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1.
Nat Commun ; 10(1): 4412, 2019 09 27.
Article in English | MEDLINE | ID: mdl-31562304

ABSTRACT

The vanadium redox flow battery is considered one of the most promising candidates for use in large-scale energy storage systems. However, its commercialization has been hindered due to the high manufacturing cost of the vanadium electrolyte, which is currently prepared using a costly electrolysis method with limited productivity. In this work, we present a simpler method for chemical production of impurity-free V3.5+ electrolyte by utilizing formic acid as a reducing agent and Pt/C as a catalyst. With the catalytic reduction of V4+ electrolyte, a high quality V3.5+ electrolyte was successfully produced and excellent cell performance was achieved. Based on the result, a prototype catalytic reactor employing Pt/C-decorated carbon felt was designed, and high-speed, continuous production of V3.5+ electrolyte in this manner was demonstrated with the reactor. This invention offers a simple but practical strategy to reduce the production cost of V3.5+ electrolyte while retaining quality that is adequate for high-performance operations.

2.
Toxicol Appl Pharmacol ; 287(1): 77-85, 2015 Aug 15.
Article in English | MEDLINE | ID: mdl-26028482

ABSTRACT

The chalcone compound isosalipurposide (ISPP) has been successfully isolated from the native Korean plant species Corylopsis coreana Uyeki (Korean winter hazel). However, the therapeutic efficacy of ISPP remains poorly understood. This study investigated whether ISPP has the capacity to activate NF-E2-related factor (Nrf2)-antioxidant response element (ARE) signaling and induce its target gene expression, and to determined the protective role of ISPP against oxidative injury of hepatocytes. In HepG2 cells, nuclear translocation of Nrf2 is augmented by ISPP treatment. Consistently, ISPP increased ARE reporter gene activity and the protein levels of glutamate cysteine ligase (GCL) and hemeoxygenase (HO-1), resulting in increased intracellular glutathione levels. Cells pretreated with ISPP were rescued from tert-butylhydroperoxide-induced reactive oxygen species (ROS) production and glutathione depletion and consequently, apoptotic cell death. Moreover, ISPP ameliorated the mitochondrial dysfunction and apoptosis induced by rotenone which is an inhibitor of complex 1 of the mitochondrial respiratory chain. The specific role of Nrf2 activation by ISPP was demonstrated using an ARE-deletion mutant plasmid and Nrf2-knockout cells. Finally, we observed that extracellular signal-regulated kinase (ERK) and AMP-activated protein kinase (AMPK), but not protein kinase C (PKC)-δ or other mitogen-activated protein kinases (MAPKs), are involved in the activation of Nrf2 by ISPP. Taken together, our results demonstrate that ISPP has a cytoprotective effect against oxidative damage mediated through Nrf2 activation and induction of its target gene expression in hepatocytes.


Subject(s)
Antioxidants/pharmacology , Chalcones/pharmacology , Hepatocytes/drug effects , NF-E2-Related Factor 2/agonists , Oxidative Stress/drug effects , AMP-Activated Protein Kinases/metabolism , Animals , Antioxidant Response Elements , Cell Survival/drug effects , Cytoprotection , Dose-Response Relationship, Drug , Extracellular Signal-Regulated MAP Kinases/metabolism , Gene Expression Regulation , Hep G2 Cells , Hepatocytes/metabolism , Hepatocytes/pathology , Humans , Mice, Inbred ICR , Mitochondria, Liver/drug effects , Mitochondria, Liver/metabolism , NF-E2-Related Factor 2/genetics , NF-E2-Related Factor 2/metabolism , Phosphorylation , Signal Transduction/drug effects , Transfection
3.
J Ginseng Res ; 39(2): 105-15, 2015 Apr.
Article in English | MEDLINE | ID: mdl-26045683

ABSTRACT

BACKGROUND: Alcoholic steatosis is the earliest and most common liver disease, and may precede the onset of more severe forms of liver injury. METHODS: The effect of Korean Red Ginseng extract (RGE) was tested in two murine models of ethanol (EtOH)-feeding and EtOH-treated hepatocytes. RESULTS: Blood biochemistry analysis demonstrated that RGE treatment improved liver function. Histopathology and measurement of hepatic triglyceride content verified the ability of RGE to inhibit fat accumulation. Consistent with this, RGE administration downregulated hepatic lipogenic gene induction and restored hepatic lipolytic gene repression by EtOH. The role of oxidative stress in the pathogenesis of alcoholic liver diseases is well established. Treatment with RGE attenuated EtOH-induced cytochrome P450 2E1, 4-hydroxynonenal, and nitrotyrosine levels. Alcohol consumption also decreased phosphorylation of adenosine monophosphate-activated protein kinase, which was restored by RGE. Moreover, RGE markedly inhibited fat accumulation in EtOH-treated hepatocytes, which correlated with a decrease in sterol regulatory element-binding protein-1 and a commensurate increase in sirtuin 1 and peroxisome proliferator-activated receptor-α expression. Interestingly, the ginsenosides Rb2 and Rd, but not Rb1, significantly inhibited fat accumulation in hepatocytes. CONCLUSION: These results demonstrate that RGE and its ginsenoside components inhibit alcoholic steatosis and liver injury by adenosine monophosphate-activated protein kinase/sirtuin 1 activation both in vivo and in vitro, suggesting that RGE may have a potential to treat alcoholic liver disease.

4.
Arch Pharm Res ; 38(5): 725-33, 2015.
Article in English | MEDLINE | ID: mdl-25052955

ABSTRACT

Cytochrome P450 (CYP) is an important enzyme that can act on xenobiotic substances such as toxic chemicals or drugs. Phenobarbital (PB) has been widely used to induce CYP2B activity to investigate the drug-drug interaction of CYP2B substrate drugs. Leelamine is a diterpene compound, and is the current focus of efforts to develop a treatment for diabetes. In this study, we identified the selective and potent inductive effect of leelamine on CYP2B at doses of 5, 10, or 20 mg/kg in male ICR mice for 1 or 3 days. In liver, the activity of CYP2B significantly increased 3.6-fold after treatment with leelamine, compared to vehicle-treated group. Activities of benzyloxyresorufin O-dealkylase and pentoxyresorufin O-dealkylase significantly increased 6.3- and 5.3-fold, respectively, with a single treatment of 20 mg/kg leelamine for 1 day. Furthermore, immunoblot analysis showed that significantly and dose-dependently increased CYP2B10 protein levels in liver. However, PCR results showed that there were no significant changes in the CAR and CYP2B mRNA levels after leelamine treatment. Accordingly, we suggest that leelamine is a novel substitute of PB for the selective induction of CYP2B activity in vivo.


Subject(s)
Cytochrome P-450 CYP2B1/biosynthesis , Diterpenes/chemistry , Diterpenes/pharmacology , Liver/drug effects , Liver/enzymology , Animals , Body Weight/drug effects , Body Weight/physiology , Cytochrome P-450 Enzyme Inducers/chemistry , Cytochrome P-450 Enzyme Inducers/pharmacology , Dose-Response Relationship, Drug , Enzyme Activation/drug effects , Enzyme Activation/physiology , Enzyme Induction/drug effects , Enzyme Induction/physiology , Male , Mice , Mice, Inbred ICR
5.
Toxicol Appl Pharmacol ; 280(2): 314-22, 2014 Oct 15.
Article in English | MEDLINE | ID: mdl-25151220

ABSTRACT

Methylglyoxal is found in high levels in the blood and other tissues of diabetic patients and exerts deleterious effects on cells and tissues. Previously, we reported that resveratrol, a polyphenol in grapes, induced the expression of Sestrin2 (SESN2), a novel antioxidant protein, and inhibited hepatic lipogenesis. This study investigated whether resveratrol protects cells from the methylglyoxal-induced toxicity via SESN2 induction. Methylglyoxal significantly induced cell death in HepG2 cells. However, cells pretreated with resveratrol were rescued from methylglyoxal-induced apoptosis. Resveratrol attenuated glutathione (GSH) depletion and ROS production promoted by methylglyoxal. Moreover, mitochondrial damage was observed by methylglyoxal treatment, but resveratrol restored mitochondrial function, as evidenced by the observed lack of mitochondrial permeability transition and increased ADP/ATP ratio. Resveratrol treatment inhibited SESN2 depletion elicited by methylglyoxal. SESN2 overexpression repressed methylglyoxal-induced mitochondrial dysfunction and apoptosis. Likewise, rotenone-induced cytotoxicity was not observed in SESN2 overexpressed cells. Furthermore, siRNA knockdown of SESN2 reduced the ability of resveratrol to prevent methylglyoxal-induced mitochondrial permeability transition. In addition, when mice were exposed to methylglyoxal after infection of Ad-SESN2, the plasma levels of alanine aminotransferase (ALT) and aspartate aminotransferase (AST) and GSH depletion by methylglyoxal in liver was reduced in Ad-SESN2 infected mice. Our results demonstrated that resveratrol is capable of protecting cells from methylglyoxal-induced mitochondrial dysfunction and oxidative stress via SESN2 induction.


Subject(s)
Apoptosis/drug effects , Mitochondria/drug effects , Nuclear Proteins/physiology , Pyruvaldehyde/toxicity , Stilbenes/pharmacology , Adenoviridae/genetics , Animals , Glycation End Products, Advanced/metabolism , Hep G2 Cells , Humans , Male , Mice , Mice, Inbred ICR , Mitochondria/physiology , Nuclear Proteins/genetics , Reactive Oxygen Species/metabolism , Resveratrol
6.
Toxicol Res ; 30(1): 19-25, 2014 Mar.
Article in English | MEDLINE | ID: mdl-24795795

ABSTRACT

Licochalcone (LC), a major phenolic retrochalcone from licorice, has anti-inflammatory activity. This study investigated the effects of licochalcone A (LCA) and licochalcone E (LCE) on Liver X receptor-α (LXRα)-mediated lipogenic gene expression and the molecular mechanisms underlying those effects. LCA and LCE antagonized the ability of LXRα agonists (T0901317 or GW3965) to increase sterol regulatory element binding protein-1c (SREBP-1c) expression and thereby inhibited target gene expression (e.g., FAS and ACC) in HepG2 cells. Moreover, treatment with LCA and LCE impaired LXRα/RXRα-induced CYP7A1-LXRE-luciferase (CYP7A1) transactivation. The AMPK-Sirt1 signaling pathway is an important regulator of energy metabolism and, therefore, a potential therapeutic target for metabolic diseases, including hepatic steatosis. We found here that LCE increased AMPK phosphorylation and Sirt1 expression. We conclude that LC inhibits SREBP-1c-mediated hepatic lipogenesis via activation of the AMPK/Sirt1 signaling pathway.

7.
Toxicol Appl Pharmacol ; 274(2): 293-301, 2014 Jan 15.
Article in English | MEDLINE | ID: mdl-24211276

ABSTRACT

Isorhamentin is a 3'-O-methylated metabolite of quercetin, and has been reported to have anti-inflammatory and anti-proliferative effects. However, the effects of isorhamnetin on Nrf2 activation and on the expressions of its downstream genes in hepatocytes have not been elucidated. Here, we investigated whether isorhamnetin has the ability to activate Nrf2 and induce phase II antioxidant enzyme expression, and to determine the protective role of isorhamnetin on oxidative injury in hepatocytes. In HepG2 cells, isorhamnetin increased the nuclear translocation of Nrf2 in a dose- and time-dependent manner, and consistently, increased antioxidant response element (ARE) reporter gene activity and the protein levels of hemeoxygenase (HO-1) and of glutamate cysteine ligase (GCL), which resulted in intracellular GSH level increases. The specific role of Nrf2 in isorhamnetin-induced Nrf2 target gene expression was verified using an ARE-deletion mutant plasmid and Nrf2-knockout MEF cells. Deletion of the ARE in the promoter region of the sestrin2 gene, which is recently identified as the Nrf2 target gene by us, abolished the ability of isorhamnetin to increase luciferase activity. In addition, Nrf2 deficiency completely blocked the ability of isorhamnetin to induce HO-1 and GCL. Furthermore, isorhamnetin pretreatment blocked t-BHP-induced ROS production and reversed GSH depletion by t-BHP and consequently, due to reduced ROS levels, decreased t-BHP-induced cell death. In addition isorhamnetin increased ERK1/2, PKCδ and AMPK phosphorylation. Finally, we showed that Nrf2 deficiency blocked the ability of isorhamnetin to protect cells from injury induced by t-BHP. Taken together, our results demonstrate that isorhamnetin is efficacious in protecting hepatocytes against oxidative stress by Nrf2 activation and in inducing the expressions of its downstream genes.


Subject(s)
Anti-Inflammatory Agents/pharmacology , NF-E2-Related Factor 2/metabolism , Oxidative Stress/drug effects , Quercetin/analogs & derivatives , AMP-Activated Protein Kinases/genetics , AMP-Activated Protein Kinases/metabolism , Antioxidant Response Elements/drug effects , Antioxidants/pharmacology , Cell Proliferation/drug effects , Cell Survival/drug effects , Glutamate-Cysteine Ligase/genetics , Glutamate-Cysteine Ligase/metabolism , Glutathione/metabolism , Heme Oxygenase-1/genetics , Heme Oxygenase-1/metabolism , Hep G2 Cells , Hepatocytes/drug effects , Hepatocytes/metabolism , Humans , MAP Kinase Signaling System/drug effects , NF-E2-Related Factor 2/genetics , Phosphorylation , Protein Kinase C-delta/genetics , Protein Kinase C-delta/metabolism , Quercetin/pharmacology , tert-Butylhydroperoxide/toxicity
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