Ishihara Akihiko, Kawano Fuminori, Wang Xiao Dong, Ohira Yoshinobu
Laboratory of Neurochemistry, Graduate School of Human and Environmental Studies, Kyoto University.
Biol Sci Space. 2004 Nov;18(3):128-9.
Hindlimb suspension of rats induces induces fiber atrophy and type shift of muscle fibers. In contrast, there is no change in the cell size or oxidative enzyme activity of spinal motoneurons innervating muscle fibers. Growth-related increases in the cell size of muscle fibers and their spinal motoneurons are inhibited by hindlimb suspension. Exposure to microgravity induces atrophy of fibers (especially slow-twitch fibers) and shift of fibers from slow- to fast-twitch type in skeletal muscles (especially slow, anti-gravity muscles). In addition, a decrease in the oxidative enzyme activity of spinal motoneurons innervating slow-twitch fibers and of sensory neurons in the dorsal root ganglion is observed following exposure to microgravity. It is concluded that neuromuscular activities are important for maintaining metabolism and function of neuromuscular systems at an early postnatal development and that gravity effects both efferent and afferent neural pathways.
大鼠后肢悬吊会导致肌纤维萎缩和肌纤维类型转变。相比之下,支配肌纤维的脊髓运动神经元的细胞大小或氧化酶活性没有变化。后肢悬吊会抑制与生长相关的肌纤维及其脊髓运动神经元细胞大小的增加。暴露于微重力环境会导致骨骼肌纤维(尤其是慢肌纤维)萎缩,以及纤维从慢肌类型向快肌类型转变(尤其是慢肌、抗重力肌)。此外,暴露于微重力环境后,观察到支配慢肌纤维的脊髓运动神经元和背根神经节感觉神经元的氧化酶活性降低。得出的结论是,神经肌肉活动对于在出生后早期发育阶段维持神经肌肉系统的代谢和功能很重要,并且重力会影响传出和传入神经通路。