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Effects of in vivo static compressive loading on aggrecan and type II and X collagens in the rat growth plate extracellular matrix.

机译:体内静态压缩负荷对大鼠生长板细胞外基质中的聚集蛋白聚糖以及II型和X型胶原的影响。

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摘要

Mechanical loads are essential to normal bone growth, but excessive loads can lead to progressive deformities. In addition, growth plate extracellular matrix remodelling is essential to regulate the normal longitudinal bone growth process and to ensure physiological bone mineralization. In order to investigate the effects of static compression on growth plate extracellular matrix using an in vivo animal model, a loading device was used to precisely apply a compressive stress of 0.2 MPa for two weeks on the seventh caudal vertebra (Cd7) of rats during the pubertal growth spurt. Control, sham and loaded groups were studied. Growth modulation was quantified based on calcein labelling, and three matrix components (type II and X collagens, and aggrecan) were assessed using immunohistochemistry/safranin-O staining. As well, extracellular matrix components and enzymes (MMP-3 and -13, ADAMTS-4 and -5) were studied by qRT-PCR. Loading reduced Cd7 growth by 29% (p<0.05) and 15% (p=0.07) when compared to controlsand shams respectively. No significant change could be observed in the mRNA expression of collagens and the proteolytic enzyme MMP-13. However, MMP-3 was significantly increased in the loaded group as compared to the control group (p<0.05). No change was observed in aggrecan and ADAMTS-4 and -5 expression. Low immunostaining for type II and X collagens was observed in 83% of the loaded rats as compared to the control rats. This in vivo study shows that, during pubertal growth spurt, two-week static compression reduced caudal vertebrae growth rates; this mechanical growth modulation occurred with decreased type II and X collagen proteins in the growth plate.
机译:机械负载对于正常的骨骼生长至关重要,但是过大的负载可能会导致进行性畸形。此外,生长板细胞外基质重塑对于调节正常的纵向骨生长过程并确保生理性骨矿化至关重要。为了使用体内动物模型研究静态压迫对生长板细胞外基质的影响,在上腹期间,使用加载装置将0.2 MPa的压应力精确地施加在大鼠的第七尾椎骨(Cd7)上两周。青春期生长突增。对照组,假组和负荷组进行了研究。基于钙黄绿素标记定量生长调节,并使用免疫组织化学/番红蛋白-O染色评估三种基质成分(II型和X型胶原蛋白和聚集蛋白聚糖)。同样,通过qRT-PCR研究了细胞外基质成分和酶(MMP-3和-13,ADAMTS-4和-5)。与对照和and腐相比,负载分别使Cd7生长降低29%(p <0.05)和15%(p = 0.07)。胶原蛋白和蛋白水解酶MMP-13的mRNA表达未见明显变化。然而,与对照组相比,负荷组中的MMP-3显着增加(p <0.05)。在聚集蛋白聚糖和ADAMTS-4和-5表达中未观察到变化。与对照大鼠相比,在83%的负荷大鼠中观察到II型和X型胶原蛋白的免疫染色低。这项体内研究表明,在青春期生长突增期间,两周的静态压迫降低了尾椎骨的生长速度。这种机械生长调节发生在生长板中II型和X型胶原蛋白减少的情况下。

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