Li Xihai, Liu Chao, Liang Wenna, Ye Hongzhi, Chen Wenlie, Lin Ruhui, Li Zuanfang, Liu Xianxiang, Wu Mingxia
Academy of Integrative Medicine, Fujian University of Traditional Chinese Medicine, Fuzhou, 350122, China.
J Bone Miner Metab. 2014 Jul;32(4):367-77. doi: 10.1007/s00774-013-0513-2. Epub 2013 Nov 8.
Previously, we reported that millimeter wave promoted the chondrocyte proliferation by pushing cell cycle progression. Activation of K(+) channels plays an essential role in the stimulating of extracellular matrix (ECM) synthesis and the cell proliferation in chondrocytes. While it is unclear if millimeter wave enhances ECM synthesis and proliferation of chondrocytes by regulating K(+) channel activity, we here investigated the effects of millimeter waves on ECM synthesis, chondrocyte proliferation and ion channels in the primary chondrocyte culture. We found that millimeter waves led to the increase of chondrocyte viability, the morphological changes of chondrocyte, and the F-actin distortion and remodeling. Ultrastructural analysis showed that treated chondrocytes contained an expansion of mitochondria and granular endoplasmic reticulum, and a high number of cytoplasmic vesicles in the cytoplasm compared to untreated cells, suggesting millimeter waves increased the energy metabolism and protein synthesis of chondrocytes. The analysis of differential ion channels' genes expression further showed an obvious increase of Kcne1, Kcnj3 and Kcnq2. To determine the role of voltage-gated K(+) channel in chondrocyte, we blocked the voltage-gated K(+) channel with 10 mM tetraethylammonium (TEA) and treated chondrocytes with millimeter waves. The results indicated that TEA significantly negated the promotion of millimeter waves for the ECM synthesis and chondrocyte proliferation. Our results support the hypothesis that millimeter waves promote the synthesis of ECM and the proliferation of chondrocyte by regulating the voltage-gated K(+) channel.
此前,我们报道毫米波通过推动细胞周期进程促进软骨细胞增殖。钾离子通道的激活在刺激软骨细胞外基质(ECM)合成和细胞增殖中起重要作用。虽然尚不清楚毫米波是否通过调节钾离子通道活性来增强软骨细胞的ECM合成和增殖,但我们在此研究了毫米波对原代软骨细胞培养中ECM合成、软骨细胞增殖和离子通道的影响。我们发现毫米波导致软骨细胞活力增加、软骨细胞形态变化以及F-肌动蛋白扭曲和重塑。超微结构分析表明,与未处理的细胞相比,处理后的软骨细胞线粒体和颗粒内质网扩张,细胞质中存在大量细胞质小泡,提示毫米波增加了软骨细胞的能量代谢和蛋白质合成。差异离子通道基因表达分析进一步显示Kcne1、Kcnj3和Kcnq2明显增加。为确定电压门控钾离子通道在软骨细胞中的作用,我们用10 mM四乙铵(TEA)阻断电压门控钾离子通道,并对软骨细胞进行毫米波处理。结果表明,TEA显著消除了毫米波对ECM合成和软骨细胞增殖的促进作用。我们的结果支持以下假设:毫米波通过调节电压门控钾离子通道促进ECM合成和软骨细胞增殖。