Kirk Sonnie P, Oldham Jenny M, Jeanplong Ferenc, Bass John J
Functional Muscle Genomics, AgResearch, Ruakura Agricultural Research Centre, Hamilton, New Zealand.
J Histochem Cytochem. 2003 Dec;51(12):1611-20. doi: 10.1177/002215540305101205.
This study tested whether administration of insulin-like growth factor-II (IGF-II) enhances muscle regeneration. Rat biceps femoris muscle was damaged with notexin and then IGF-II was administered for up to 7 days. Results show that the proportion of nuclei containing or surrounded by immunoreactivity to MyoD, myogenin, and developmental myosin heavy chain (dMHC) is less in the IGF-II treatment group relative to the control group on days 1 (p=0.057), 2 (p=0.034), and 3 (p=0.047), respectively. This indicates a delay in muscle precursor cell (MPC) proliferation and differentiation with IGF-II administration. This effect was not associated with decreased binding capacity of the type 1 IGF receptor, as determined by receptor autoradiography in day 1 muscle sections (NS), but was associated with inhibition of phagocytic processes. The cross-sectional area of regenerating muscle fibers was significantly greater in the IGF-II treatment group than in the control group by day 7 (p=0.0092). The enhancing effect of IGF-II on late muscle regeneration, when the main process taking place is fiber enlargement, coincides with the period in which IGF-II is normally expressed by regenerating muscle, indicating that greater endogenous production of IGF-II would be associated with improved regeneration.
本研究检测了胰岛素样生长因子-II(IGF-II)的施用是否能增强肌肉再生。用蛇毒磷酸二酯酶损伤大鼠股二头肌,然后施用IGF-II,持续7天。结果显示,在第1天(p = 0.057)、第2天(p = 0.034)和第3天(p = 0.047),IGF-II治疗组中含有或被MyoD、肌细胞生成素和发育性肌球蛋白重链(dMHC)免疫反应性包围的细胞核比例相对于对照组分别较低。这表明施用IGF-II会延迟肌肉前体细胞(MPC)的增殖和分化。如通过第1天肌肉切片的受体放射自显影所确定的,这种效应与1型IGF受体的结合能力降低无关(无显著性差异),但与吞噬过程的抑制有关。到第7天,IGF-II治疗组再生肌纤维的横截面积显著大于对照组(p = 0.0092)。IGF-II对晚期肌肉再生的增强作用,即在主要发生的过程是纤维增大时,与再生肌肉正常表达IGF-II的时期相吻合,这表明内源性IGF-II的产生增加与再生改善相关。