Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.

Skeletal muscle atrophy and impaired muscle function are associated with lower health-related quality of life, and greater disability and mortality risk in those with chronic kidney disease (CKD). However, the pathogenesis of skeletal dysfunction in CKD is unknown. We used a slow progressing, natura...

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Main Authors: Keith G Avin, Neal X Chen, Jason M Organ, Chad Zarse, Kalisha O'Neill, Richard G Conway, Robert J Konrad, Robert L Bacallao, Matthew R Allen, Sharon M Moe
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0159411
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spelling doaj-9fab6b85c9054d00800570163fd791342021-03-04T11:30:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01118e015941110.1371/journal.pone.0159411Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.Keith G AvinNeal X ChenJason M OrganChad ZarseKalisha O'NeillRichard G ConwayRobert J KonradRobert L BacallaoMatthew R AllenSharon M MoeSkeletal muscle atrophy and impaired muscle function are associated with lower health-related quality of life, and greater disability and mortality risk in those with chronic kidney disease (CKD). However, the pathogenesis of skeletal dysfunction in CKD is unknown. We used a slow progressing, naturally occurring, CKD rat model (Cy/+ rat) with hormonal abnormalities consistent with clinical presentations of CKD to study skeletal muscle signaling. The CKD rats demonstrated augmented skeletal muscle regeneration with higher activation and differentiation signals in muscle cells (i.e. lower Pax-7; higher MyoD and myogenin RNA expression). However, there was also higher expression of proteolytic markers (Atrogin-1 and MuRF-1) in CKD muscle relative to normal. CKD animals had higher indices of oxidative stress compared to normal, evident by elevated plasma levels of an oxidative stress marker, 8-hydroxy-2' -deoxyguanosine (8-OHdG), increased muscle expression of succinate dehydrogenase (SDH) and Nox4 and altered mitochondria morphology. Furthermore, we show significantly higher serum levels of myostatin and expression of myostatin in skeletal muscle of CKD animals compared to normal. Taken together, these data show aberrant regeneration and proteolytic signaling that is associated with oxidative stress and high levels of myostatin in the setting of CKD. These changes likely play a role in the compromised skeletal muscle function that exists in CKD.https://doi.org/10.1371/journal.pone.0159411
collection DOAJ
language English
format Article
sources DOAJ
author Keith G Avin
Neal X Chen
Jason M Organ
Chad Zarse
Kalisha O'Neill
Richard G Conway
Robert J Konrad
Robert L Bacallao
Matthew R Allen
Sharon M Moe
spellingShingle Keith G Avin
Neal X Chen
Jason M Organ
Chad Zarse
Kalisha O'Neill
Richard G Conway
Robert J Konrad
Robert L Bacallao
Matthew R Allen
Sharon M Moe
Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.
PLoS ONE
author_facet Keith G Avin
Neal X Chen
Jason M Organ
Chad Zarse
Kalisha O'Neill
Richard G Conway
Robert J Konrad
Robert L Bacallao
Matthew R Allen
Sharon M Moe
author_sort Keith G Avin
title Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.
title_short Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.
title_full Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.
title_fullStr Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.
title_full_unstemmed Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease.
title_sort skeletal muscle regeneration and oxidative stress are altered in chronic kidney disease.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Skeletal muscle atrophy and impaired muscle function are associated with lower health-related quality of life, and greater disability and mortality risk in those with chronic kidney disease (CKD). However, the pathogenesis of skeletal dysfunction in CKD is unknown. We used a slow progressing, naturally occurring, CKD rat model (Cy/+ rat) with hormonal abnormalities consistent with clinical presentations of CKD to study skeletal muscle signaling. The CKD rats demonstrated augmented skeletal muscle regeneration with higher activation and differentiation signals in muscle cells (i.e. lower Pax-7; higher MyoD and myogenin RNA expression). However, there was also higher expression of proteolytic markers (Atrogin-1 and MuRF-1) in CKD muscle relative to normal. CKD animals had higher indices of oxidative stress compared to normal, evident by elevated plasma levels of an oxidative stress marker, 8-hydroxy-2' -deoxyguanosine (8-OHdG), increased muscle expression of succinate dehydrogenase (SDH) and Nox4 and altered mitochondria morphology. Furthermore, we show significantly higher serum levels of myostatin and expression of myostatin in skeletal muscle of CKD animals compared to normal. Taken together, these data show aberrant regeneration and proteolytic signaling that is associated with oxidative stress and high levels of myostatin in the setting of CKD. These changes likely play a role in the compromised skeletal muscle function that exists in CKD.
url https://doi.org/10.1371/journal.pone.0159411
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