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低频脉冲电磁场对人肌腱细胞的增殖、组织特异性基因表达和细胞因子释放的影响。

Low frequency pulsed electromagnetic field affects proliferation, tissue-specific gene expression, and cytokines release of human tendon cells.

机构信息

Orthopaedic Biotechnologies Laboratory, IRCCS Istituto Ortopedico Galeazzi, Milan, Italy.

出版信息

Cell Biochem Biophys. 2013 Jul;66(3):697-708. doi: 10.1007/s12013-013-9514-y.

Abstract

Low frequency pulsed electromagnetic field (PEMF) has proven to be effective in the modulation of bone and cartilage tissue functional responsiveness, but its effect on tendon tissue and tendon cells (TCs) is still underinvestigated. PEMF treatment (1.5 mT, 75 Hz) was assessed on primary TCs, harvested from semitendinosus and gracilis tendons of eight patients, under different experimental conditions (4, 8, 12 h). Quantitative PCR analyses were conducted to identify the possible effect of PEMF on tendon-specific gene transcription (scleraxis, SCX and type I collagen, COL1A1); the release of pro- and anti-inflammatory cytokines and of vascular endothelial growth factor (VEGF) was also assessed. Our findings show that PEMF exposure is not cytotoxic and is able to stimulate TCs' proliferation. The increase of SCX and COL1A1 in PEMF-treated cells was positively correlated to the treatment length. The release of anti-inflammatory cytokines in TCs treated with PEMF for 8 and 12 h was significantly higher in comparison with untreated cells, while the production of pro-inflammatory cytokines was not affected. A dramatically higher increase of VEGF-A mRNA transcription and of its related protein was observed after PEMF exposure. Our data demonstrated that PEMF positively influence, in a dose-dependent manner, the proliferation, tendon-specific marker expression, and release of anti-inflammatory cytokines and angiogenic factor in a healthy human TCs culture model.

摘要

低频脉冲电磁场 (PEMF) 已被证明可有效调节骨和软骨组织的功能反应性,但它对肌腱组织和肌腱细胞 (TCs) 的影响仍有待研究。在不同的实验条件下(4、8、12 小时),对取自 8 名患者的半腱肌和股薄肌腱的原代 TCs 进行了 1.5 mT、75 Hz 的 PEMF 处理。进行了定量 PCR 分析,以确定 PEMF 对肌腱特异性基因转录(腱索蛋白、SCX 和 I 型胶原、COL1A1)的可能影响;还评估了促炎和抗炎细胞因子以及血管内皮生长因子 (VEGF) 的释放。我们的研究结果表明,PEMF 暴露无细胞毒性,并能刺激 TCs 的增殖。在 PEMF 处理的细胞中,SCX 和 COL1A1 的增加与处理时间呈正相关。与未处理的细胞相比,用 PEMF 处理 8 和 12 小时的 TCs 释放的抗炎细胞因子明显增加,而促炎细胞因子的产生不受影响。在 PEMF 暴露后,VEGF-A mRNA 转录及其相关蛋白的转录显著增加。我们的数据表明,PEMF 以剂量依赖的方式对健康人 TCs 培养模型中的增殖、肌腱特异性标志物表达以及抗炎细胞因子和血管生成因子的释放产生积极影响。

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