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机械加载的跖肌腱中胰岛素样生长因子I、胰岛素样生长因子结合蛋白和胶原蛋白mRNA的表达

Expression of insulin-like growth factor I, insulin-like growth factor binding proteins, and collagen mRNA in mechanically loaded plantaris tendon.

作者信息

Olesen Jens L, Heinemeier Katja M, Haddad Fadia, Langberg Henning, Flyvbjerg Allan, Kjaer Michael, Baldwin Kenneth M

机构信息

Institute of Sports Medicine, Bispebjerg Hospital, DK-2400 Copenhagen, Denmark.

出版信息

J Appl Physiol (1985). 2006 Jul;101(1):183-8. doi: 10.1152/japplphysiol.00636.2005.

Abstract

Insulin-like growth factor I (IGF-I) is known to exert an anabolic effect on tendon fibroblast production of collagen. IGF-I's regulation is complex and involves six different IGF binding proteins (IGFBPs). Of these, IGFBP-4 and -5 could potentially influence the effect of IGF-I in the tendon because they both are produced in fibroblast; however, the response of IGFBP-4 and -5 to mechanical loading and their role in IGF-I regulation in tendinous tissue are unknown. A splice variant of IGF-I, mechano-growth factor (MGF) is upregulated and known to be important for adaptation in loaded muscle. However, it is not known whether MGF is expressed and upregulated in mechanically loaded tendon. This study examined the effect of mechanical load on tendon collagen mRNA in relation to changes in the IGF-I systems mRNA expression. Data were collected at 2, 4, 8 and 16 days after surgical removal of synergistic muscle to the plantaris muscle of the rat, thus increasing the load to plantaris muscle and tendon. Nearly a doubling of the tendon mass was observed after 16 days of loading. A rapid rise in tendon procollagen III mRNA was seen after 2 days whereas the increase in procollagen I mRNA was significant from day 8. MGF was expressed and upregulated in loaded tendon tissue with a faster response than IGF-I, which was increased from day 8. Finally, IGFBP-4 mRNA was increased with a time pattern similar to procollagen III, whereas IGFBP-5 decreased at day 8. In conclusion, loading of tendon tissue results in an upregulation of IGF-I, IGFBP-4, and procollagen and is associated with an increase in tendon mass. Also, MGF is expressed with an early upregulation in loaded tendon tissue. We suggest that the IGF-I system could be involved in collagen synthesis in tendon in response to mechanical loading.

摘要

胰岛素样生长因子I(IGF-I)已知对肌腱成纤维细胞产生胶原蛋白具有合成代谢作用。IGF-I的调节很复杂,涉及六种不同的IGF结合蛋白(IGFBPs)。其中,IGFBP-4和-5可能会影响IGF-I在肌腱中的作用,因为它们都在成纤维细胞中产生;然而,IGFBP-4和-5对机械负荷的反应及其在肌腱组织中IGF-I调节中的作用尚不清楚。IGF-I的一种剪接变体,机械生长因子(MGF)被上调,并且已知对负荷肌肉的适应性很重要。然而,尚不清楚MGF在机械负荷的肌腱中是否表达并上调。本研究检查了机械负荷对肌腱胶原蛋白mRNA的影响以及与IGF-I系统mRNA表达变化的关系。在手术切除大鼠比目鱼肌的协同肌后第2、4、8和16天收集数据,从而增加了比目鱼肌和肌腱的负荷。负荷16天后观察到肌腱质量几乎翻倍。术后2天肌腱前胶原III mRNA迅速升高,而前胶原I mRNA从第8天开始显著增加。MGF在负荷的肌腱组织中表达并上调,其反应比IGF-I更快,IGF-I从第8天开始增加。最后,IGFBP-4 mRNA随时间的变化模式与前胶原III相似,而IGFBP-5在第8天下降。总之,肌腱组织负荷导致IGF-I、IGFBP-4和前胶原上调,并与肌腱质量增加有关。此外,MGF在负荷的肌腱组织中早期上调表达。我们认为IGF-I系统可能参与了肌腱对机械负荷的胶原蛋白合成反应。

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