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Assessing the Therapeutic Efficacy of Proton Transport Inhibitors in a Triple-Negative Breast Cancer Murine Model with Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer Tumor pH Imaging

Proton transporters play a key role in maintaining the acidic tumor microenvironment; hence, their inhibition has been proposed as a new therapeutic treatment, although few methods can accurately assess their effect in vivo. In this study, we investigated whether MRI-CEST (Magnetic Resonance Imaging...

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Autores principales: Dhakan, Chetan, Anemone, Annasofia, Ventura, Vittoria, Carella, Antonella, Corrado, Alessia, Pirotta, Elisa, Villano, Daisy, Romdhane, Feriel, Gammaraccio, Francesco, Aime, Silvio, Longo, Dario Livio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10673543/
https://www.ncbi.nlm.nih.gov/pubmed/37999256
http://dx.doi.org/10.3390/metabo13111161
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author Dhakan, Chetan
Anemone, Annasofia
Ventura, Vittoria
Carella, Antonella
Corrado, Alessia
Pirotta, Elisa
Villano, Daisy
Romdhane, Feriel
Gammaraccio, Francesco
Aime, Silvio
Longo, Dario Livio
author_facet Dhakan, Chetan
Anemone, Annasofia
Ventura, Vittoria
Carella, Antonella
Corrado, Alessia
Pirotta, Elisa
Villano, Daisy
Romdhane, Feriel
Gammaraccio, Francesco
Aime, Silvio
Longo, Dario Livio
author_sort Dhakan, Chetan
collection PubMed
description Proton transporters play a key role in maintaining the acidic tumor microenvironment; hence, their inhibition has been proposed as a new therapeutic treatment, although few methods can accurately assess their effect in vivo. In this study, we investigated whether MRI-CEST (Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer) tumor pH imaging can be a useful tool to evaluate in vivo the therapeutic efficacy of several Proton Pump Inhibitors (PPIs) in breast cancer. Cell viability and extracellular pH assays were carried out in breast cancer cells cultured at physiological pH (7.4) or acid-adapted (pH of 6.5 and 6.8) following the exposure to inhibitors of V-ATPase (Lansoprazole, Esomeprazole) or NHE1 (Amiloride, Cariporide) at several concentrations. Next, triple-negative breast cancer 4T1 tumor-bearing mice were treated with Lansoprazole or Amiloride and MRI-CEST tumor pH imaging was utilized to assess the in vivo efficacy. Only Lansoprazole induced, in addition to breast cancer cell toxicity, a significant inhibition of proton extrusion. A significant reduction in tumor volume, prolonged survival, and increase in extracellular tumor pH after 1 and 2 weeks were observed after Lansoprazole treatment, whereas no significant changes were detected upon Amiloride treatment. Our results suggested that MRI-CEST tumor pH imaging can monitor the therapeutic efficacy of PPIs in breast cancer murine models.
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spelling pubmed-106735432023-11-18 Assessing the Therapeutic Efficacy of Proton Transport Inhibitors in a Triple-Negative Breast Cancer Murine Model with Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer Tumor pH Imaging Dhakan, Chetan Anemone, Annasofia Ventura, Vittoria Carella, Antonella Corrado, Alessia Pirotta, Elisa Villano, Daisy Romdhane, Feriel Gammaraccio, Francesco Aime, Silvio Longo, Dario Livio Metabolites Article Proton transporters play a key role in maintaining the acidic tumor microenvironment; hence, their inhibition has been proposed as a new therapeutic treatment, although few methods can accurately assess their effect in vivo. In this study, we investigated whether MRI-CEST (Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer) tumor pH imaging can be a useful tool to evaluate in vivo the therapeutic efficacy of several Proton Pump Inhibitors (PPIs) in breast cancer. Cell viability and extracellular pH assays were carried out in breast cancer cells cultured at physiological pH (7.4) or acid-adapted (pH of 6.5 and 6.8) following the exposure to inhibitors of V-ATPase (Lansoprazole, Esomeprazole) or NHE1 (Amiloride, Cariporide) at several concentrations. Next, triple-negative breast cancer 4T1 tumor-bearing mice were treated with Lansoprazole or Amiloride and MRI-CEST tumor pH imaging was utilized to assess the in vivo efficacy. Only Lansoprazole induced, in addition to breast cancer cell toxicity, a significant inhibition of proton extrusion. A significant reduction in tumor volume, prolonged survival, and increase in extracellular tumor pH after 1 and 2 weeks were observed after Lansoprazole treatment, whereas no significant changes were detected upon Amiloride treatment. Our results suggested that MRI-CEST tumor pH imaging can monitor the therapeutic efficacy of PPIs in breast cancer murine models. MDPI 2023-11-18 /pmc/articles/PMC10673543/ /pubmed/37999256 http://dx.doi.org/10.3390/metabo13111161 Text en © 2023 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
Dhakan, Chetan
Anemone, Annasofia
Ventura, Vittoria
Carella, Antonella
Corrado, Alessia
Pirotta, Elisa
Villano, Daisy
Romdhane, Feriel
Gammaraccio, Francesco
Aime, Silvio
Longo, Dario Livio
Assessing the Therapeutic Efficacy of Proton Transport Inhibitors in a Triple-Negative Breast Cancer Murine Model with Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer Tumor pH Imaging
title Assessing the Therapeutic Efficacy of Proton Transport Inhibitors in a Triple-Negative Breast Cancer Murine Model with Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer Tumor pH Imaging
title_full Assessing the Therapeutic Efficacy of Proton Transport Inhibitors in a Triple-Negative Breast Cancer Murine Model with Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer Tumor pH Imaging
title_fullStr Assessing the Therapeutic Efficacy of Proton Transport Inhibitors in a Triple-Negative Breast Cancer Murine Model with Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer Tumor pH Imaging
title_full_unstemmed Assessing the Therapeutic Efficacy of Proton Transport Inhibitors in a Triple-Negative Breast Cancer Murine Model with Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer Tumor pH Imaging
title_short Assessing the Therapeutic Efficacy of Proton Transport Inhibitors in a Triple-Negative Breast Cancer Murine Model with Magnetic Resonance Imaging—Chemical Exchange Saturation Transfer Tumor pH Imaging
title_sort assessing the therapeutic efficacy of proton transport inhibitors in a triple-negative breast cancer murine model with magnetic resonance imaging—chemical exchange saturation transfer tumor ph imaging
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10673543/
https://www.ncbi.nlm.nih.gov/pubmed/37999256
http://dx.doi.org/10.3390/metabo13111161
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