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镰状细胞病小鼠模型中肌肉力量产生受损及更高的疲劳性。

Impaired muscle force production and higher fatigability in a mouse model of sickle cell disease.

作者信息

Chatel Benjamin, Hourdé Christophe, Gondin Julien, Fouré Alexandre, Le Fur Yann, Vilmen Christophe, Bernard Monique, Messonnier Laurent A, Bendahan David

机构信息

Aix-Marseille Univ, CNRS, CRMBM, Marseille, France.

Université Savoie Mont Blanc, Laboratoire Interuniversitaire de Biologie de la Motricité, EA7424, F-73000 Chambéry, France.

出版信息

Blood Cells Mol Dis. 2017 Mar;63:37-44. doi: 10.1016/j.bcmd.2017.01.004. Epub 2017 Jan 11.

Abstract

Skeletal muscle function has been scarcely investigated in sickle cell disease (SCD) so that the corresponding impact of sickle hemoglobin is still a matter of debate. The purpose of this study was to investigate muscle force production and fatigability in SCD and to identify whether exercise intensity could have a modulatory effect. Ten homozygous sickle cell (HbSS), ten control (HbAA) and ten heterozygous (HbAS) mice were submitted to two stimulation protocols (moderate and intense) to assess force production and fatigability. We showed that specific maximal tetanic force was lower in HbSS mice as compared to other groups. At the onset of the stimulation period, peak force was reduced in HbSS and HbAS mice as compared to HbAA mice. Contrary to the moderate protocol, the intense stimulation protocol was associated with a larger decrease in peak force and rate of force development in HbSS mice as compared to HbAA and HbAS mice. These findings provide in vivo evidence of impaired muscle force production and resistance to fatigue in SCD. These changes are independent of muscle mass. Moreover, SCD is associated with muscle fatigability when exercise intensity is high.

摘要

镰状细胞病(SCD)中骨骼肌功能的研究很少,因此镰状血红蛋白的相应影响仍存在争议。本研究的目的是调查SCD中的肌肉力量产生和疲劳性,并确定运动强度是否具有调节作用。将十只纯合镰状细胞(HbSS)小鼠、十只对照(HbAA)小鼠和十只杂合(HbAS)小鼠进行两种刺激方案(中度和强烈),以评估力量产生和疲劳性。我们发现,与其他组相比,HbSS小鼠的特定最大强直力较低。在刺激期开始时,与HbAA小鼠相比,HbSS和HbAS小鼠的峰值力降低。与中度方案相反,与HbAA和HbAS小鼠相比,强烈刺激方案与HbSS小鼠的峰值力和力量发展速率的更大降低有关。这些发现提供了SCD中肌肉力量产生受损和抗疲劳能力受损的体内证据。这些变化与肌肉质量无关。此外,当运动强度较高时,SCD与肌肉疲劳性有关。

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