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Effect of low frequency low intensity electromagnetic fields on maturation and mineralization of rat skull osteoblasts in vitro / 浙江大学学报·医学版
Journal of Zhejiang University. Medical sciences ; (6): 585-592, 2017.
Article in Chinese | WPRIM | ID: wpr-819077
ABSTRACT

Objective:

To compare the effects of 50 Hz 1.8 mT sinusoidal magnetic field (SEMF) and 50 Hz 0.6 mT pulsed electromagnetic field(PEMF) on the maturation and mineralization of rat calvaria osteoblasts.

Methods:

Primary cultured rat calvarial osteoblasts were divided into 3 groupsblank control group, SEMF group and PEMF group. The rats in SEMT and PEMT groups were treated with 50 Hz 1.8 mT SEMF or 50 Hz 0.6 mT PEMF for 90 min/d, respectively. Western blotting and Real-time RT-PCR were used to detect the protein and mRNA expressions of Collagen-1, bone morphogenetic protein 2 (BMP-2), osterix (OSX) and Runt-associated transcription factor 2(Runx-2). The alkaline phosphatase(ALP) activity was detected by ALP test kits at d6 and d9 after treatment, and by ALP staining using azo coupling at d10 after treatment. The formation of calcium nodules was observed by alizarin red staining.

Results:

Compared with blank control group, the protein and mRNA expressions of Collagen-1, BMP-2, OSX and Runx-2 in SEMT and PEMT groups were significantly increased (P P PP0.05); after 9 days treatment, the activities of ALP in both PEMF and SEMP groups were significantly higher than that in blank control group (all PP0.05). After 10 days treatment, ALP staining was increased in both PEMF and SEMF groups compared with that in blank control group (all PPPP

Conclusion:

Both 50 Hz 1.8 mT that in SEMF and 50 Hz 0.6 mT PEMF can promote the maturation and mineralization of osteoblasts, and the effect of PEMF is more marked.
Subject(s)
Full text: Available Index: WPRIM (Western Pacific) Main subject: Osteoblasts / Radiation Effects / Skull / Calcification, Physiologic / Cell Differentiation / Cells, Cultured / Gene Expression Regulation, Developmental / Cell Biology / Electromagnetic Fields / Magnetic Fields Limits: Animals Language: Chinese Journal: Journal of Zhejiang University. Medical sciences Year: 2017 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Osteoblasts / Radiation Effects / Skull / Calcification, Physiologic / Cell Differentiation / Cells, Cultured / Gene Expression Regulation, Developmental / Cell Biology / Electromagnetic Fields / Magnetic Fields Limits: Animals Language: Chinese Journal: Journal of Zhejiang University. Medical sciences Year: 2017 Type: Article