Goldspink Geoffrey, Harridge Stephen D R
Aximygen/UCL Biomedica, Division of Surgery, Royal Free and University College Medical School, The Archway Campus, 2-10 Highgate Hill, London N19 5LW, UK.
Exp Gerontol. 2004 Oct;39(10):1433-8. doi: 10.1016/j.exger.2004.08.010.
Loss of muscle mass (sarcopenia) is one of the main problems associated with ageing as it has major health care as well as socioeconomic implications. The growth hormone (GH)/IGF-I axis is regarded as an important regulator of muscle mass. However, it is now appreciated that other tissues in addition to the liver express IGF-I and that there are local as well as systemic forms of IGF-I which have different functions. At least two different kinds of IGF-I that are expressed by skeletal muscle are derived from the IGF-I gene by alternative splicing, one of which is expressed in response to physical activity which has now been called 'mechano growth factor' (MGF). The other is similar to the systemic or liver type (IGF-IEa) and is important as the provider of mature IGF-I required for upregulating protein synthesis. MGF differs from systemic IGF-IEa in that it has a different peptide sequence which is responsible for replenishing the satellite (stem) cells in skeletal muscle. The ability to produce MGF declines with age, and this is commensurate with the decline in circulating GH levels. GH treatment up regulates the level of IGF-I gene expression in older people and when combined with resistance exercise more is spliced towards MGF and hence should improve the ability of muscle to respond to physical activity. The possibility of ameliorating sarcopenia using MGF is discussed.
肌肉量减少(肌肉减少症)是与衰老相关的主要问题之一,因为它对医疗保健以及社会经济都有重大影响。生长激素(GH)/胰岛素样生长因子-I(IGF-I)轴被认为是肌肉量的重要调节因子。然而,现在人们认识到,除肝脏外,其他组织也表达IGF-I,并且存在局部和全身形式的IGF-I,它们具有不同的功能。骨骼肌表达的至少两种不同类型的IGF-I是通过IGF-I基因的可变剪接产生的,其中一种是在对体育活动的反应中表达的,现在被称为“机械生长因子”(MGF)。另一种类似于全身型或肝脏型(IGF-IEa),作为上调蛋白质合成所需成熟IGF-I的提供者很重要。MGF与全身IGF-IEa的不同之处在于它具有不同的肽序列,可以补充骨骼肌中的卫星(干)细胞。产生MGF的能力会随着年龄的增长而下降,这与循环GH水平的下降是一致的。GH治疗可上调老年人IGF-I基因表达水平,当与抗阻运动相结合时,更多的剪接产物会导向MGF,因此应该会提高肌肉对体育活动的反应能力。本文讨论了使用MGF改善肌肉减少症的可能性。