Esquisatto M A M, Joazeiro P P, Pimentel E R, Gomes L
Department of Morphology, University of Araras (UNIARARAS), 13600-970 Araras, SP, Brazil.
Cell Biol Int. 2007 Jun;31(6):570-7. doi: 10.1016/j.cellbi.2006.11.030. Epub 2006 Dec 3.
Biochemical and morphological aspects of fibrocartilages of calcaneal and deep digital flexor tendons in rats aged 30, 180 and 730 days were analyzed. In both tendons a stronger staining with Alcian blue, indicating the presence of proteoglycans, was detected in rats of 30 and 180 days. In animals 730 days old, it was restricted to the pericellular area. Ultrastructural analysis showed a more prominent pericellular matrix in calcaneal tendon compared to the deep digital flexor tendon. The biochemical analysis showed higher levels of proteins and glycosaminoglycans in the calcaneal tendon of 30-day-old rats compared to older rats. In the deep digital flexor tendon, no significant differences were observed between ages. The small proteoglycan, fibromodulin, was detected in both tendons of all ages, but in young rats it appeared to be running as a 210 kDa component, probably due to the association with collagen chains or self-association.
对30日龄、180日龄和730日龄大鼠跟腱和指深屈肌腱纤维软骨的生化和形态学方面进行了分析。在30日龄和180日龄的大鼠中,在两条肌腱中均检测到阿尔新蓝染色更强,表明存在蛋白聚糖。在730日龄的动物中,它局限于细胞周围区域。超微结构分析显示,与指深屈肌腱相比,跟腱中的细胞周围基质更突出。生化分析表明,与老年大鼠相比,30日龄大鼠跟腱中的蛋白质和糖胺聚糖水平更高。在指深屈肌腱中,各年龄组之间未观察到显著差异。在所有年龄的两条肌腱中均检测到小分子蛋白聚糖纤维调节素,但在幼鼠中,它似乎以210 kDa的成分存在,这可能是由于与胶原链的结合或自身结合。