Scott A, Danielson P, Abraham T, Fong G, Sampaio A V, Underhill T M
Department of Physical Therapy, University of British Columbia, and Centre for Hip Health and Mobility, Vancouver Coastal Health Research Institute, Vancouver, British Columbia, Canada.
J Musculoskelet Neuronal Interact. 2011 Jun;11(2):124-32.
Following tendon injury, cartilage, bone and fat metaplasia are often observed, making the optimization of tenocyte differentiation an important clinical goal. In this study we examined the effect of static and cyclic mechanical loading on the expression of genes which play a role in tenocyte differentiation and function, namely scleraxis (Scx) and Type I collagen (Col1a1), and determined the effect of varying mechanical parameters including (1) static vs dynamic load, (2) increasing strain magnitude, (3) inclusion of 10 s rest periods, and (4) increasing cycle number. Cyclic loading resulted in a greater increase of tenocyte gene expression than static loading over 3 weeks in culture. Increasing strain levels potentiated the induction of tenocyte genes. The insertion of a 10 s rest periods further enhanced tenocyte gene expression, as did increasing repetition numbers. These results suggest that mechanical signaling exerts an important influence on the expression of genes which play a role in determining the tendon phenotype. Further work is required to confirm and extend these findings in primary cells such as resident tendon progenitor/stem cells, in order to provide an improved understanding of biology from which optimized rehabilitation programs can be developed.
肌腱损伤后,常观察到软骨、骨和脂肪化生,因此优化肌腱细胞分化成为一个重要的临床目标。在本研究中,我们检测了静态和循环机械负荷对在肌腱细胞分化和功能中起作用的基因(即硬骨素(Scx)和I型胶原蛋白(Col1a1))表达的影响,并确定了不同机械参数的作用,包括(1)静态负荷与动态负荷,(2)增加应变幅度,(3)加入10秒的休息期,以及(4)增加循环次数。在3周的培养过程中,循环负荷比静态负荷导致肌腱细胞基因表达有更大程度的增加。增加应变水平增强了肌腱细胞基因的诱导。加入10秒的休息期进一步增强了肌腱细胞基因表达,增加重复次数也有同样效果。这些结果表明,机械信号对在决定肌腱表型中起作用的基因表达有重要影响。需要进一步的研究来在诸如驻留肌腱祖细胞/干细胞等原代细胞中证实和扩展这些发现,以便更好地理解生物学原理,从而制定出优化的康复方案。