Data from Proteasome Inhibition Potentiates Antitumor Effects of Photodynamic Therapy in Mice through Induction of Endoplasmic Reticulum Stress and Unfolded Protein Response — Angelika Szokalska (2023) | RDL Network
Data from Proteasome Inhibition Potentiates Antitumor Effects of Photodynamic Therapy in Mice through Induction of Endoplasmic Reticulum Stress and Unfolded Protein Response
Preprint 2023 en
Authors
AS
Angelika Szokalska
MM
Marcin Makowski
DN
Dominika Nowis
Abstract
1 min read
<div>Abstract<p>Photodynamic therapy (PDT) is an approved therapeutic procedure that exerts cytotoxic activity toward tumor cells by inducing production of reactive oxygen species such as singlet oxygen. PDT leads to oxidative damage of cellular macromolecules, including proteins that undergo multiple modifications such as fragmentation, cross-linking, and carbonylation that result in protein unfolding and aggregation. Because the major mechanism for elimination of carbonylated proteins is their degradation by proteasomes, we hypothesized that a combination of PDT with proteasome inhibitors might lead to accumulation of carbonylated proteins in endoplasmic reticulum (ER), aggravated ER stress, and potentiated cytotoxicity toward tumor cells. We observed that Photofrin-mediated PDT leads to robust carbonylation of cellular proteins and induction of unfolded protein response. Pretreatment of tumor cells with three different proteasome inhibitors, including bortezomib, MG132, and PSI, gave increased accumulation of carbonylated and ubiquitinated proteins in PDT-treated cells. Proteasome inhibitors effectively sensitized tumor cells of murine (EMT6 and C-26) as well as human (HeLa) origin to PDT-mediated cytotoxicity. Significant retardation of tumor growth with 60% to 100% complete responses was observed <i>in vivo</i> in two different murine tumor models (EMT6 and C-26) when PDT was combined with either bortezomib or PSI. Altogether, these observations indicate that combination of PDT with proteasome inhibitors leads to potentiated antitumor effects. The results of these studies are of immediate clinical application because bortezomib is a clinically approved drug that undergoes extensive clinical evaluations for the treatment of solid tumors. [Cancer Res 2009;69(10):4235–43]</p></div>
Angelika Szokalska, Marcin Makowski, Dominika Nowis, Grzegorz M. Wilczyński, Marek Kujawa, Cezary Wójcik, Izabela Młynarczuk-Biały, Paweł Salwa, Jacek Bil, Sylwia Janowska, Patrizia Agostinis, Tom Verfaillie, Marek Bugajski, J Gietka, Tadeusz Issat, Eliza Głodkowska‐Mrówka, Piotr Mrówka, Tomasz Stokłosa, Michael R Hamblin, Paweł Mróz, Marek Jakóbisiak, Jakub Gołąb
Angelika Szokalska, Marcin Makowski, Dominika Nowis, Grzegorz M. Wilczyński, Marek Kujawa, Cezary Wójcik, Izabela Młynarczuk-Biały, Paweł Salwa, Jacek Bil, Sylwia Janowska, Patrizia Agostinis, Tom Verfaillie, Marek Bugajski, J Gietka, Tadeusz Issat, Eliza Głodkowska‐Mrówka, Piotr Mrówka, Tomasz Stokłosa, Michael R Hamblin, Paweł Mróz, Marek Jakóbisiak,
Angelika Szokalska, Marcin Makowski, Dominika Nowis, Grzegorz M. Wilczyński, Marek Kujawa, Cezary Wójcik, Izabela Młynarczuk-Biały, Paweł Salwa, Jacek Bil, Sylwia Janowska, Patrizia Agostinis, Tom Verfaillie, Marek Bugajski, J Gietka, Tadeusz Issat, Eliza Głodkowska‐Mrówka, Piotr Mrówka, Tomasz Stokłosa, Michael R Hamblin, Paweł Mróz, ,
Angelika Szokalska, Marcin Makowski, Dominika Nowis, Grzegorz M. Wilczyński, Marek Kujawa, Cezary Wójcik, Izabela Młynarczuk-Biały, Paweł Salwa, Jacek Bil, Sylwia Janowska, Patrizia Agostinis, Tom Verfaillie, Marek Bugajski, J Gietka, Tadeusz Issat, Eliza Głodkowska‐Mrówka, Piotr Mrówka, Tomasz Stokłosa, Michael R Hamblin, Paweł Mróz, ,
Angelika Szokalska, Marcin Makowski, Dominika Nowis, Grzegorz M. Wilczyński, Marek Kujawa, Cezary Wójcik, Izabela Młynarczuk-Biały, Paweł Salwa, Jacek Bil, Sylwia Janowska, Patrizia Agostinis, Tom Verfaillie, Marek Bugajski, J Gietka, Tadeusz Issat, Eliza Głodkowska‐Mrówka, Piotr Mrówka, Tomasz Stokłosa, Michael R Hamblin, Paweł Mróz, ,
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