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碳酸氢钠和持续轻度热应激通过钙调神经磷酸酶/NFAT 通路对人骨骼肌成肌细胞纤维类型转变的独特和累加作用。

Distinct and additive effects of sodium bicarbonate and continuous mild heat stress on fiber type shift via calcineurin/NFAT pathway in human skeletal myoblasts.

机构信息

Clinical Research Center, National Hospital Organization Sagamihara Hospital, Minami-ku, Sagamihara City, Kanagawa, Japan.

出版信息

Am J Physiol Cell Physiol. 2013 Aug 1;305(3):C323-33. doi: 10.1152/ajpcell.00393.2012. Epub 2013 May 22.

DOI:10.1152/ajpcell.00393.2012
PMID:23703530
Abstract

Ingestion of sodium bicarbonate (NaHCO3) is known to enhance athletic performance, probably via increased extracellular buffering capacity. At present, little is known about the direct effects of NaHCO3 on myogenesis, especially in vitro. Here, we examined the effects of NaHCO3 and the combined effects of NaHCO3 and continuous mild heat stress (CMHS) at 39°C on the differentiation of human skeletal muscle myoblasts (HSMMs). Levels of myosin heavy chain (MyHC) type I mRNA increased with increasing NaHCO3 concentrations; in contrast, those of MyHC IIx decreased. The NaHCO3-induced fast-to-slow shift was additively enhanced by CMHS. Likewise, intracellular calcium levels and expression of three factors, nuclear factor of activated T cells c2 (NFATc2), NFATc4, and peroxisome-proliferator-activated receptor-γ coactivator-1α, were upregulated with increasing NaHCO3 concentrations; moreover, these effects of NaHCO3 were additively enhanced by CMHS. Overexpression experiments and small interfering RNA-mediated knockdown experiments confirmed that NFATc2 and NFATc4 were involved in MyHC I regulation. The present study provided evidence that NaHCO3 and CMHS distinctly and additively induced a fast-to-slow fiber type shift through changes in intracellular calcium levels and the modulation of calcium signaling.

摘要

碳酸氢钠(NaHCO3)的摄入已知可以增强运动表现,可能是通过增加细胞外缓冲能力。目前,人们对 NaHCO3 对成肌作用的直接影响知之甚少,特别是在体外。在这里,我们研究了 NaHCO3 的作用以及 39°C 下的 NaHCO3 和持续温和热应激(CMHS)的联合作用对人骨骼肌成肌细胞(HSMMs)分化的影响。肌球蛋白重链(MyHC)I 型 mRNA 的水平随 NaHCO3 浓度的增加而增加;相比之下,MyHC IIx 的水平降低。CMHS 使 NaHCO3 诱导的快肌向慢肌转变得到了额外增强。同样,细胞内钙离子水平和三个因子的表达,即激活 T 细胞核因子 c2(NFATc2)、NFATc4 和过氧化物酶体增殖物激活受体-γ 共激活因子-1α,随着 NaHCO3 浓度的增加而上调;此外,CMHS 还使 NaHCO3 的这些作用得到了额外增强。过表达实验和小干扰 RNA 介导的敲低实验证实,NFATc2 和 NFATc4 参与了 MyHC I 的调节。本研究提供的证据表明,NaHCO3 和 CMHS 通过改变细胞内钙离子水平和钙信号的调节,明显且额外地诱导了快肌向慢肌纤维类型的转变。

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