Kim_2017_Biol.Pharm.Bull_40_932

Reference

Title : 2,4-Bis(1,1-dimethylethyl)phenol from Cinnamomum loureirii Improves Cognitive Deficit, Cholinergic Dysfunction, and Oxidative Damage in TMT-Treated Mice - Kim_2017_Biol.Pharm.Bull_40_932
Author(s) : Kim CR , Choi SJ , Kim JK , Park CK , Gim MC , Kim YJ , Park GG , Shin DH
Ref : Biol Pharm Bull , 40 :932 , 2017
Abstract :

We previously reported that the extract of Cinnamomum loureirii (C. loureirii) significantly inhibited acetylcholinesterase (AChE), and identified 2,4-bis(1,1-dimethylethyl)phenol (BP) from C. loureirii as a potential AChE inhibitor. The present study, therefore was undertaken to demonstrate the effects of BP from C. loureirii on learning and memory impairment in trimethyltin (TMT)-treated ICR mice. Y-maze and passive avoidance tests were used to test cognitive ability. Further, changes in biochemical parameters in the brain tissue were also assessed in response to TMT injection and BP intervention. BP pre-administration (20, 40 mg/kg/d) in mice significantly protected cognitive dysfunction induced by TMT (p<0.05). Moreover, BP reduced AChE activity and lipid peroxidation but increased acetylcholine levels in the brain. In conclusion, we suggested that BP protected against TMT-induced cognitive dysfunction, and might be a potential agent for alleviating symptoms of neurodegenerative disorders, such as Alzheimer's disease, via modulating cholinergic functions.

PubMedSearch : Kim_2017_Biol.Pharm.Bull_40_932
PubMedID: 28566637

Related information

Citations formats

Kim CR, Choi SJ, Kim JK, Park CK, Gim MC, Kim YJ, Park GG, Shin DH (2017)
2,4-Bis(1,1-dimethylethyl)phenol from Cinnamomum loureirii Improves Cognitive Deficit, Cholinergic Dysfunction, and Oxidative Damage in TMT-Treated Mice
Biol Pharm Bull 40 :932

Kim CR, Choi SJ, Kim JK, Park CK, Gim MC, Kim YJ, Park GG, Shin DH (2017)
Biol Pharm Bull 40 :932