Department of Veterinary Anatomy, School of Veterinary Medicine, Rakuno Gakuen University, Ebetsu, Japan.
Tissue Cell. 2010 Feb;42(1):9-17. doi: 10.1016/j.tice.2009.06.002. Epub 2009 Jul 28.
The aim of this study was to determine the characteristic differences in tendinocytes derived from tendons in the equine forelimb, superficial digital flexor tendon (SDFT), deep digital flexor tendon (DDFT) and common digital extensor tendon (CDET), in morphology, proliferation, collagen production ability and ability for synthesis of matrix metalloproteinases (MMPs). Significant differences were observed in cell number in vivo. The cellular number was largest in the SDFT and smallest in the CDET. The values of in vitro proliferation ratios and ability for synthesis of collagen and MMPs were largest in the SDFT and smallest in the CDET. Addition of TNFalpha to culture of all three types of tendinocytes increased the synthesis of both proMMP-9 (except CDET) and collagen and decreased proMMP-13 synthesis and had no effect on proMMP-2 synthesis. Flexor tendons in forelimbs (SDFT and DDFT) restore energy during locomotion and are more easily injured than are extensor tendons. This structural property would cause active ECM and MMPs synthesis. And CDET have very low turnover potential; in the small number of cells, low cellular proliferation, lower ability for synthesis of collagen and MMPs. The isolated tendinocytes provided much information on the characteristics and properties of tendons for the ECM turnover system and responsiveness of tendinocytes to complex inflammatory responses in tendinopathy.
本研究旨在确定源自马前肢的肌腱中的腱细胞(包括浅表背侧屈肌腱 [SDFT]、深背侧屈肌腱 [DDFT] 和普通趾伸肌腱 [CDET])在形态、增殖、胶原产生能力和基质金属蛋白酶(MMPs)合成能力方面的特征差异。在体内观察到细胞数量存在显著差异。SDFT 中的细胞数量最大,CDET 中的细胞数量最小。体外增殖比、胶原和 MMPs 合成能力的值在 SDFT 中最大,在 CDET 中最小。向三种类型的腱细胞培养物中添加 TNFalpha 会增加前 MMP-9(CDET 除外)和胶原的合成,减少前 MMP-13 的合成,对前 MMP-2 的合成没有影响。前肢的屈肌腱(SDFT 和 DDFT)在运动过程中恢复能量,比伸肌腱更容易受伤。这种结构特性会导致细胞外基质(ECM)和 MMPs 的合成活跃。而 CDET 的周转率潜力非常低;细胞数量少,细胞增殖能力低,胶原和 MMPs 的合成能力低。分离的腱细胞为 ECM 周转率系统和腱细胞对腱病中复杂炎症反应的反应性提供了有关肌腱特征和特性的大量信息。