubmed/34360785
http://dx.doi.org/10.3390/ijms22158019
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author Dankó, Titanilla
Petővári, Gábor
Sztankovics, Dániel
Moldvai, Dorottya
Raffay, Regina
Lőrincz, Péter
Visnovitz, Tamás
Zsiros, Viktória
Barna, Gábor
Márk, Ágnes
Krencz, Ildikó
Sebestyén, Anna
author_facet Dankó, Titanilla
Petővári, Gábor
Sztankovics, Dániel
Moldvai, Dorottya
Raffay, Regina
Lőrincz, Péter
Visnovitz, Tamás
Zsiros, Viktória
Barna, Gábor
Márk, Ágnes
Krencz, Ildikó
Sebestyén, Anna
author_sort Dankó, Titanilla
collection PubMed
description Metabolic alteration is characteristic during tumour growth and therapy; however, targeting metabolic rewiring could overcome therapy resistance. mTOR hyperactivity, autophagy and other metabolic processes, including mitochondrial functions, could be targeted in breast cancer progression. We investigated the growth inhibitory mechanism of rapamycin + doxycycline treatment in human breast cancer model systems. Cell cycle and cell viability, including apoptotic and necrotic cell death, were analysed using flow cytometry, caspase activity measurements and caspase-3 immunostainings. mTOR-, autophagy-, necroptosis-related proteins and treatment-induced morphological alterations were analysed by Wes(TM), Western blot, immunostainings and transmission electron microscopy. The rapamycin + doxycycline combination decreased tumour proliferation in about 2/3rd of the investigated cell lines. The continuous treatment reduced tumour growth significantly both in vivo and in vitro. The effect after short-term treatment was reversible; however, autophagic vacuoles and degrading mitochondria were detected simultaneously, and the presence of mitophagy was also observed after the long-term rapamycin + doxycycline combination treatment. The rapamycin + doxycycline combination did not cause apoptosis or necrosis/necroptosis, but the alterations in autophagy- and mitochondria-related protein levels (LC3-B-II/I, p62, MitoTracker, TOM20 and certain co-stainings) were correlated to autophagy induction and mitophagy, without mitochondria repopulation. Based on these results, we suggest considering inducing metabolic stress and targeting mTOR hyperactivity and mitochondrial functions in combined anti-cancer treatments.
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spelling pubmed-83472792021-08-08 Rapamycin Plus Doxycycline Combination Affects Growth Arrest and Selective Autophagy-Dependent Cell Death in Breast Cancer Cells Dankó, Titanilla Petővári, Gábor Sztankovics, Dániel Moldvai, Dorottya Raffay, Regina Lőrincz, Péter Visnovitz, Tamás Zsiros, Viktória Barna, Gábor Márk, Ágnes Krencz, Ildikó Sebestyén, Anna Int J Mol Sci Article Metabolic alteration is characteristic during tumour growth and therapy; however, targeting metabolic rewiring could overcome therapy resistance. mTOR hyperactivity, autophagy and other metabolic processes, including mitochondrial functions, could be targeted in breast cancer progression. We investigated the growth inhibitory mechanism of rapamycin + doxycycline treatment in human breast cancer model systems. Cell cycle and cell viability, including apoptotic and necrotic cell death, were analysed using flow cytometry, caspase activity measurements and caspase-3 immunostainings. mTOR-, autophagy-, necroptosis-related proteins and treatment-induced morphological alterations were analysed by Wes(TM), Western blot, immunostainings and transmission electron microscopy. The rapamycin + doxycycline combination decreased tumour proliferation in about 2/3rd of the investigated cell lines. The continuous treatment reduced tumour growth significantly both in vivo and in vitro. The effect after short-term treatment was reversible; however, autophagic vacuoles and degrading mitochondria were detected simultaneously, and the presence of mitophagy was also observed after the long-term rapamycin + doxycycline combination treatment. The rapamycin + doxycycline combination did not cause apoptosis or necrosis/necroptosis, but the alterations in autophagy- and mitochondria-related protein levels (LC3-B-II/I, p62, MitoTracker, TOM20 and certain co-stainings) were correlated to autophagy induction and mitophagy, without mitochondria repopulation. Based on these results, we suggest considering inducing metabolic stress and targeting mTOR hyperactivity and mitochondrial functions in combined anti-cancer treatments. MDPI 2021-07-27 /pmc/articles/PMC8347279/ /pubmed/34360785 http://dx.doi.org/10.3390/ijms22158019 Text en © 2021 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
Dankó, Titanilla
Petővári, Gábor
Sztankovics, Dániel
Moldvai, Dorottya
Raffay, Regina
Lőrincz, Péter
Visnovitz, Tamás
Zsiros, Viktória
Barna, Gábor
Márk, Ágnes
Krencz, Ildikó
Sebestyén, Anna
Rapamycin Plus Doxycycline Combination Affects Growth Arrest and Selective Autophagy-Dependent Cell Death in Breast Cancer Cells
title Rapamycin Plus Doxycycline Combination Affects Growth Arrest and Selective Autophagy-Dependent Cell Death in Breast Cancer Cells
title_full Rapamycin Plus Doxycycline Combination Affects Growth Arrest and Selective Autophagy-Dependent Cell Death in Breast Cancer Cells
title_fullStr Rapamycin Plus Doxycycline Combination Affects Growth Arrest and Selective Autophagy-Dependent Cell Death in Breast Cancer Cells
title_full_unstemmed Rapamycin Plus Doxycycline Combination Affects Growth Arrest and Selective Autophagy-Dependent Cell Death in Breast Cancer Cells
title_short Rapamycin Plus Doxycycline Combination Affects Growth Arrest and Selective Autophagy-Dependent Cell Death in Breast Cancer Cells
title_sort rapamycin plus doxycycline combination affects growth arrest and selective autophagy-dependent cell death in breast cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8347279/
https://www.ncbi.nlm.nih.gov/pubmed/34360785
http://dx.doi.org/10.3390/ijms22158019
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