首页> 外文期刊>The Journal of Physiology >Curcumin counteracts loss of force and atrophy of hindlimb unloaded rat soleus by hampering neuronal nitric oxide synthase untethering from sarcolemma
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Curcumin counteracts loss of force and atrophy of hindlimb unloaded rat soleus by hampering neuronal nitric oxide synthase untethering from sarcolemma

机译:姜黄素通过阻止神经元一氧化氮合酶与肌膜炎的结合而抵消了后肢空载比目鱼肌的力量损失和萎缩

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Antioxidant administration aimed to antagonize the development and progression of disuse muscle atrophy provided controversial results. Here we investigated the effects of curcumin, a vegetal polyphenol with pleiotropic biological activity, because of its ability to upregulate glucose-regulated protein 94 kDa (Grp94) expression in myogenic cells. Grp94 is a sarco-endoplasmic reticulum chaperone, the levels of which decrease significantly in unloaded muscle. Rats were injected intraperitoneally with curcumin and soleus muscle was analysed after 7 days of hindlimb unloading or standard caging. Curcumin administration increased Grp94 protein levels about twofold in muscles of ambulatory rats (P < 0.05) and antagonized its decrease in unloaded ones. Treatment countered loss of soleus mass and myofibre cross-sectional area by approximately 30% (P ≤ 0.02) and maintained a force-frequency relationship closer to ambulatory levels. Indexes of muscle protein and lipid oxidation, such as protein carbonylation, revealed by Oxyblot, and malondialdehyde, measured with HPLC, were significantly blunted in unloaded treated rats compared to untreated ones (P = 0.01). Mechanistic involvement of Grp94 was suggested by the disruption of curcumin-induced attenuation of myofibre atrophy after transfection with antisense grp94 cDNA and by the drug-positive effect on the maintenance of the subsarcolemmal localization of active neuronal nitric oxide synthase molecules, which were displaced to the sarcoplasm by unloading. The absence of additive effects after combined administration of a neuronal nitric oxide synthase inhibitor further supported curcumin interference with this pro-atrophic pathway. In conclusion, curcumin represents an effective and safe tool to upregulate Grp94 muscle levels and to maintain muscle function during unweighting.
机译:旨在对抗废弃肌肉萎缩的发展和进程的抗氧化剂给药提供了有争议的结果。在这里,我们研究了姜黄素(一种具有多效生物活性的植物多酚)的作用,因为它具有上调生肌细胞中葡萄糖调节蛋白94 kDa(Grp94)表达的能力。 Grp94是肌浆网状内膜伴侣,其水平在空载肌肉中显着降低。后肢卸载或标准笼养7天后,对大鼠腹膜内注射姜黄素,并分析比目鱼肌。姜黄素的给药增加了非运动大鼠肌肉中Grp94蛋白水平的两倍(P <0.05),并且对抗了空腹大鼠Grp94蛋白水平的降低。治疗使比目鱼肌块和肌纤维横截面积的损失减少了约30%(P≤0.02),并保持了接近运动水平的力-频关系。与未经处理的大鼠相比,经空腹处理的大鼠的肌肉蛋白和脂质氧化指数(如Oxyblot揭示的蛋白质羰基化和丙二醛)显着减弱(P = 0.01)。通过反义grp94 cDNA转染后姜黄素诱导的肌纤维萎缩减弱的破坏,以及对维持活性神经元一氧化氮合酶分子的肌膜下局部定位的药物阳性作用,提示了姜黄素诱导的肌纤维萎缩减弱。肌浆经卸除。联合给予神经元一氧化氮合酶抑制剂后,没有累加作用,进一步支持姜黄素对该促萎缩途径的干扰。总之,姜黄素是一种有效且安全的工具,可在失重期间上调Grp94肌肉水平并维持肌肉功能。

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