Curcumin-Loaded Nanoparticles Protect Against Rhabdomyolysis-Induced Acute Kidney Injury

Background/Aims: Rhabdomyolysis (RM) is a potentially life-threatening condition that results from the breakdown of muscle and consequent release of toxic compounds into circulation. The most common and severe complication of RM is acute kidney injury (AKI). This study aimed to evaluate the efficacy...

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Main Authors: Xiaoling Chen, Jian Sun, Hailun Li, Hongwu Wang, Yongtao Lin, Yu Hu, Donghui Zheng
Format: Article
Language:English
Published: Cell Physiol Biochem Press GmbH & Co KG 2017-10-01
Series:Cellular Physiology and Biochemistry
Subjects:
Online Access:https://www.karger.com/Article/FullText/484233
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spelling doaj-3c69e45cbe4a4b00b022622962dfcd4a2020-11-24T21:29:02ZengCell Physiol Biochem Press GmbH & Co KGCellular Physiology and Biochemistry1015-89871421-97782017-10-014352143215410.1159/000484233484233Curcumin-Loaded Nanoparticles Protect Against Rhabdomyolysis-Induced Acute Kidney InjuryXiaoling ChenJian SunHailun LiHongwu WangYongtao LinYu HuDonghui ZhengBackground/Aims: Rhabdomyolysis (RM) is a potentially life-threatening condition that results from the breakdown of muscle and consequent release of toxic compounds into circulation. The most common and severe complication of RM is acute kidney injury (AKI). This study aimed to evaluate the efficacy and mechanisms of action of curcumin-loaded nanoparticles (Cur-NP) for treatment of RM-induced AKI. Methods: Curcumin-NP was synthesized using the nanocarrier distearoylphosphatidylethanolamine-polyethylene glycol (DSPE-PEG) to achieve a prolonged and constant drug release profile compared with the curcumin-free group. The anti-AKI effects of Curcumin-NP were examined both in vitro (myoglobin-treated renal tubular epithelial HK-2 cells) and in vivo (glycerol-induced AKI model). Results: Our results indicated that Curcumin-NP reversed oxidative stress, growth inhibition and cell apoptosis accompanied with down-regulation of apoptotic markers Caspase-3 and GRP-78 in vitro. In vivo studies revealed enhanced AKI treatment efficacy with Curcumin-NP as characterized by reduced serum creatine phosphokinase (CPK), creatinine (Cr) and urea and less severe histological damage in renal tubules. In addition, kidney tissues from Curcumin-NP-treated AKI rats exhibited reduced oxidative stress, apoptosis, and cleaved Capase-3 and GRP-78 expression. Conclusion: Our results suggest that nanoparticle-loaded curcumin enhances treatment efficacy for RM-induced AKI both in vitro and in vivo.https://www.karger.com/Article/FullText/484233Rhabdomyolysis (RM)Acute kidney injury (AKI)CurcuminAnti-oxidantNanoparticles
collection DOAJ
language English
format Article
sources DOAJ
author Xiaoling Chen
Jian Sun
Hailun Li
Hongwu Wang
Yongtao Lin
Yu Hu
Donghui Zheng
spellingShingle Xiaoling Chen
Jian Sun
Hailun Li
Hongwu Wang
Yongtao Lin
Yu Hu
Donghui Zheng
Curcumin-Loaded Nanoparticles Protect Against Rhabdomyolysis-Induced Acute Kidney Injury
Cellular Physiology and Biochemistry
Rhabdomyolysis (RM)
Acute kidney injury (AKI)
Curcumin
Anti-oxidant
Nanoparticles
author_facet Xiaoling Chen
Jian Sun
Hailun Li
Hongwu Wang
Yongtao Lin
Yu Hu
Donghui Zheng
author_sort Xiaoling Chen
title Curcumin-Loaded Nanoparticles Protect Against Rhabdomyolysis-Induced Acute Kidney Injury
title_short Curcumin-Loaded Nanoparticles Protect Against Rhabdomyolysis-Induced Acute Kidney Injury
title_full Curcumin-Loaded Nanoparticles Protect Against Rhabdomyolysis-Induced Acute Kidney Injury
title_fullStr Curcumin-Loaded Nanoparticles Protect Against Rhabdomyolysis-Induced Acute Kidney Injury
title_full_unstemmed Curcumin-Loaded Nanoparticles Protect Against Rhabdomyolysis-Induced Acute Kidney Injury
title_sort curcumin-loaded nanoparticles protect against rhabdomyolysis-induced acute kidney injury
publisher Cell Physiol Biochem Press GmbH & Co KG
series Cellular Physiology and Biochemistry
issn 1015-8987
1421-9778
publishDate 2017-10-01
description Background/Aims: Rhabdomyolysis (RM) is a potentially life-threatening condition that results from the breakdown of muscle and consequent release of toxic compounds into circulation. The most common and severe complication of RM is acute kidney injury (AKI). This study aimed to evaluate the efficacy and mechanisms of action of curcumin-loaded nanoparticles (Cur-NP) for treatment of RM-induced AKI. Methods: Curcumin-NP was synthesized using the nanocarrier distearoylphosphatidylethanolamine-polyethylene glycol (DSPE-PEG) to achieve a prolonged and constant drug release profile compared with the curcumin-free group. The anti-AKI effects of Curcumin-NP were examined both in vitro (myoglobin-treated renal tubular epithelial HK-2 cells) and in vivo (glycerol-induced AKI model). Results: Our results indicated that Curcumin-NP reversed oxidative stress, growth inhibition and cell apoptosis accompanied with down-regulation of apoptotic markers Caspase-3 and GRP-78 in vitro. In vivo studies revealed enhanced AKI treatment efficacy with Curcumin-NP as characterized by reduced serum creatine phosphokinase (CPK), creatinine (Cr) and urea and less severe histological damage in renal tubules. In addition, kidney tissues from Curcumin-NP-treated AKI rats exhibited reduced oxidative stress, apoptosis, and cleaved Capase-3 and GRP-78 expression. Conclusion: Our results suggest that nanoparticle-loaded curcumin enhances treatment efficacy for RM-induced AKI both in vitro and in vivo.
topic Rhabdomyolysis (RM)
Acute kidney injury (AKI)
Curcumin
Anti-oxidant
Nanoparticles
url https://www.karger.com/Article/FullText/484233
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AT hailunli curcuminloadednanoparticlesprotectagainstrhabdomyolysisinducedacutekidneyinjury
AT hongwuwang curcuminloadednanoparticlesprotectagainstrhabdomyolysisinducedacutekidneyinjury
AT yongtaolin curcuminloadednanoparticlesprotectagainstrhabdomyolysisinducedacutekidneyinjury
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AT donghuizheng curcuminloadednanoparticlesprotectagainstrhabdomyolysisinducedacutekidneyinjury
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