首页> 外文期刊>American Journal of Physiology >Skeletal muscle fiber atrophy: altered thin filament density changes slow fiber force and shortening velocity.
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Skeletal muscle fiber atrophy: altered thin filament density changes slow fiber force and shortening velocity.

机译:骨骼肌纤维萎缩:细丝密度改变会改变纤维速度,并缩短速度。

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Single skinned fibers from soleus and adductor longus (AL) muscles of weight-bearing control rats and rats after 14-day hindlimb suspension unloading (HSU) were studied physiologically and ultrastructurally to investigate how slow fibers increase shortening velocity (V0) without fast myosin. We hypothesized that unloading and shortening of soleus during HSU reduces densities of thin filaments, generating wider myofilament separations that increase V0 and decrease specific tension (kN/m2). During HSU, plantarflexion shortened soleus working length 23%. AL length was unchanged. Both muscles atrophied as shown by reductions in fiber cross-sectional area. For AL, the 60% atrophy accounted fully for the 58% decrease in absolute tension (mN). In the soleus, the 67% decline in absolute tension resulted from 58% atrophy plus a 17% reduction in specific tension. Soleus fibers exhibited a 25% reduction in thin filaments, whereas there was no change in AL thin filament density. Loss of thin filaments is consistent with reduced cross bridge formation, explaining the fall in specific tension. V0 increased 27% in soleus but was unchanged in AL. The V0 of control and HSU fibers was inversely correlated (R = -0.83) with thin filament density and directly correlated (R = 0.78) with thick-to-thin filament spacing distance in a nonlinear fashion. These data indicate that reduction in thin filament density contributes to an increased V0 in slow fibers. Osmotically compacting myofilaments with 5% dextran returned density, spacing, and specific tension and slowed V0 to near-control levels and provided evidence for myofilament spacing modulating tension and V0.
机译:在生理和超微结构方面研究了承重对照组和14天后肢悬吊卸载(HSU)后比目鱼肌和内收肌长肌(AL)的单皮纤维,以研究慢纤维如何在没有快速肌球蛋白的情况下增加缩短速度(V0)。我们假设在HSU期间卸荷和比目鱼肌缩短会降低细丝的密度,产生更宽的肌丝分离,从而增加V0并降低比张力(kN / m2)。在HSU期间,足底屈曲比目鱼的工作长度缩短了23%。 AL长度不变。如图所示,两根肌肉都萎缩了,纤维横截面积减小了。对于AL,60%的萎缩完全占绝对张力(mN)降低58%。在比目鱼肌中,绝对张力下降67%,是由于萎缩58%加上比张力下降了17%。 Soleus纤维的细丝减少了25%,而AL细丝的密度没有变化。细丝的损失与跨桥形成的减少相一致,这解释了比张力的下降。比目鱼的V0增加27%,而AL则保持不变。对照纤维和HSU纤维的V0与细丝密度呈负相关(R = -0.83),与粗丝至细丝间距之间呈非线性关系(R = 0.78)。这些数据表明,细丝密度的降低有助于慢纤维中的V0增加。用5%葡聚糖渗透压紧肌丝,可恢复密度,间距和比张力,将V0减至接近控制水平,并为肌丝间距调节张力和V0提供了证据。

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