Asundi Krishna R, Rempel David M
Ergonomics Program, Department of Bioengineering, University of California, Berkeley, 1301 South 46th Street, Building 163, Richmond, CA 94804, USA.
Ann Biomed Eng. 2008 Feb;36(2):237-43. doi: 10.1007/s10439-007-9427-2. Epub 2008 Jan 3.
Tendon cells respond to their mechanical environment by synthesizing and degrading the surrounding matrix. This study examined how expression of genes associated with tendon degeneration is affected by static loads. Forty flexor tendons from 10 New Zealand White rabbits were harvested and secured in a tissue loading system. A static load of 0, 2, 4, or 6 MPa was applied to tendons for 20 h. MMP-1, IL-1beta, COX-2, GAPDH, and 18s mRNA expression was measured by qRT-PCR. MMP-1 expression in tendons loaded to 6 MPa was significantly increased 259% compared to tendons loaded to 4 MPa. Relative to a 0 MPa load, IL-1beta expression was inhibited with load at 4 MPa (48%) while COX-2 expression was increased at 6 MPa (219%). A polynomial regression analysis found a significant positive correlation between creep and expression of MMP-1 (R(2) = 0.53, p < 0.001) and IL-1beta (R(2) = 0.55, p < 0.001). The results of this study indicate that moderate load inhibits IL-1beta and high load stimulates COX-2 relative to stress shielding. MMP-1 expression is up-regulated with high loads compared to moderate loads. The correlation between creep and expression suggests that the pathway for MMP-1 and IL-1beta expression, leading eventually to tendon degeneration, may be regulated by the biomechanical factor creep.
肌腱细胞通过合成和降解周围基质来响应其力学环境。本研究探讨了与肌腱退变相关的基因表达如何受到静态负荷的影响。从10只新西兰白兔身上采集了40条屈肌腱,并固定在组织加载系统中。对肌腱施加0、2、4或6兆帕的静态负荷,持续20小时。通过qRT-PCR检测MMP-1、IL-1β、COX-2、GAPDH和18s mRNA的表达。与加载4兆帕的肌腱相比,加载6兆帕的肌腱中MMP-1表达显著增加了259%。相对于0兆帕的负荷,4兆帕负荷时IL-1β表达受到抑制(48%),而6兆帕时COX-2表达增加(219%)。多项式回归分析发现,蠕变与MMP-1表达(R(2)=0.53,p<0.001)和IL-1β表达(R(2)=0.55,p<0.001)之间存在显著正相关。本研究结果表明,相对于应力屏蔽,中等负荷抑制IL-1β,高负荷刺激COX-2。与中等负荷相比,高负荷时MMP-1表达上调。蠕变与表达之间的相关性表明,最终导致肌腱退变的MMP-1和IL-1β表达途径可能受生物力学因素蠕变的调节。