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Targeting HO-1 by Epigallocatechin-3-Gallate Reduces Contrast-Induced Renal Injury via Anti-Oxidative Stress and Anti-Inflammation Pathways
by
Wang, Yongbin
, Gao, Zhao
, Hu, Yunhui
, Chen, Xiongwen
, Han, Yu
, Zhang, Xiaoqun
, Zou, Xue
, Zeng, Chunyu
, Fu, Jinjuan
, Wu, Xiaoyan
, Lu, Xi
, Zhang, Jun
, Jose, Pedro A.
in
Animals
/ Antioxidants
/ Antioxidants (Nutrients)
/ Antioxidants - chemistry
/ Antioxidants - metabolism
/ Apoptosis
/ Biology and Life Sciences
/ Cardiology
/ Carrier Proteins - metabolism
/ Carrier Proteins - physiology
/ Catechin
/ Catechin - analogs & derivatives
/ Catechin - chemistry
/ Catechin - pharmacology
/ Contrast Media - adverse effects
/ Contrast Media - chemistry
/ Creatinine
/ Down-Regulation
/ Epigallocatechin gallate
/ Epigallocatechin-3-gallate
/ Green tea
/ Health sciences
/ Heme
/ Heme oxygenase (decyclizing)
/ Heme Oxygenase (Decyclizing) - metabolism
/ Hospitals
/ Hypertension
/ Hypoxia
/ IL-1β
/ Immunotherapy
/ In Situ Nick-End Labeling
/ Inflammasomes
/ Inflammasomes - metabolism
/ Inflammation
/ Inflammation - metabolism
/ Injury prevention
/ Intravenous administration
/ Ischemia
/ Kidney - metabolism
/ Kidney diseases
/ Kidney Diseases - chemically induced
/ Kidney Diseases - drug therapy
/ Kidneys
/ Laboratories
/ Male
/ Malondialdehyde
/ Medicine and Health Sciences
/ Microscopy, Fluorescence
/ Nephropathy
/ NLR Family, Pyrin Domain-Containing 3 Protein
/ Oxidative Stress
/ Oxygenase
/ Pathogenesis
/ Peroxidase
/ Polyclonal antibodies
/ Polyphenols
/ Proteins
/ Protoporphyrin
/ Protoporphyrin IX
/ Protoporphyrins - pharmacology
/ Rats
/ Rats, Sprague-Dawley
/ Research and Analysis Methods
/ Rodents
/ Signal Transduction
/ Superoxide dismutase
/ Tea
/ Time Factors
/ Up-Regulation
/ Upstream
/ Urea
/ Zinc
2016
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Targeting HO-1 by Epigallocatechin-3-Gallate Reduces Contrast-Induced Renal Injury via Anti-Oxidative Stress and Anti-Inflammation Pathways
by
Wang, Yongbin
, Gao, Zhao
, Hu, Yunhui
, Chen, Xiongwen
, Han, Yu
, Zhang, Xiaoqun
, Zou, Xue
, Zeng, Chunyu
, Fu, Jinjuan
, Wu, Xiaoyan
, Lu, Xi
, Zhang, Jun
, Jose, Pedro A.
in
Animals
/ Antioxidants
/ Antioxidants (Nutrients)
/ Antioxidants - chemistry
/ Antioxidants - metabolism
/ Apoptosis
/ Biology and Life Sciences
/ Cardiology
/ Carrier Proteins - metabolism
/ Carrier Proteins - physiology
/ Catechin
/ Catechin - analogs & derivatives
/ Catechin - chemistry
/ Catechin - pharmacology
/ Contrast Media - adverse effects
/ Contrast Media - chemistry
/ Creatinine
/ Down-Regulation
/ Epigallocatechin gallate
/ Epigallocatechin-3-gallate
/ Green tea
/ Health sciences
/ Heme
/ Heme oxygenase (decyclizing)
/ Heme Oxygenase (Decyclizing) - metabolism
/ Hospitals
/ Hypertension
/ Hypoxia
/ IL-1β
/ Immunotherapy
/ In Situ Nick-End Labeling
/ Inflammasomes
/ Inflammasomes - metabolism
/ Inflammation
/ Inflammation - metabolism
/ Injury prevention
/ Intravenous administration
/ Ischemia
/ Kidney - metabolism
/ Kidney diseases
/ Kidney Diseases - chemically induced
/ Kidney Diseases - drug therapy
/ Kidneys
/ Laboratories
/ Male
/ Malondialdehyde
/ Medicine and Health Sciences
/ Microscopy, Fluorescence
/ Nephropathy
/ NLR Family, Pyrin Domain-Containing 3 Protein
/ Oxidative Stress
/ Oxygenase
/ Pathogenesis
/ Peroxidase
/ Polyclonal antibodies
/ Polyphenols
/ Proteins
/ Protoporphyrin
/ Protoporphyrin IX
/ Protoporphyrins - pharmacology
/ Rats
/ Rats, Sprague-Dawley
/ Research and Analysis Methods
/ Rodents
/ Signal Transduction
/ Superoxide dismutase
/ Tea
/ Time Factors
/ Up-Regulation
/ Upstream
/ Urea
/ Zinc
2016
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Targeting HO-1 by Epigallocatechin-3-Gallate Reduces Contrast-Induced Renal Injury via Anti-Oxidative Stress and Anti-Inflammation Pathways
by
Wang, Yongbin
, Gao, Zhao
, Hu, Yunhui
, Chen, Xiongwen
, Han, Yu
, Zhang, Xiaoqun
, Zou, Xue
, Zeng, Chunyu
, Fu, Jinjuan
, Wu, Xiaoyan
, Lu, Xi
, Zhang, Jun
, Jose, Pedro A.
in
Animals
/ Antioxidants
/ Antioxidants (Nutrients)
/ Antioxidants - chemistry
/ Antioxidants - metabolism
/ Apoptosis
/ Biology and Life Sciences
/ Cardiology
/ Carrier Proteins - metabolism
/ Carrier Proteins - physiology
/ Catechin
/ Catechin - analogs & derivatives
/ Catechin - chemistry
/ Catechin - pharmacology
/ Contrast Media - adverse effects
/ Contrast Media - chemistry
/ Creatinine
/ Down-Regulation
/ Epigallocatechin gallate
/ Epigallocatechin-3-gallate
/ Green tea
/ Health sciences
/ Heme
/ Heme oxygenase (decyclizing)
/ Heme Oxygenase (Decyclizing) - metabolism
/ Hospitals
/ Hypertension
/ Hypoxia
/ IL-1β
/ Immunotherapy
/ In Situ Nick-End Labeling
/ Inflammasomes
/ Inflammasomes - metabolism
/ Inflammation
/ Inflammation - metabolism
/ Injury prevention
/ Intravenous administration
/ Ischemia
/ Kidney - metabolism
/ Kidney diseases
/ Kidney Diseases - chemically induced
/ Kidney Diseases - drug therapy
/ Kidneys
/ Laboratories
/ Male
/ Malondialdehyde
/ Medicine and Health Sciences
/ Microscopy, Fluorescence
/ Nephropathy
/ NLR Family, Pyrin Domain-Containing 3 Protein
/ Oxidative Stress
/ Oxygenase
/ Pathogenesis
/ Peroxidase
/ Polyclonal antibodies
/ Polyphenols
/ Proteins
/ Protoporphyrin
/ Protoporphyrin IX
/ Protoporphyrins - pharmacology
/ Rats
/ Rats, Sprague-Dawley
/ Research and Analysis Methods
/ Rodents
/ Signal Transduction
/ Superoxide dismutase
/ Tea
/ Time Factors
/ Up-Regulation
/ Upstream
/ Urea
/ Zinc
2016
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Targeting HO-1 by Epigallocatechin-3-Gallate Reduces Contrast-Induced Renal Injury via Anti-Oxidative Stress and Anti-Inflammation Pathways
Journal Article
Targeting HO-1 by Epigallocatechin-3-Gallate Reduces Contrast-Induced Renal Injury via Anti-Oxidative Stress and Anti-Inflammation Pathways
2016
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Overview
Both oxidative stress and inflammation are involved in the pathogenesis of contrast-induced nephropathy (CIN). Epigallocatechin-3-gallate (EGCG), a purified catechin from green tea, has antioxidant and anti-inflammatory effects. However, it is unknown whether or not EGCG is effective in treating CIN. Our present study found that intravenous administration of EGCG, either before or just after the establishment of CIN, had a protective effect, determined by normalization of serum creatinine and blood urea nitrogen levels, improvement in renal histopathological scoring and alleviation of apoptosis, accompanied by decreased oxidative stress and inflammation. Because EGCG is a potent inducer of the antioxidant heme oxygenase-1 (HO-1), we studied HO-1 signaling in CIN. HO-1 levels were increased in CIN; treatment with EGCG further increased HO-1 levels, accompanied by an increase in Nrf2, a regulator of antioxidant proteins. Interestingly, blockade of HO-1 with protoporphyrin IX zinc(II) (ZnPP) prevented the protective effect of EGCG on CIN. ZnPP also blocked the ability of EGCG to increase the activity of an antioxidant (superoxide dismutase), and decrease markers of oxidative stress (myeloperoxidase and malondialdehyde) and inflammation (myeloperoxidase and IL-1β), indicating that HO-1 is the upstream molecule that regulates the EGCG-mediated protection. To determine further the role of HO-1 on the EGCG-mediated inhibition of inflammation, we studied the effect of EGCG on the NLRP3 inflammasome, an upstream signaling of IL-1β. EGCG down-regulated NLRP3 expression, which was blocked by ZnPP, indicating that HO-1 links EGCG with NLRP3. Therefore, EGCG, via up-regulation of HO-1, protects against CIN by amelioration of oxidative stress and inflammation.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Carrier Proteins - metabolism
/ Carrier Proteins - physiology
/ Catechin
/ Catechin - analogs & derivatives
/ Contrast Media - adverse effects
/ Heme
/ Heme oxygenase (decyclizing)
/ Heme Oxygenase (Decyclizing) - metabolism
/ Hypoxia
/ IL-1β
/ Ischemia
/ Kidney Diseases - chemically induced
/ Kidney Diseases - drug therapy
/ Kidneys
/ Male
/ Medicine and Health Sciences
/ NLR Family, Pyrin Domain-Containing 3 Protein
/ Proteins
/ Protoporphyrins - pharmacology
/ Rats
/ Research and Analysis Methods
/ Rodents
/ Tea
/ Upstream
/ Urea
/ Zinc
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