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Effect of Platelet-Derived Growth Factor C on Mitochondrial Oxidative Stress Induced by High d-Glucose in Human Aortic Endothelial Cells

Endothelial dysfunction is an early marker for cardiovascular diseases. Hyperglycemia induces endothelial dysfunction, increasing the production of reactive oxygen species. Platelet-derived growth factor C stimulates angiogenesis and revascularization in ischemic tissues of diabetic mice and promote...

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Autores principales: Grismaldo Rodríguez, Adriana, Zamudio Rodríguez, Jairo A., Mendieta, Cindy V., Quijano Gómez, Sandra, Sanabria Barrera, Sandra, Morales Álvarez, Ludis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143891/
https://www.ncbi.nlm.nih.gov/pubmed/35631465
http://dx.doi.org/10.3390/ph15050639
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author Grismaldo Rodríguez, Adriana
Zamudio Rodríguez, Jairo A.
Mendieta, Cindy V.
Quijano Gómez, Sandra
Sanabria Barrera, Sandra
Morales Álvarez, Ludis
author_facet Grismaldo Rodríguez, Adriana
Zamudio Rodríguez, Jairo A.
Mendieta, Cindy V.
Quijano Gómez, Sandra
Sanabria Barrera, Sandra
Morales Álvarez, Ludis
author_sort Grismaldo Rodríguez, Adriana
collection PubMed
description Endothelial dysfunction is an early marker for cardiovascular diseases. Hyperglycemia induces endothelial dysfunction, increasing the production of reactive oxygen species. Platelet-derived growth factor C stimulates angiogenesis and revascularization in ischemic tissues of diabetic mice and promotes the migration of progenitors and mature ECs to injury sites; however, the molecular mechanisms of its actions are not described yet. Here, we evaluated the effect of PDGF-C on oxidative stress induced by HG. Human aortic endothelial cells were grown in glucose concentrations ranging from 5 mmol/L to 35 mmol/L for 1 to 24 h. Treatment with 50 ng/mL PDGF-C was done for 1 to 3 h. Cytosolic and mitochondrial ROS were measured by fluorometry, and the expression of antioxidant enzymes was evaluated by Western blot. Nrf2 and Keap1 expression was assessed by real-time PCR. High glucose induced mitochondrial ROS production. PDGF-C diminished the oxidative stress induced by high glucose, increasing SOD2 expression and SOD activity, and modulating the Keap1 expression gene. These results give new evidence about the mitochondrial antioxidant effect that PDGF-C could exert on endothelial cells exposed to high glucose and its considerable role as a therapeutic target in diabetes.
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spelling pubmed-91438912022-05-29 Effect of Platelet-Derived Growth Factor C on Mitochondrial Oxidative Stress Induced by High d-Glucose in Human Aortic Endothelial Cells Grismaldo Rodríguez, Adriana Zamudio Rodríguez, Jairo A. Mendieta, Cindy V. Quijano Gómez, Sandra Sanabria Barrera, Sandra Morales Álvarez, Ludis Pharmaceuticals (Basel) Article Endothelial dysfunction is an early marker for cardiovascular diseases. Hyperglycemia induces endothelial dysfunction, increasing the production of reactive oxygen species. Platelet-derived growth factor C stimulates angiogenesis and revascularization in ischemic tissues of diabetic mice and promotes the migration of progenitors and mature ECs to injury sites; however, the molecular mechanisms of its actions are not described yet. Here, we evaluated the effect of PDGF-C on oxidative stress induced by HG. Human aortic endothelial cells were grown in glucose concentrations ranging from 5 mmol/L to 35 mmol/L for 1 to 24 h. Treatment with 50 ng/mL PDGF-C was done for 1 to 3 h. Cytosolic and mitochondrial ROS were measured by fluorometry, and the expression of antioxidant enzymes was evaluated by Western blot. Nrf2 and Keap1 expression was assessed by real-time PCR. High glucose induced mitochondrial ROS production. PDGF-C diminished the oxidative stress induced by high glucose, increasing SOD2 expression and SOD activity, and modulating the Keap1 expression gene. These results give new evidence about the mitochondrial antioxidant effect that PDGF-C could exert on endothelial cells exposed to high glucose and its considerable role as a therapeutic target in diabetes. MDPI 2022-05-23 /pmc/articles/PMC9143891/ /pubmed/35631465 http://dx.doi.org/10.3390/ph15050639 Text en © 2022 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
Grismaldo Rodríguez, Adriana
Zamudio Rodríguez, Jairo A.
Mendieta, Cindy V.
Quijano Gómez, Sandra
Sanabria Barrera, Sandra
Morales Álvarez, Ludis
Effect of Platelet-Derived Growth Factor C on Mitochondrial Oxidative Stress Induced by High d-Glucose in Human Aortic Endothelial Cells
title Effect of Platelet-Derived Growth Factor C on Mitochondrial Oxidative Stress Induced by High d-Glucose in Human Aortic Endothelial Cells
title_full Effect of Platelet-Derived Growth Factor C on Mitochondrial Oxidative Stress Induced by High d-Glucose in Human Aortic Endothelial Cells
title_fullStr Effect of Platelet-Derived Growth Factor C on Mitochondrial Oxidative Stress Induced by High d-Glucose in Human Aortic Endothelial Cells
title_full_unstemmed Effect of Platelet-Derived Growth Factor C on Mitochondrial Oxidative Stress Induced by High d-Glucose in Human Aortic Endothelial Cells
title_short Effect of Platelet-Derived Growth Factor C on Mitochondrial Oxidative Stress Induced by High d-Glucose in Human Aortic Endothelial Cells
title_sort effect of platelet-derived growth factor c on mitochondrial oxidative stress induced by high d-glucose in human aortic endothelial cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143891/
https://www.ncbi.nlm.nih.gov/pubmed/35631465
http://dx.doi.org/10.3390/ph15050639
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