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亚硝酸盐在镰刀型红细胞贫血症小鼠肌肉功能、易收缩损伤和易疲劳性中的作用。

The role of nitrite in muscle function, susceptibility to contraction injury, and fatigability in sickle cell mice.

机构信息

The Sheikh Zayed Institute for Pediatric Surgical Innovation and Center for Neuroscience Research, Children's Research Institute, Washington, DC, 20010, USA.

Department of Perioperative Medicine, National Institutes of Health Clinical Center, National Institutes of Health, Bethesda, MD, 20892, USA.

出版信息

Nitric Oxide. 2018 Nov 1;80:70-81. doi: 10.1016/j.niox.2018.08.005. Epub 2018 Aug 14.

Abstract

Sickle cell disease (SCD) patients can have limited exercise capacity and muscle dysfunction characterized by decreased force, atrophy, microvascular abnormalities, fiber distribution changes, and skeletal muscle energetics abnormalities. Growing evidence suggests that in SCD there is alteration in nitric oxide (NO) availability/signaling and that nitrate/nitrite can serve as a NO reservoir and enhance muscle performance. Here, we examined effects of nitrite on muscle strength, exercise capacity, and on contractile properties of fast-(extensor digitorum longus, EDL) and slow-twitch (soleus) muscles in SCD mice. Compared to controls, homozygotes (sickling) had decreased grip strength, impaired wheel running performance, and decreased muscle mass of fast-twitch, but not slow-twitch muscle. Nitrite treatment yielded increases in nitrite plasma levels in controls, heterozygotes, and homozygotes but decreases in muscle nitrite levels in heterozygotes and homozygotes. Regardless of genotype, nitrite yielded increases in grip strength, which were coupled with increases in specific force in EDL, but not in soleus muscle. Further, nitrite increased EDL, but not soleus, fatigability in all genotypes. Conversely, in controls, nitrite decreased, whereas in homozygotes, it increased EDL susceptibility to contraction-induced injury. Interestingly, nitrite yielded no changes in distances ran on the running wheel. These differential effects of nitrite in fast- and slow-twitch muscles suggest that its ergogenic effects would be observed in high-intensity/short exercises as found with grip force increases but no changes on wheel running distances. Further, the differential effects of nitrite in homozygotes and control animals suggests that sickling mice, which have altered NO availability/signaling, handle nitrite differently than do control animals.

摘要

镰状细胞病 (SCD) 患者的运动能力有限,肌肉功能障碍的特征是肌力下降、萎缩、微血管异常、纤维分布改变和骨骼肌能量代谢异常。越来越多的证据表明,SCD 中存在一氧化氮 (NO) 可用性/信号转导的改变,硝酸盐/亚硝酸盐可以作为 NO 的储库,增强肌肉性能。在这里,我们研究了亚硝酸盐对 SCD 小鼠肌肉力量、运动能力以及快肌(伸趾长肌,EDL)和慢肌(比目鱼肌)收缩特性的影响。与对照组相比,纯合子(镰状细胞)握力下降,轮跑表现受损,快速肌(但不是慢肌)的肌肉质量下降。亚硝酸盐处理导致对照组、杂合子和纯合子的血浆中亚硝酸盐水平升高,但杂合子和纯合子的肌肉中亚硝酸盐水平降低。无论基因型如何,亚硝酸盐均能增加握力,这与 EDL 的比力增加有关,但不会增加比目鱼肌的比力。此外,亚硝酸盐增加了所有基因型的 EDL,但不会增加比目鱼肌的疲劳性。相反,在对照组中,亚硝酸盐降低了 EDL 对收缩诱导损伤的易感性,而在纯合子中,亚硝酸盐增加了 EDL 对收缩诱导损伤的易感性。有趣的是,亚硝酸盐对跑步轮上跑的距离没有影响。亚硝酸盐对快肌和慢肌的不同作用表明,其增强肌肉的作用将在高强度/短时间的运动中观察到,如握力增加所示,但对跑步轮跑步距离没有影响。此外,亚硝酸盐在纯合子和对照动物中的不同作用表明,镰状细胞病患者的一氧化氮可用性/信号转导改变,对亚硝酸盐的处理方式与对照动物不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/959b/6186197/2b4bad546139/nihms-1504892-f0001.jpg

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