Zhang_2017_Oncotarget_8_49338

Reference

Title : Bushen-Yizhi formula ameliorates cognitive dysfunction through SIRT1\/ER stress pathway in SAMP8 mice - Zhang_2017_Oncotarget_8_49338
Author(s) : Zhang SJ , Xu TT , Li L , Xu YM , Qu ZL , Wang XC , Huang SQ , Luo Y , Luo NC , Lu P , Shi YF , Yang X , Wang Q
Ref : Oncotarget , 8 :49338 , 2017
Abstract :

The Chinese formula Bushen-Yizhi (BSYZ) has been reported to ameliorate cognitive dysfunction. However the mechanism is still unclear. In this study, we employ an aging model, SAMP8 mice, to explore whether BSYZ could protect dementia through SIRT1/endoplasmic reticulum (ER) stress pathway. Morris water maze and the fearing condition test results show that oral administration of BSYZ (1.46 g/kg/d, 2.92 g/kg/d and 5.84 g/kg/d) and donepezil (3 mg/kg/d) shorten the escape latency, increase the crossing times of the original position of the platform and the time spent in the target quadrant, and increase the freezing time. BSYZ decreases the activity of acetylcholinesterase (AChE), and increases the activity of choline acetyltransferase (ChAT) and the concentration of acetylcholine (Ach) in both hippocampus and cortex. In addition, western blot results (Bcl-2, Bax and Caspase-3) and TUNEL staining show that BSYZ prevents neuron from apoptosis, and elevates the expression of neurotrophic factors, including nerve growth factor (NGF), postsynapticdensity 95 (PSD95) and synaptophysin (SYN), in both hippocampus and cortex. BSYZ also increases the protein expression of SIRT1 and alleviates ER stress-associated proteins (PERK, IRE-1alpha, eIF-2alpha, BIP, PDI and CHOP). These results indicate that the neuroprotective mechanism of BSYZ might be related with SIRT1/ER stress pathway.

PubMedSearch : Zhang_2017_Oncotarget_8_49338
PubMedID: 28521305

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Citations formats

Zhang SJ, Xu TT, Li L, Xu YM, Qu ZL, Wang XC, Huang SQ, Luo Y, Luo NC, Lu P, Shi YF, Yang X, Wang Q (2017)
Bushen-Yizhi formula ameliorates cognitive dysfunction through SIRT1\/ER stress pathway in SAMP8 mice
Oncotarget 8 :49338

Zhang SJ, Xu TT, Li L, Xu YM, Qu ZL, Wang XC, Huang SQ, Luo Y, Luo NC, Lu P, Shi YF, Yang X, Wang Q (2017)
Oncotarget 8 :49338