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跟腱中生长调节素C免疫反应性随机械负荷呈动态变化。

Somatomedin C immunoreactivity in the Achilles tendon varies in a dynamic manner with the mechanical load.

作者信息

Hansson H A, Engström A M, Holm S, Rosenqvist A L

机构信息

Department of Histology, University of Gothenburg, Sweden.

出版信息

Acta Physiol Scand. 1988 Oct;134(2):199-208. doi: 10.1111/j.1748-1716.1988.tb08480.x.

Abstract

Distribution of the trophic peptide somatomedin C (Sm-C; insulin-like growth factor I; IGF-I) immunoreactivity was mapped in normal Achilles and tibialis anterior tendons. The spindle-shaped tendon fibroblasts showed faint perinuclear staining. Fibroblasts in the paratenon mostly had a more intense IGF-I immunoreactivity, i.e. faint to moderate. When analysing either tendon in detail, areas with more intense IGF-I immunoreactivity could be recognized and seemed to correlate with areas of high mechanical stress. Increased mechanical load induced over 3 days elevated IGF-I immunoreactivity throughout the cytoplasm of tendon fibroblasts. Peak intensity was reached in 7 days, and thereafter the IGF-I immunoreactivity seemed to decrease irrespective of persistent high mechanical load. Training the animals on a treadmill for from 20 up to 60 min per day for 5 days induced after 3-5 days increased IGF-I immunoreactivity throughout the cytoplasm of the tendon and paratenon fibroblasts. Sudden curtailment of loading the Achilles tendon resulted in a marked reduction of the IGF-I immunoreactivity in most fibroblasts within 3 days. After a week only a small number of tendon fibroblasts showed any IGF-I immunoreactivity. The IGF-I immunoreactivity of tendon fibroblasts thus correlates to mechanical loading of the tendon. It is proposed that IGF-I may have a trophic influence on tendon and paratenon cells by autocrine and/or paracrine mechanisms.

摘要

在正常跟腱和胫前肌腱中绘制了营养肽生长调节素C(Sm-C;胰岛素样生长因子I;IGF-I)免疫反应性的分布图。梭形的肌腱成纤维细胞显示出微弱的核周染色。腱旁组织中的成纤维细胞大多具有更强的IGF-I免疫反应性,即弱阳性至中等强度。在详细分析任何一条肌腱时,可识别出具有更强IGF-I免疫反应性的区域,这些区域似乎与高机械应力区域相关。在3天内增加机械负荷会使肌腱成纤维细胞的整个细胞质中的IGF-I免疫反应性升高。在7天达到峰值强度,此后,无论持续的高机械负荷如何,IGF-I免疫反应性似乎都会下降。每天在跑步机上训练动物20至60分钟,持续5天,3至5天后会导致肌腱和腱旁组织成纤维细胞的整个细胞质中的IGF-I免疫反应性增加。突然停止对跟腱的负荷会导致大多数成纤维细胞内的IGF-I免疫反应性在3天内显著降低。一周后,只有少数肌腱成纤维细胞显示出任何IGF-I免疫反应性。因此,肌腱成纤维细胞的IGF-I免疫反应性与肌腱的机械负荷相关。有人提出,IGF-I可能通过自分泌和/或旁分泌机制对肌腱和腱旁组织细胞产生营养作用。

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