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首页> 外文期刊>American Journal of Physiology >Importance of satellite cells in the strength recovery after eccentric contraction-induced muscle injury.
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Importance of satellite cells in the strength recovery after eccentric contraction-induced muscle injury.

机译:卫星细胞在离心收缩引起的肌肉损伤后强度恢复中的重要性。

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The purpose of this study was to determine if the elimination of satellite cell proliferation using gamma-irradiation would inhibit normal force recovery after eccentric contraction-induced muscle injury. Adult female ICR mice were implanted with a stimulating nerve cuff on the common peroneal nerve and assigned to one of four groups: 1) irradiation- and eccentric contraction-induced injury, 2) eccentric contraction-induced injury only, 3) irradiation only, and 4) no intervention. Anterior crural muscles were irradiated with a dose of 2,500 rad and injured with 150 in vivo maximal eccentric contractions. Maximal isometric torque was determined weekly through 35 days postinjury. Immediately after injury, maximal isometric torque was reduced by approximately 50% and had returned to normal by 28 days postinjury in the nonirradiated injured mice. However, torque production of irradiated injured animals did not recover fully and was 25% less than that of injured nonirradiated mice 35 days postinjury. These data suggest that satellite cell proliferation is required for approximately half of the force recovery after eccentric contraction-induced injury.
机译:这项研究的目的是确定使用伽马射线辐射消除卫星细胞增殖是否会抑制离心收缩引起的肌肉损伤后正常的力量恢复。成年雌性ICR小鼠在腓总神经上植入了刺激性神经袖套,并分为四组之一:1)辐射和离心收缩引起的损伤; 2)仅离心收缩引起的损伤; 3)仅辐照;和4)无干预。用2,500 rad的剂量照射前额肌,并在体内进行150次最大离心率损伤。在伤后35天每周确定最大等距扭矩。受伤后立即,未受辐照的受伤小鼠的最大等距扭矩降低约50%,并在受伤后28天恢复正常。但是,受辐照的受伤动物的扭矩产生不能完全恢复,并且比受伤后35天的未辐照的受伤小鼠的扭矩产生少25%。这些数据表明,离心收缩引起的损伤后,力恢复的一半需要卫星细胞的增殖。

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