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PRDX-1 Supports the Survival and Antitumor Activity of Primary and CAR-Modified NK Cells under Oxidative Stress

Oxidative stress, caused by the imbalance between reactive species generation and the dysfunctional capacity of antioxidant defenses, is one of the characteristic features of cancer. Here, we quantified hydrogen peroxide in the tumor microenvironment (TME) and demonstrated that hydrogen peroxide con...

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Autores principales: Klopotowska, Marta, Bajor, Malgorzata, Graczyk-Jarzynka, Agnieszka, Kraft, Agnieszka, Pilch, Zofia, Zhylko, Andriy, Firczuk, Malgorzata, Baranowska, Iwona, Lazniewski, Michal, Plewczynski, Dariusz, Goral, Agnieszka, Soroczynska, Karolina, Domagala, Joanna, Marhelava, Katsiaryna, Slusarczyk, Aleksander, Retecki, Kuba, Ramji, Kavita, Krawczyk, Marta, Temples, Madison N., Sharma, Blanka, Lachota, Mieszko, Netskar, Herman, Malmberg, Karl-Johan, Zagozdzon, Radoslaw, Winiarska, Magdalena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9414282/
https://www.ncbi.nlm.nih.gov/pubmed/34853030
http://dx.doi.org/10.1158/2326-6066.CIR-20-1023
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author Klopotowska, Marta
Bajor, Malgorzata
Graczyk-Jarzynka, Agnieszka
Kraft, Agnieszka
Pilch, Zofia
Zhylko, Andriy
Firczuk, Malgorzata
Baranowska, Iwona
Lazniewski, Michal
Plewczynski, Dariusz
Goral, Agnieszka
Soroczynska, Karolina
Domagala, Joanna
Marhelava, Katsiaryna
Slusarczyk, Aleksander
Retecki, Kuba
Ramji, Kavita
Krawczyk, Marta
Temples, Madison N.
Sharma, Blanka
Lachota, Mieszko
Netskar, Herman
Malmberg, Karl-Johan
Zagozdzon, Radoslaw
Winiarska, Magdalena
author_facet Klopotowska, Marta
Bajor, Malgorzata
Graczyk-Jarzynka, Agnieszka
Kraft, Agnieszka
Pilch, Zofia
Zhylko, Andriy
Firczuk, Malgorzata
Baranowska, Iwona
Lazniewski, Michal
Plewczynski, Dariusz
Goral, Agnieszka
Soroczynska, Karolina
Domagala, Joanna
Marhelava, Katsiaryna
Slusarczyk, Aleksander
Retecki, Kuba
Ramji, Kavita
Krawczyk, Marta
Temples, Madison N.
Sharma, Blanka
Lachota, Mieszko
Netskar, Herman
Malmberg, Karl-Johan
Zagozdzon, Radoslaw
Winiarska, Magdalena
author_sort Klopotowska, Marta
collection PubMed
description Oxidative stress, caused by the imbalance between reactive species generation and the dysfunctional capacity of antioxidant defenses, is one of the characteristic features of cancer. Here, we quantified hydrogen peroxide in the tumor microenvironment (TME) and demonstrated that hydrogen peroxide concentrations are elevated in tumor interstitial fluid isolated from murine breast cancers in vivo, when compared with blood or normal subcutaneous fluid. Therefore, we investigated the effects of increased hydrogen peroxide concentration on immune cell functions. NK cells were more susceptible to hydrogen peroxide than T cells or B cells, and by comparing T, B, and NK cells' sensitivities to redox stress and their antioxidant capacities, we identified peroxiredoxin-1 (PRDX1) as a lacking element of NK cells' antioxidative defense. We observed that priming with IL15 protected NK cells' functions in the presence of high hydrogen peroxide and simultaneously upregulated PRDX1 expression. However, the effect of IL15 on PRDX1 expression was transient and strictly dependent on the presence of the cytokine. Therefore, we genetically modified NK cells to stably overexpress PRDX1, which led to increased survival and NK cell activity in redox stress conditions. Finally, we generated PD-L1–CAR NK cells overexpressing PRDX1 that displayed potent antitumor activity against breast cancer cells under oxidative stress. These results demonstrate that hydrogen peroxide, at concentrations detected in the TME, suppresses NK cell function and that genetic modification strategies can improve CAR NK cells' resistance and potency against solid tumors.
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spelling pubmed-94142822023-01-05 PRDX-1 Supports the Survival and Antitumor Activity of Primary and CAR-Modified NK Cells under Oxidative Stress Klopotowska, Marta Bajor, Malgorzata Graczyk-Jarzynka, Agnieszka Kraft, Agnieszka Pilch, Zofia Zhylko, Andriy Firczuk, Malgorzata Baranowska, Iwona Lazniewski, Michal Plewczynski, Dariusz Goral, Agnieszka Soroczynska, Karolina Domagala, Joanna Marhelava, Katsiaryna Slusarczyk, Aleksander Retecki, Kuba Ramji, Kavita Krawczyk, Marta Temples, Madison N. Sharma, Blanka Lachota, Mieszko Netskar, Herman Malmberg, Karl-Johan Zagozdzon, Radoslaw Winiarska, Magdalena Cancer Immunol Res Research Articles Oxidative stress, caused by the imbalance between reactive species generation and the dysfunctional capacity of antioxidant defenses, is one of the characteristic features of cancer. Here, we quantified hydrogen peroxide in the tumor microenvironment (TME) and demonstrated that hydrogen peroxide concentrations are elevated in tumor interstitial fluid isolated from murine breast cancers in vivo, when compared with blood or normal subcutaneous fluid. Therefore, we investigated the effects of increased hydrogen peroxide concentration on immune cell functions. NK cells were more susceptible to hydrogen peroxide than T cells or B cells, and by comparing T, B, and NK cells' sensitivities to redox stress and their antioxidant capacities, we identified peroxiredoxin-1 (PRDX1) as a lacking element of NK cells' antioxidative defense. We observed that priming with IL15 protected NK cells' functions in the presence of high hydrogen peroxide and simultaneously upregulated PRDX1 expression. However, the effect of IL15 on PRDX1 expression was transient and strictly dependent on the presence of the cytokine. Therefore, we genetically modified NK cells to stably overexpress PRDX1, which led to increased survival and NK cell activity in redox stress conditions. Finally, we generated PD-L1–CAR NK cells overexpressing PRDX1 that displayed potent antitumor activity against breast cancer cells under oxidative stress. These results demonstrate that hydrogen peroxide, at concentrations detected in the TME, suppresses NK cell function and that genetic modification strategies can improve CAR NK cells' resistance and potency against solid tumors. American Association for Cancer Research 2022-02-01 2021-12-01 /pmc/articles/PMC9414282/ /pubmed/34853030 http://dx.doi.org/10.1158/2326-6066.CIR-20-1023 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 Research Articles
Klopotowska, Marta
Bajor, Malgorzata
Graczyk-Jarzynka, Agnieszka
Kraft, Agnieszka
Pilch, Zofia
Zhylko, Andriy
Firczuk, Malgorzata
Baranowska, Iwona
Lazniewski, Michal
Plewczynski, Dariusz
Goral, Agnieszka
Soroczynska, Karolina
Domagala, Joanna
Marhelava, Katsiaryna
Slusarczyk, Aleksander
Retecki, Kuba
Ramji, Kavita
Krawczyk, Marta
Temples, Madison N.
Sharma, Blanka
Lachota, Mieszko
Netskar, Herman
Malmberg, Karl-Johan
Zagozdzon, Radoslaw
Winiarska, Magdalena
PRDX-1 Supports the Survival and Antitumor Activity of Primary and CAR-Modified NK Cells under Oxidative Stress
title PRDX-1 Supports the Survival and Antitumor Activity of Primary and CAR-Modified NK Cells under Oxidative Stress
title_full PRDX-1 Supports the Survival and Antitumor Activity of Primary and CAR-Modified NK Cells under Oxidative Stress
title_fullStr PRDX-1 Supports the Survival and Antitumor Activity of Primary and CAR-Modified NK Cells under Oxidative Stress
title_full_unstemmed PRDX-1 Supports the Survival and Antitumor Activity of Primary and CAR-Modified NK Cells under Oxidative Stress
title_short PRDX-1 Supports the Survival and Antitumor Activity of Primary and CAR-Modified NK Cells under Oxidative Stress
title_sort prdx-1 supports the survival and antitumor activity of primary and car-modified nk cells under oxidative stress
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9414282/
https://www.ncbi.nlm.nih.gov/pubmed/34853030
http://dx.doi.org/10.1158/2326-6066.CIR-20-1023
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