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p-Cresyl Sulfate Aggravates Cardiac Dysfunction Associated With Chronic Kidney Disease by Enhancing Apoptosis of Cardiomyocytes

BACKGROUND: Cardiovascular disease is the leading cause of death in patients with chronic kidney disease. A body of evidence suggests that p-cresyl sulfate (PCS), a uremic toxin, is associated with the cardiovascular mortality rate of patients with chronic kidney disease; however, the molecular mech...

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Autores principales: Han, Hui, Zhu, Jinzhou, Zhu, Zhengbin, Ni, Jingwei, Du, Run, Dai, Yang, Chen, Yanjia, Wu, Zhijun, Lu, Lin, Zhang, Ruiyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599533/
https://www.ncbi.nlm.nih.gov/pubmed/26066032
http://dx.doi.org/10.1161/JAHA.115.001852
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author Han, Hui
Zhu, Jinzhou
Zhu, Zhengbin
Ni, Jingwei
Du, Run
Dai, Yang
Chen, Yanjia
Wu, Zhijun
Lu, Lin
Zhang, Ruiyan
author_facet Han, Hui
Zhu, Jinzhou
Zhu, Zhengbin
Ni, Jingwei
Du, Run
Dai, Yang
Chen, Yanjia
Wu, Zhijun
Lu, Lin
Zhang, Ruiyan
author_sort Han, Hui
collection PubMed
description BACKGROUND: Cardiovascular disease is the leading cause of death in patients with chronic kidney disease. A body of evidence suggests that p-cresyl sulfate (PCS), a uremic toxin, is associated with the cardiovascular mortality rate of patients with chronic kidney disease; however, the molecular mechanisms underlying this feature have not yet been fully elucidated. METHODS AND RESULTS: We aimed to determine whether PCS accumulation could adversely affect cardiac dysfunction via direct cytotoxicity to cardiomyocytes. In mice that underwent 5/6 nephrectomy, PCS promoted cardiac apoptosis and affected the ratio of left ventricular transmitral early peak flow velocity to left ventricular transmitral late peak flow velocity (the E/A ratio) observed by echocardiography (n=8 in each group). Apocynin, an inhibitor of NADPH oxidase activity, attenuates this alteration of the E/A ratio (n=6 in each group). PCS also exhibited proapoptotic properties in H9c2 cells by upregulating the expression of p22(phox) and p47(phox), NADPH oxidase subunits, and the production of reactive oxygen species. Apocynin and N-acetylcysteine were both able to suppress the effect of PCS, underscoring the importance of NADPH oxidase activation for the mechanism of action. CONCLUSIONS: This study demonstrated that the cardiac toxicity of PCS is at least partially attributed to induced NADPH oxidase activity and reactive oxygen species production facilitating cardiac apoptosis and resulting in diastolic dysfunction.
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spelling pubmed-45995332015-10-16 p-Cresyl Sulfate Aggravates Cardiac Dysfunction Associated With Chronic Kidney Disease by Enhancing Apoptosis of Cardiomyocytes Han, Hui Zhu, Jinzhou Zhu, Zhengbin Ni, Jingwei Du, Run Dai, Yang Chen, Yanjia Wu, Zhijun Lu, Lin Zhang, Ruiyan J Am Heart Assoc Original Research BACKGROUND: Cardiovascular disease is the leading cause of death in patients with chronic kidney disease. A body of evidence suggests that p-cresyl sulfate (PCS), a uremic toxin, is associated with the cardiovascular mortality rate of patients with chronic kidney disease; however, the molecular mechanisms underlying this feature have not yet been fully elucidated. METHODS AND RESULTS: We aimed to determine whether PCS accumulation could adversely affect cardiac dysfunction via direct cytotoxicity to cardiomyocytes. In mice that underwent 5/6 nephrectomy, PCS promoted cardiac apoptosis and affected the ratio of left ventricular transmitral early peak flow velocity to left ventricular transmitral late peak flow velocity (the E/A ratio) observed by echocardiography (n=8 in each group). Apocynin, an inhibitor of NADPH oxidase activity, attenuates this alteration of the E/A ratio (n=6 in each group). PCS also exhibited proapoptotic properties in H9c2 cells by upregulating the expression of p22(phox) and p47(phox), NADPH oxidase subunits, and the production of reactive oxygen species. Apocynin and N-acetylcysteine were both able to suppress the effect of PCS, underscoring the importance of NADPH oxidase activation for the mechanism of action. CONCLUSIONS: This study demonstrated that the cardiac toxicity of PCS is at least partially attributed to induced NADPH oxidase activity and reactive oxygen species production facilitating cardiac apoptosis and resulting in diastolic dysfunction. John Wiley & Sons, Ltd 2015-06-11 /pmc/articles/PMC4599533/ /pubmed/26066032 http://dx.doi.org/10.1161/JAHA.115.001852 Text en © 2015 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley Blackwell. http://creativecommons.org/licenses/by-nc/4.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Han, Hui
Zhu, Jinzhou
Zhu, Zhengbin
Ni, Jingwei
Du, Run
Dai, Yang
Chen, Yanjia
Wu, Zhijun
Lu, Lin
Zhang, Ruiyan
p-Cresyl Sulfate Aggravates Cardiac Dysfunction Associated With Chronic Kidney Disease by Enhancing Apoptosis of Cardiomyocytes
title p-Cresyl Sulfate Aggravates Cardiac Dysfunction Associated With Chronic Kidney Disease by Enhancing Apoptosis of Cardiomyocytes
title_full p-Cresyl Sulfate Aggravates Cardiac Dysfunction Associated With Chronic Kidney Disease by Enhancing Apoptosis of Cardiomyocytes
title_fullStr p-Cresyl Sulfate Aggravates Cardiac Dysfunction Associated With Chronic Kidney Disease by Enhancing Apoptosis of Cardiomyocytes
title_full_unstemmed p-Cresyl Sulfate Aggravates Cardiac Dysfunction Associated With Chronic Kidney Disease by Enhancing Apoptosis of Cardiomyocytes
title_short p-Cresyl Sulfate Aggravates Cardiac Dysfunction Associated With Chronic Kidney Disease by Enhancing Apoptosis of Cardiomyocytes
title_sort p-cresyl sulfate aggravates cardiac dysfunction associated with chronic kidney disease by enhancing apoptosis of cardiomyocytes
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599533/
https://www.ncbi.nlm.nih.gov/pubmed/26066032
http://dx.doi.org/10.1161/JAHA.115.001852
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