首页> 外文期刊>Rheumatology international. >Human osteoarthritic chondrocytes exposed to extremely low-frequency electromagnetic fields (ELF) and therapeutic application of musically modulated electromagnetic fields (TAMMEF) systems: A comparative study
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Human osteoarthritic chondrocytes exposed to extremely low-frequency electromagnetic fields (ELF) and therapeutic application of musically modulated electromagnetic fields (TAMMEF) systems: A comparative study

机译:暴露于极低频电磁场(ELF)的人骨关节炎软骨细胞和音乐调制电磁场(TAMMEF)系统的治疗应用:一项比较研究

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摘要

Osteoarthritis (OA) is the most common joint disease, characterized by matrix degradation and changes in chondrocyte morphology and metabolism. Literature reported that electromagnetic fields (EMFs) can produce benefits in OA patients, even if EMFs mechanism of action is debated. Human osteoarthritic chondrocytes isolated from femoral heads were cultured in vitro in bidimensional (2-D) flasks and in three-dimensional (3-D) alginate beads to mimic closely cartilage environment in vivo. Cells were exposed 30 min/day for 2 weeks to extremely low-frequency electromagnetic field (ELF) with fixed frequency (100 Hz) and to therapeutic application of musically modulated electromagnetic field (TAMMEF) with variable frequencies, intensities, and waveforms. Cell viability was measured at days 7 and 14, while healthy-cell density, heavily vacuolized (hv) cell density, and cluster density were measured by light microscopy only for 3-D cultures after treatments. Cell morphology was observed for 2-D and 3-D cultures by transmission electron microscopy (TEM). Chondrocyte exposure to TAMMEF enhances cell viability at days 7 and 14 compared to ELF. Light microscopy analysis showed that TAMMEF enhances healthy-cell density, reduces hv-cell density and clustering, compared to ELF. Furthermore, TEM analysis showed different morphology for 2-D (fibroblast-like) and 3-D (rounded shape) cultures, confirming light microscopy results. In conclusion, EMFs are effective and safe for OA chondrocytes. TAMMEF can positively interfere with OA chondrocytes representing an innovative non-pharmacological approach to treat OA.
机译:骨关节炎(OA)是最常见的关节疾病,其特征在于基质降解以及软骨细胞形态和代谢的变化。文献报道电磁场(EMF)可以在OA患者中产生益处,即使对EMF的作用机理存在争议。从股骨头中分离出的人骨关节炎软骨细胞在二维(2-D)烧瓶中和三维(3-D)海藻酸盐微珠中进行体外培养,以模拟体内紧密的软骨环境。将细胞以每天30分钟的速度每天30分钟暴露于固定频率(100 Hz)的极低频电磁场(ELF)和具有可变频率,强度和波形的音乐调制电磁场(TAMMEF)的治疗应用中。在第7和14天测量细胞活力,而仅通过处理3D培养物的光学显微镜测量健康细胞密度,高度空泡(hv)细胞密度和簇密度。通过透射电子显微镜(TEM)观察到2-D和3-D培养物的细胞形态。与ELF相比,暴露于TAMMEF的软骨细胞可在第7天和第14天增强细胞活力。光学显微镜分析表明,与ELF相比,TAMMEF可增强健康细胞密度,降低hv细胞密度和聚集。此外,TEM分析显示2-D(成纤维细胞样)和3-D(圆形)培养物的形态不同,从而证实了光学显微镜的结果。总之,EMF对OA软骨细胞有效且安全。 TAMMEF可以积极干扰OA软骨细胞,代表了一种创新的非药物治疗OA的方法。

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