Riley D A, Thompson J L, Krippendorf B B, Slocum G R
Department of Cellular Biology and Anatomy, Medical College of Wisconsin, Milwaukee, USA.
Basic Appl Myol. 1995;5(2):139-45.
Hindlimb suspension unloading (HSU) and spaceflight microgravity induce atrophy of the slow adductor longus muscle fibers which, following reloading, exhibit eccentric contraction (EC)-like lesions (abnormal widening of sarcomeres with A band disruption and excessively wavy, extracted Z lines). These lesions are similar morphologically to those produced in normal muscles after strenuous eccentric exercise. It appears that atrophic muscles exhibit increased susceptibility to eccentric damage because lesions are produced during nonstressful voluntary movements upon return to weightbearing. The EC-like lesions are absent in the unweighted conditions, but appear in HSU rats 15-60 minutes after reloading and in space-flown rates about 4 hrs after landing. By 12 hours, many EC-like lesioned sarcomeres are fully covered by longitudinal patches of Z line-like material which increases in density by 48 hours, producing the so-called "Z line streaming" morphology. In this case, Z line streaming is indicative of rapid repair of damaged sarcomeres rather than the onset of sarcomere breakdown. Immunoelectron microscopy is necessary to determine the composition of this dense material. By 9 days of reloading at 1 gravity, sarcomeres have regained normal structure, except for very rare persistence of faint Z patches. The morphological data indicate that Z patches serve at least two functions: 1) to permit contractile force to be transmitted across the damaged sarcomeres and 2) to provide a scaffold upon which sarcomeres are reconstructed in an active functional muscle.
后肢悬吊卸载(HSU)和太空飞行微重力会导致慢肌长收肌纤维萎缩,重新加载后,这些纤维会出现类似离心收缩(EC)的损伤(肌节异常增宽,A带破坏,Z线过度弯曲且提取后呈波浪状)。这些损伤在形态上与剧烈离心运动后正常肌肉中产生的损伤相似。似乎萎缩的肌肉对离心损伤的易感性增加,因为在恢复负重后的无应激自主运动过程中会产生损伤。在失重条件下不存在类似EC的损伤,但在重新加载后15 - 60分钟的HSU大鼠中出现,在着陆后约4小时的太空飞行大鼠中也出现。到12小时时,许多类似EC损伤的肌节被纵向的Z线样物质斑块完全覆盖,这种物质的密度在48小时时增加,产生所谓的“Z线流”形态。在这种情况下,Z线流表明受损肌节的快速修复,而不是肌节破坏的开始。需要免疫电子显微镜来确定这种致密物质的组成。在1重力下重新加载9天后,除了非常罕见的微弱Z斑块持续存在外,肌节已恢复正常结构。形态学数据表明,Z斑块至少有两个功能:1)允许收缩力穿过受损的肌节进行传递;2)提供一个支架,在活跃的功能性肌肉中,肌节在其上进行重建。