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http://dx.doi.org/10.15188/kjopp.2015.02.29.1.18

Akebiae Caulis Inhibits Oxidative Stress through AM PK Activation  

Jung, Eun Hye (Medical Research Center (MRC-GHF), College of Korean Medicine, Department of Herbal Formula, Daegu Haany University)
Kim, Sang Chan (Medical Research Center (MRC-GHF), College of Korean Medicine, Department of Herbal Formula, Daegu Haany University)
Cho, Il Je (Medical Research Center (MRC-GHF), College of Korean Medicine, Department of Herbal Formula, Daegu Haany University)
Kim, Young Woo (Medical Research Center (MRC-GHF), College of Korean Medicine, Department of Herbal Formula, Daegu Haany University)
Publication Information
Journal of Physiology & Pathology in Korean Medicine / v.29, no.1, 2015 , pp. 18-26 More about this Journal
Abstract
Akebiae Caulis is a galenical originated from Akebia quinata Decaisne species. It is commonly used in the treatment of oposiuria, inflammation, nociceptive and fever. Here, we investigated the effect of Akebiae Caulis extract (ACE) to protect hepatocyte against the malfunction of mitochondria and apoptosis. Arachidonic acid (AA)+iron promoted excessive reactive oxygen species (ROS) production and exerted a deleterious effect on mitochondria. Treatment with ACE protected hepatocytes from AA+iron-induced cytotoxicity, as shown by alterations in the protein levels related with apoptosis such as poly(ADP-ribose) polymerase, pro-caspase 3, Bcl-XL and Bcl-2. Moreover, AA+iron-induced $H_2O_2$ production, GSH depletion and mitochondrial dysfunction were alleviated by ACE pretreatment. As a potential molecular mechanism for the ACE-mediated cytoprotection, phosphorylation of AMP-activated protein kinase (AMPK), a key regulator in determining cell survival or death, was increased by ACE. Moreover, ACE treatment enhanced inactive phosphorylation of glycogen synthase kinase-$3{\beta}$ ($GSK3{\beta}$), downstream substrate kinase of AMPK. More importantly, ACE prevented a decrease in the $GSK3{\beta}$ phosphorylation derived by AA+iron, which might contribute to mitohondiral protection and cell survival. To further identify essential compounds in Akebiae Caulis for the protection of AA+iron-mediated cytotoxicity, we found that betulin in combination with hederagenin protected from AA+iron-induced mitochondrial dysfunction. Betulin+hederagenin treatment also increased inactive phosphorylation of $GSK3{\beta}$ in common with ACE. These results suggest that ACE protected hepatocytes against oxidative stress and mitochondrial dysfunction, which is mediated with inactive $GSK3{\beta}$ phosphorylation downstream of AMPK.
Keywords
Akebiae caulis; $GSK3{\beta}$; AMPK; arachidonic acid; iron;
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Times Cited By KSCI : 8  (Citation Analysis)
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