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极低频电磁场暴露促进成骨分化:在骨工程中的可能应用。

Improved osteogenic differentiation by extremely low electromagnetic field exposure: possible application for bone engineering.

机构信息

Department of Medicine and Science of Aging, University "G. d'Annunzio", Via deiVestini, 66100, Chieti, Italy.

Department of Medical, Oral and Biotechnological Sciences, University "G. d'Annunzio", Via dei Vestini, 66100, Chieti, Italy.

出版信息

Histochem Cell Biol. 2022 Oct;158(4):369-381. doi: 10.1007/s00418-022-02126-9. Epub 2022 Jun 25.

Abstract

Human periodontal ligament mesenchymal stem cells (hPDLSCs) are a promising cell type model for regenerative medicine applications due to their anti-inflammatory, immunomodulatory and non-tumorigenic potentials. Extremely low-frequency electromagnetic fields (ELF-EMF) are reported to affect biological properties such as cell proliferation and differentiation and modulate gene expression profile. In this study, we investigated the effects of an intermittent ELF-EMF exposure (6 h/day) for the standard differentiation period (28 days) and for 10 days in hPDLSCs in the presence or not of osteogenic differentiation medium (OM). We evaluated cell proliferation, de novo calcium deposition and osteogenic differentiation marker expression in sham and ELF-EMF-exposed cells. After ELF-EMF exposure, compared with sham-exposed, an increase in cell proliferation rate (p < 0.001) and de novo calcium deposition (p < 0.001) was observed after 10 days of exposure. Real-time PCR and Western blot results showed that COL1A1 and RUNX-2 gene expression and COL1A1, RUNX-2 and OPN protein expression were upregulated respectively in the cells exposed to ELF-EMF exposure along with or without OM for 10 days. Altogether, these results suggested that the promotion of osteogenic differentiation is more efficient in ELF-EMF-exposed hPDLSCs. Moreover, our analyses indicated that there is an early induction of hPDLSC differentiation after ELF-EMF application.

摘要

人牙周膜间充质干细胞(hPDLSCs)具有抗炎、免疫调节和非致瘤潜能,是再生医学应用中很有前途的细胞类型模型。据报道,极低频电磁场(ELF-EMF)会影响细胞增殖和分化等生物学特性,并调节基因表达谱。在这项研究中,我们研究了间歇 ELF-EMF 暴露(每天 6 小时)对 hPDLSCs 在存在或不存在成骨分化培养基(OM)的情况下标准分化期(28 天)和 10 天的影响。我们评估了 sham 和 ELF-EMF 暴露细胞中的细胞增殖、新形成的钙沉积和成骨分化标志物表达。ELF-EMF 暴露后,与 sham 暴露相比,暴露 10 天后观察到细胞增殖率(p<0.001)和新形成的钙沉积(p<0.001)增加。实时 PCR 和 Western blot 结果表明,在暴露于 ELF-EMF 或同时暴露于 OM 的细胞中,COL1A1 和 RUNX-2 基因表达以及 COL1A1、RUNX-2 和 OPN 蛋白表达分别上调。总的来说,这些结果表明,ELF-EMF 暴露促进成骨分化的效率更高。此外,我们的分析表明,ELF-EMF 应用后 hPDLSC 分化存在早期诱导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8556/9512759/9f6dd4c919e2/418_2022_2126_Fig1_HTML.jpg

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