The Effect of Low-Frequency Pulsed Electromagnetic Fields on the Differentiation of Permanent Dental Pulp Stem Cells into Odontoblasts.

Q3 Dentistry Iranian Endodontic Journal Pub Date : 2023-01-01 DOI:10.22037/iej.v18i4.39349
Saeed Rahimi, Mahnaz Ahrabi, Mohammad Samiei, Leila Roshangar, Behnaz Ahrabi, Behnam Hashemi, Shahriar Shahi, Naghmeh Rahimi Darehchi
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Abstract

Introduction: Exposure to pulsed electromagnetic field (PEMF) has been revealed to affect the differentiation and proliferation of human mesenchymal stem cells derived from dental pulp multipotent stromal stem cells (DP-MSCs). This study aimed to investigate the differentiation effect of electromagnetic fields (EMFs) on the DP-MSC.

Materials and methods: PEMF was produced by a system comprising a multi-meter autotransformer, solenoid coils, and teslameter. This study included 10 groups of DP-MSCs which underwent different electromagnetic radiation time and beam intensity. Three samples tested for each group. The effect of PEMF with the intensity of 0.5 and 1 mT (mili Tesla) and 50 Hz on the proliferation rate of DP-MSC was evaluated at 20 and 40 minutes per day for seven days. MTT assay was applied to determine the growth and proliferation of DP-MSC. Gene expression of DMP1 for differentiation of DPSCs to odontoblasts was confirmed by Real Time PCR., ANOVA statistical analysis and Kruskal-Wallis test were used to analyze the data.

Results: The survival in all exposure groups was significantly higher than that in control except in the group of 40 minutes, 1 mT (P<0.05). In 20 minutes, 0.5 mT exposure, the survival intensity is significantly more than others (P<0.05). In general, the intensity of survival was recorded, 20, 0.5 mT≥20, 1 mT≥40, 0.5 mT≥40, 1 mT respectively. Therefore, according to the obtained results, ELF-EMF increases the survival of cells except for one case (40 minutes, 1 mT), even though the effective underlying mechanisms in this process are still unclear.

Conclusions: The results obtained promise that in the future, by placing an important part of the pulp next to the electromagnetic field, the lost part of the pulp can be reconstructed and the dentin barrier can be created.

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低频脉冲电磁场对牙髓干细胞向成牙本质细胞分化的影响。
引言:暴露于脉冲电磁场(PEMF)已被揭示会影响来源于牙髓多能基质干细胞(DP-MSCs)的人间充质干细胞的分化和增殖。本研究旨在研究电磁场(EMF)对DP-MSC的微分效应。材料和方法:PEMF由一个包括多表自耦变压器、电磁线圈和特斯拉的系统生产。本研究包括10组接受不同电磁辐射时间和束强度的DP-MSC。每组测试三个样本。在每天20分钟和40分钟持续7天的条件下,评估强度为0.5和1mT(毫特斯拉)和50Hz的PEMF对DP-MSC增殖速率的影响。MTT法检测DP-MSC的生长和增殖。通过实时PCR证实了用于DPSCs分化为成牙本质细胞的DMP1的基因表达。,采用方差分析和Kruskal-Wallis检验对数据进行分析。结果:除40min,1mT组外,所有暴露组的存活率均显著高于对照组(PPC结论:所获得的结果有望在未来,通过将牙髓的重要部分放置在电磁场旁边,可以重建牙髓的丢失部分,并建立牙本质屏障。
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来源期刊
Iranian Endodontic Journal
Iranian Endodontic Journal Dentistry-Dentistry (all)
CiteScore
1.30
自引率
0.00%
发文量
0
审稿时长
12 weeks
期刊介绍: The Iranian Endodontic Journal (IEJ) is an international peer-reviewed biomedical publication, the aim of which is to provide a scientific medium of communication for researchers throughout the globe. IEJ aims to publish the highest quality articles, both clinical and scientific, on all aspects of Endodontics. The journal is an official Journal of the Iranian Center for Endodontic Research (ICER) and the Iranian Association of Endodontists (IAE). The Journal welcomes articles related to the scientific or applied aspects of endodontics e.g. original researches, systematic reviews, meta-analyses, review articles, clinical trials, case series/reports, hypotheses, letters to the editor, etc. From the beginning (i.e. since 2006), the IEJ was the first open access endodontic journal in the world, which gave readers free and instant access to published articles and enabling them faster discovery of the latest endodontic research.
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