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四甲基吡嗪硝基氧化物对神经干细胞增殖和分化的影响

[Effects of tetramethylypyrazine nitrone on proliferation and differentiation of neural stem cells ].

作者信息

Chen Shi-Jin, Chen Dong, Shi Yu-Fang, Liu Jun, Han Song, Li Wei

机构信息

Department of Cardiovascular Medicine, Yichang Second People's Hospital, Yichang 443000, China.

Training Base Medical Team of Liaoning Provincial Corps of PAF, Shengyang 110034, China.

出版信息

Zhongguo Ying Yong Sheng Li Xue Za Zhi. 2018 Feb 8;34(2):150-153.

Abstract

OBJECTIVES

To investigate the role of tetramethylpyrazine(TMP) nitrone in proliferation and differentiation of neural stem cells (NSCs).

METHODS

We separated and cultivated the original generation of NSCs from cerebral cortex of 14 days rat embryo, and the phenotype characteristics of the third-generation NSCs was tested by immunofluorescence. The experiment was divided into control group, β-mercaptoethanol positive control group, tetramethylpyrazine nitrone group and tetramethylpyrazine nitrone + ethylene glycol tetraacetic acid(EGTA) group (=4). The third-generation cultivation of NSCs was used in the experiment. The effect of tetramethylpyrazine nitrone on the number of NSCs proliferation was determined by BrdU and MTT, and the differentiation of NSCs was determined by Western blot.

RESULTS

The primary NSCs was isolated successfully, neurospheres with typical NSCs morphology and expressing nestin was formed at 3-5 days. As BrdU and MTT assay results shown, compared with the control group andβ-mercaptoethanol positive control group, the NSCs proliferation numbers of tetramethylpyrazine nitrone group increased significantly(<0.05). The results of Western blot showed that the neuronal differentiation rate of NSCs was increased significantly in both the tetramethylpyrazine nitrone group and tetramethylpyrazine nitrone + EGTA group, and the differentiation rate of NSCs in tetramethylpyrazine nitrone + EGTA group increased more significantly(<0.05).

CONCLUSIONS

Tetramethylpyrazine nitrone can significantly enhance the proliferation and neuronal differentiation rate of NSCs. Decrease in extracellular Ca can promote the differentiation of NSCs into neurons induced by tetramethylpyrazine nitrone. Ca signaling plays an important role in the differentiation of NSCs into neurons.

摘要

目的

探讨川芎嗪硝酮对神经干细胞(NSCs)增殖和分化的作用。

方法

从14天龄大鼠胚胎的大脑皮层分离并培养原代NSCs,通过免疫荧光检测第三代NSCs的表型特征。实验分为对照组、β-巯基乙醇阳性对照组、川芎嗪硝酮组和川芎嗪硝酮+乙二醇双四乙酸(EGTA)组(每组n = 4)。实验采用第三代培养的NSCs。通过BrdU和MTT检测川芎嗪硝酮对NSCs增殖数量的影响,通过蛋白质免疫印迹法检测NSCs的分化情况。

结果

成功分离出原代NSCs,在3 - 5天时形成具有典型NSCs形态并表达巢蛋白的神经球。如BrdU和MTT检测结果所示,与对照组和β-巯基乙醇阳性对照组相比,川芎嗪硝酮组的NSCs增殖数量显著增加(P<0.05)。蛋白质免疫印迹法结果显示,川芎嗪硝酮组和川芎嗪硝酮+EGTA组的NSCs向神经元的分化率均显著增加,且川芎嗪硝酮+EGTA组的NSCs分化率增加更显著(P<0.05)。

结论

川芎嗪硝酮可显著提高NSCs的增殖和向神经元的分化率。细胞外Ca浓度降低可促进川芎嗪硝酮诱导的NSCs向神经元分化。Ca信号在NSCs向神经元的分化中起重要作用。

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