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Effects and mechanisms of electro-acupuncture on proliferation and differentiation of neural stem cells in C57 mice exposed to different doses of X-ray radiation / 生理学报
Acta Physiologica Sinica ; (6): 431-438, 2019.
Article in Chinese | WPRIM | ID: wpr-777170
ABSTRACT
The present study was aimed to investigate the effects and mechanisms of electro-acupuncture (EA) on proliferation and differentiation of neural stem cells in the hippocampus of C57 mice exposed to different doses of X-ray radiation. Thirty-day-old C57BL/6J mice were randomly divided into control, irradiation, and EA groups. The control group was not treated with irradiation. The irradiation groups were exposed to different doses of X-ray (4, 8 or 16 Gy) for 10 min. The EA groups were electro-acupunctured at Baihui, Fengfu and bilateral Shenyu for 3 courses of treatment after X-ray radiation. Immunohistochemistry was used to evaluate proliferation and differentiation of the hippocampal neural stem cell. RT-PCR and Western blot were used to detect mRNA and protein expressions of Notch1 and Mash1 in the hippocampus, respectively. The results showed that, compared with the control group, the numbers of BrdU positive cells (4, 8 Gy subgroup) and BrdU/NeuN double-labeling positive cells (3 dose subgroups) were decreased significantly in the irradiation group, but the above changes could be reversed by EA. Compared with the control group, the number of BrdU/GFAP double-labeling positive cells in each dose subgroup of irradiation group was decreased significantly, while EA could reverse the change of 4 and 8 Gy dose subgroups. In addition, compared with the control group, the expression levels of Notch1 mRNA and protein in hippocampus were up-regulated, and the expression levels of Mash1 mRNA and protein were significantly decreased in each dose subgroup of irradiation group. Compared with irradiation group, the expression levels of Notch1 mRNA and protein in hippocampus of EA group were decreased significantly in each dose subgroup, and the expression levels of Mash1 mRNA and protein were increased significantly in 4 and 8 Gy subgroups. These results suggest that irradiation affects the proliferation and differentiation of neural stem cells in hippocampus of mice, whereas EA may significantly increase the proliferation and differentiation of hippocampal neural stem cells via the regulation of Notch signaling pathway.
Subject(s)
Full text: Available Index: WPRIM (Western Pacific) Main subject: Radiation Effects / X-Rays / Random Allocation / Electroacupuncture / Cell Differentiation / Cell Biology / Cell Proliferation / Basic Helix-Loop-Helix Transcription Factors / Receptor, Notch1 / Neural Stem Cells Limits: Animals Language: Chinese Journal: Acta Physiologica Sinica Year: 2019 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Radiation Effects / X-Rays / Random Allocation / Electroacupuncture / Cell Differentiation / Cell Biology / Cell Proliferation / Basic Helix-Loop-Helix Transcription Factors / Receptor, Notch1 / Neural Stem Cells Limits: Animals Language: Chinese Journal: Acta Physiologica Sinica Year: 2019 Type: Article