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Bark Constituents from Mushroom-detoxifiedRhus vernicifluaSuppress Kainic Acid-induced Neuronal Cell Death in Mouse Hippocampus
Author(s) -
Jong-Seon Byun,
Yoon Hee Han,
Sung Jun Hong,
Sung Mi Hwang,
Yong-Soo Kwon,
Hee Jae Lee,
SungSoo Kim,
Myong Jo Kim,
Wanjoo Chun
Publication year - 2010
Publication title -
korean journal of physiology and pharmacology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.514
H-Index - 29
eISSN - 2093-3827
pISSN - 1226-4512
DOI - 10.4196/kjpp.2010.14.5.279
Subject(s) - neuroprotection , excitotoxicity , kainic acid , chemistry , pharmacology , mushroom , bark (sound) , programmed cell death , apoptosis , hippocampus , biochemistry , traditional medicine , medicine , glutamate receptor , biology , food science , receptor , ecology
Urushinol, a plant allergen, has significantly restricted the medical application of Rhus verniciflua, although it has been reported to possess a wide variety of biological activities such as anti-inflammatory, antioxidant, and anti-cancer actions. To reduce the urushinol content while maintaining the beneficial biological activities, mushroom-mediated fermentation of Rhus verniciflua was carried out and this method resulted in significantly attenuated allergenicity [1]. In the present study, to examine the neuroprotective properties of mushroom-fermented stem bark of Rhus verniciflua, two constituents were isolated from mushroom-fermented bark and their neuroprotective properties were examined in a mouse model of kainic acid (KA)-induced excitotoxicity. KA resulted in significant apoptotic neuronal cell death in the CA3 region of mouse hippocampus. However, seven daily administrations of RVH-1 or RVH-2 prior to KA injection significantly attenuated KA-induced pyramidal neuronal cell death in the CA3 region. Furthermore, pretreatment with RVH-1 and RVH-2 also suppressed KA-induced microglial activation in the mouse hippocampus. The present study demonstrates that RVH-1 and RVH-2 isolated from Rhus verniciflua and detoxified using mushroom species possess neuroprotective properties against KA-induced excitotoxicity. This leads to the possibility that detoxified Rhus verniciflua can be a valuable asset in herbal medicine.

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