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Bone Marrow-Derived Mesenchymal Stem Cells Incubated with Tanshinone IIA Aattenuates Learning and Memory Impairment Induced by β-amyloid and its Underlying Mechanisms in Rats

Bone Marrow-Derived Mesenchymal Stem Cells Incubated with Tanshinone IIA Aattenuates Learning and Memory Impairment Induced by β-amyloid and its Underlying Mechanisms in Rats

摘要Objective:The present study was designed to investigate the neuroprotective effect of mesenchymal stem cells(MSC)which incubated with tanshinone IIA onβ-amyloid(Aβ)-induced learning and memory impairment in rats,and further explore the underlying potential mechanisms. Methods:60 healthy male SD rats were randomly divided into 4 groups:sham-operated group,model group,MSC group,MSC+tanshinone group IIA(n=15).The rats of model group were injected into the hippocampal with aggregation of 5 μL Aβ25-35(2 μg·μL-1)to establish the model of learning and memory impairment. 1 week after surgery,the MSC were injected into the hippocampus,while the rats of model group were injected with volume-matched DMEM,instead. 2 weeks after surgery, Morris water maze(MWM)test was applied to evaluate spatial learning and memory ability of rats, then the rats were sacrificed. The survival status of hippocampal neurons was detected by HE and Tunel staining;the formation of hippocampal senile plaques was detected by thioflavin S staining;the protein expression of Aβ1-42,p-Tau and AMPK in mouse hippocampus were detected by Western blot, respectively;the expression of AMPK mRNA was detected by PCR and the activity of SOD,T-AOC, GSH-PX and content of MDA in plasma by the kits.Results:Compared with sham-operated group, the mean escape latency was markedly increased and the time percentage in target quadrant showed notable decrease in model group;large number of the formation of senile plaque in the hippocampus was detected;the number of surviving neurons in hippocampus was significantly decreased and the apoptosis increased;the protein expression of Aβ1-42 and p-Tau were increased;the mRNA expression and protein levels of AMPK was decreased;the activity of SOD,T-AOC,GSH-PX were decreased and content of MDA increased in plasma.However,compared with model group,the escape latency of MSC group and MSC+Tanshinone group rats was shorter,time percentage in the target quadrant and target quadrant frequency were markedly increased;moreover,the formation of senile plaque in the hippocampus was decreased;the number of surviving neurons in hippocampus was significantly increased;the protein expression of Aβ1-42 and p-Tau were decreased;the mRNA expression and protein levels of AMPK was increased;the activity of SOD,T-AOC,GSH-PX were increased and content of MDA decreased in plasma.And MSC+tanshinone group was more significant than the MSC group. Conclusion:Under the experimental conditions,MSC incubated with tanshinone ⅡA significantly ameliorates spatial learning and memory impairment and reduce Aβaggregation and tau protein phosphorylation levels induced by Aβ25-35 in rats,and its potential mechanism may be related toanti-oxidative stress.

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作者 FENG Fei CHEN Jian-hua LUO Xiu-mei LI Ying LI Yuan-yuan YANG Xiao-yan MA Qing-qing LUO Yong 学术成果认领
栏目名称 阿尔茨海默病相关研究(S2-1~33)
DOI 10.3969/j.issn.2095-1396.2017.02.028
发布时间 2018-05-03
基金项目
1. This work was supported by Department of Science and Technology of Guizhou Province ([2011]3039) 2. The work described in this paper was fully supported by grant from the program for thousand-level innovative talents in Guizhou Province(Grant No. ZSKH-RC-(2015)25) 3. Science and Technology Program of Zunyi in Guizhou Province(Grant No. ZSKH-
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