Takeda Isao, Fujino Hidemi, Murakami Shinichiro, Kondo Hiroyo, Nagatomo Fumiko, Ishihara Akihiko
Department of Physical Therapy, Himeji Dokkyo University, Himeji, Japan.
J Muscle Res Cell Motil. 2009;30(3-4):145-52. doi: 10.1007/s10974-009-9183-z. Epub 2009 Jun 24.
Muscle atrophy is accompanied by a slow-to-fast transformation of the slow muscle, e.g., the soleus muscle, which is characterized by a decrease in the expression of the slow myosin heavy chain (MyHC) isoform. Heat stress before hindlimb unloading, i.e., thermal preconditioning, has been shown to reduce the rate of disuse-induced muscle atrophy. The present study examined whether thermal preconditioning could prevent a slow-to-fast transformation of the MyHC isoform through the induction of heat-shock protein (HSP) 72. Thermally preconditioned rats (Heat + HU) were individually placed in an environmentally controlled heat chamber for 1 h before hindlimb unloading for 2 weeks (HU). Although the mean fiber cross-sectional areas of the soleus muscle decreased in the HU and Heat + HU group, the loss of myofibrillar protein was attenuated in the Heat + HU group. Furthermore, a slow-to-fast transformation of MyHC isoform was inhibited in the Heat + HU group with the overexpression of HSP72. These results indicate that thermal preconditioning before hindlimb unloading attenuates the decrease of the slow MyHC isoform in the soleus muscle. Therefore, thermal preconditioning provides a new approach to prevent disuse-induced fiber type transformation of skeletal muscle.
肌肉萎缩伴随着慢肌(如比目鱼肌)向快肌的缓慢转变,其特征是慢肌球蛋白重链(MyHC)亚型的表达减少。后肢卸载前的热应激,即热预处理,已被证明可降低废用性肌肉萎缩的速率。本研究探讨热预处理是否可通过诱导热休克蛋白(HSP)72来防止MyHC亚型的慢到快转变。热预处理大鼠(热+后肢卸载)在进行2周后肢卸载(后肢卸载)前,先单独置于环境可控的热室中1小时。虽然比目鱼肌的平均纤维横截面积在单纯后肢卸载组和热预处理+后肢卸载组均减小,但热预处理+后肢卸载组肌原纤维蛋白的损失有所减轻。此外,热预处理+后肢卸载组中MyHC亚型的慢到快转变因HSP72的过表达而受到抑制。这些结果表明,后肢卸载前的热预处理可减轻比目鱼肌中慢MyHC亚型的减少。因此,热预处理为预防废用性骨骼肌纤维类型转变提供了一种新方法。