Planta Med 2008; 74(4): 377-380
DOI: 10.1055/s-2008-1034319
Pharmacology
Original Paper
© Georg Thieme Verlag KG Stuttgart · New York

Effect of Glabridin from Glycyrrhiza glabra on Learning and Memory in Mice

Yong-Ming Cui1 , Ming-Zhang Ao1 , Wei Li1 , Long-Jiang Yu
  • 1College of Life Science and Technology, Institute of Resource Biology and Biotechnology, Huazhong University of Science & Technology, Wuhan, P. R. China
Further Information

Publication History

Received: September 21, 2007 Revised: January 22, 2008

Accepted: January 23, 2008

Publication Date:
07 March 2008 (online)

Abstract

Glabridin was isolated from the roots of Glycyrrhiza glabra and its effects on cognitive functions and cholinesterase activity were investigated in mice. Glabridin (1, 2 and 4 mg kg-1, p. o.) and piracetam (400 mg kg-1, i. p.), a clinically used nootropic agent, were administered daily for 3 successive days to different groups of mice. The higher doses (2 and 4 mg kg-1, p. o.) of glabridin and piracetam significantly antagonized the amnesia induced by scopolamine (0.5 mg kg-1, i. p.) in both the elevated plus maze test and passive avoidance test. Furthermore, glabridin (2 and 4 mg kg-1, p. o.) and metrifonate (50 mg kg-1, i. p.), used as a standard drug, both remarkably reduced the brain cholinesterase activity in mice compared to the control group. Therefore, glabridin appears to be a promising candidate for memory improvement and it will be worthwhile to explore the potential of glabridin in the management of Alzheimer patients.

References

  • 1 Haraguchi H, Yoshida N, Ishikawa H, Tamura Y, Mizutani K, Kinoshita T. Protection of mitochondrial functions against oxidative stresses by isoflavans from Glycyrrhiza glabra. .  J Pharm Pharmacol. 2000;  52 219-23
  • 2 Fukai T, Marumo A, Kaitou K, Kanda T, Terada S, Nomura T. Anti-Helicobacter pylori flavonoids from licorice extract.  Life Sci. 2002;  71 1449-63
  • 3 Somjen D, Knoll E, Vaya J, Stern N, Tamir S. Estrogen-like activity of licorice root constituents: glabridin and glabrene, in vascular tissues in vitro and in vivo. .  J Steroid Biochem. 2004;  91 147-55
  • 4 Yokota T, Nishio H, Kubota Y, Mizoguchi M. The inhibitory effect of glabridin from liquorice extracts on melanogenesis and inflammation.  Pigm Cell Res. 1998;  11 355-61
  • 5 Dhingra D, Parle M, Kulkarni S K. Memory enhancing activity of Glycyrrhiza glabra in mice.  J Ethnopharmacol. 2004;  91 361-5
  • 6 Parle M, Dhingra D, Kulkarni S K. Memory-strengthening activity of Glycyrrhiza glabra in exteroceptive and interoceptive behavioral models.  J Med Food. 2004;  7 462-6
  • 7 Vaya J, Belinky P A, Aviram M. Antioxidant constituents from licorice roots: isolation, structure elucidation and antioxidative capacity toward LDL oxidation.  Free Radic Biol Med. 1997;  23 302-13
  • 8 Parle M, Dhingra D. Ascorbic acid: a promising memory-enhancer in mice.  J Pharmacol Sci. 2003;  93 129-35
  • 9 Dhingra D, Parle M, Kulkarni S K. Comparative brain cholinesterase inhibiting activity of Glycyrrhiza glabra, Myristica fragrans, ascorbic acid and metrifonate in mice.  J Med Food. 2006;  9 281-3
  • 10 Itoh J, Nabeshima T, Kameyama T. Utility of an elevated plus maze for evaluation of nootripics, scopolamine and electroconvulsive shock.  Psychopharmacology. 1990;  101 27-33
  • 11 Ghelardini C, Galeotti N, Barboloni A, Furukawa S. Memory facilitation and stimulation of endogenous nerve growth factor synthesis by the acetylcholine releaser PG-9.  J Pharmacol. 1998;  78 245-51
  • 12 Bhattacharya S K, Upadhyay S N, Jaiswal A K. Effect of piracetam on electroshock induced amnesia and decrease in brain acetylcholine in rats.  Indian J Exp Biol. 1993;  31 822-4
  • 13 Vasudevan M, Parle M. Pharmacological actions of Thespesia populnea relevant to Alzheimer's disease.  Phytomedicine. 2006;  13 677-87
  • 14 Rao S K, Andrade C, Reddy K, Madappa K N, Thyagarajan S, Chandra S. Memory protective effect of indomethacin against electroconvulsive shockinduced retrograde amnesia in rats.  Biol Psychiatry. 2002;  51 770-3
  • 15 Rogers E J, Milhalik S, Shea T B. Apple juice prevents oxidative stress and impaired cognitive performance caused by genetic and dietary deficiencies in mice.  J Nutr Health Aging. 2003;  7 1-6
  • 16 Butterfield D A, Lauderback C M. Lipid peroxidation and protein oxidation in Alzheimer's disease: potential causes and consequences involving amyloid-beta peptideassociated free radical oxidative stress.  Free Radic Biol Med. 2002;  32 1050-60
  • 17 Sayre L M, Zagorski M G, Surewicz W K, Krafft G A, Perry G. Mechanisms of neurotoxicity associated with amyloid beta deposition and the role of free radicals in the pathogenesis of Alzheimer's disease: a critical appraisal.  Chem Res Toxicol. 1997;  336 1216-22
  • 18 Bickford P C, Gould T, Briederick L, Chadman K, Polloch A, Young D. et al . Antioxidants-rich diets improve cerebrellar physiology and motor learning in aged rats.  Brain Res. 2000;  886 211-7
  • 19 Rosenblat M, Belinky P, Vaya J, Levy R, Hayek T, Coleman R. et al . Macrophage enrichment with the isoflavan glabridin inhibits NADPH oxidase-induced cell-mediated oxidation of low density lipoprotein.  J Biol Chem. 1999;  274 790-801

Prof. Dr. Long-Jiang Yu

College of Life Science and Technology

Institute of Resource Biology and Biotechnology, Huazhong University of Science & Technology

Wuhan 430074

People's Republic of China

Phone: +86-27-8779-2264

Fax: +86-27-8779-2265

Email: yulj@hust.edu.cn

Email: cym@smail.hust.edu.cn

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