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Circadian changes of pharmacological effects of red ginseng saponins in mice

  
@article{APS8557,
	author = {Jing-Cai Li and Qian-Juan Zheng and Chun-Hua Jin and Ru-Meng Ma},
	title = {Circadian changes of pharmacological effects of red ginseng saponins in mice},
	journal = {Acta Pharmacologica Sinica},
	volume = {9},
	number = {1},
	year = {2016},
	keywords = {},
	abstract = {Pharmacological effects of the saponins extracted from root of Panax ginseng C. A. Meyer (Chinese red  ginseng;  GS) were studied with adult male mice standardized to 12h of light (from 07:30 to 19 : 30)   alternating with 12 h of darkness. Functional activities were assessed every 4 h within 24 h. The levels  of serum  corticosterone,  5-HT and 5-hydroxyindoleacetic acid (5-HIAA) in the whole brain as well as the contents of glycogen. glucose, DNA, RNA and protein in the liver exhibited circadian variations. After administration of GS at the dose of 70 mg/kg  (ip)  to  mice the serum corticosterone rose dramatically from 73 + 17 to 518 + 71 yg/L at the beginning of light span (peak) but it only increased 88 vg/L at the beginning of  dark span (trough). ip administration of GS (100 mg/kg)  accelerated  the  syntheses  of DNA, RNA and protein, had no effect to glucose, but depleted the content of glycogen in the liver. Circadian patterns of hepatic DNA, RNA and glycogen almost paralled to that  of  control  mice. The maximal and significant changes from control levels of glycogen DNA, RNA or protein occurred at  12 :00,  16 : 00.  00:00,  or  20 :00,   respectively. Ip treatment with GS 200 mg/kg to mice increased the level of 5-HT which had a circadian pattern approximatly similar to that of serum corticosterone; it increased the level of 5-HIAA at 08:00 and 16:00 but decreased at 20:00. To conclude, the pharmacological effects of GS showed a circadian stage-dependent changes, and the range of those changes may be related to the control levels in many cases.},
	issn = {1745-7254},	url = {http://www.chinaphar.com/article/view/8557}
}