Department of Animal and Marine Bioresource Sciences, Graduate School of Agriculture.
Anim Sci J. 2012 Oct;83(10):712-7. doi: 10.1111/j.1740-0929.2012.01057.x. Epub 2012 Aug 27.
Successful regeneration and remodeling of neuromuscular junctions are critical for restoring functional capacities and properties of skeletal muscle after damage, and axon-guidance molecules may be involved in the signaling that regulates such restoration. Recently, we found that early-differentiated satellite cells up-regulate a secreted neural chemorepellent Sema3A upon in vivo muscle-crush injury. The study also revealed that Sema3A expression is up-regulated in primary satellite-cell cultures in response to hepatocyte growth factor (HGF) and basic fibroblast growth factor (FGF2) and is prevented by transforming growth factor (TGF)-β2, 3. In order to verify the physiological significance of this regulation in vitro, the present study was designed to estimate the time-course of extracellular HGF, FGF2 and TGF-β3 concentrations after crush-injury of Gastrocnemius muscle in the rat lower hind-limb, using a combination of a non-homogenization/non-spin extraction of extracellular wound fluids and enhanced chemiluminescence-Western blotting analyses. Results clearly demonstrated that active HGF and FGF2 are prevalent in 2-8 days post-crush, whereas active TGF-β3 increases after 12 days, providing a better understanding of the time-coordinated levels of HGF, FGF2 and TGF-β3 that drive regulation of Sema3A expression during regenerative intramuscular moto-neuritogenesis.
神经肌肉接头的成功再生和重塑对于损伤后恢复骨骼肌的功能能力和特性至关重要,轴突导向分子可能参与调节这种修复的信号转导。最近,我们发现早期分化的卫星细胞在体内肌肉挤压损伤后上调了一种分泌的神经化学引诱物 Sema3A。该研究还表明,初级卫星细胞培养物中 Sema3A 的表达在受到肝细胞生长因子 (HGF) 和碱性成纤维细胞生长因子 (FGF2) 刺激时会上调,并被转化生长因子 (TGF)-β2、3 所阻止。为了验证这种体外调节的生理意义,本研究旨在通过非匀浆/非旋转提取细胞外伤口液并结合增强化学发光-Western 印迹分析,估计大鼠后肢腓肠肌挤压损伤后细胞外 HGF、FGF2 和 TGF-β3 浓度的时间过程。结果清楚地表明,活性 HGF 和 FGF2 在挤压后 2-8 天内普遍存在,而活性 TGF-β3 在 12 天后增加,这更好地理解了在再生性肌内运动神经元发生过程中驱动 Sema3A 表达调节的 HGF、FGF2 和 TGF-β3 的时间协调水平。