Spindler K P, Dawson J M, Stahlman G C, Davidson J M, Nanney L B
Deportment of Orthopaedics and Rehabilitation, Vanderbilt Sports Medicine Center, Nashville, TN 37212, USA.
J Orthop Res. 2002 Mar;20(2):318-24. doi: 10.1016/S0736-0266(01)00107-3.
We investigated biomechanical and collagen expression in a healing bilateral rabbit medial collateral ligament (MCL) model to human recombinant transforming growth factor beta (rhTGF-beta2) at three and six weeks. Each rabbit had rhTGF-beta2 in a bioabsorbable pellet administered in one side, with the contralateral side serving as control (no rhTGF-beta2). All MCL healed with rhTGF-beta2 producing a profoundly increased scar mass at three weeks which decreased in size toward control at six weeks. In-situ hybridization demonstrated collagen expression (type I and III) no different than control at three weeks, but by six weeks elevated expression of type I was seen. Biomechanical analysis at three weeks showed no effect of rhTGF-beta2 on structural properties. However, at six weeks rhTGF-beta2 significantly inhibited both the maximum load (p < 0.05) and energy absorbed (p < 0.05) with no change in stiffness. Despite increased type I collagen expression and profound increase in early scar mass, rhTGF-beta2 did not improve the structural properties. Whether the dose or mode of delivery is responsible for decline in structural properties cannot be determined in this design. We hypothesize investigations of healing ligaments to cytokines should have biologic and biomechanical properties correlated in the same study at a minimum of two time points.
我们在双侧兔内侧副韧带(MCL)愈合模型中,研究了在3周和6周时人重组转化生长因子β(rhTGF-β2)对生物力学及胶原蛋白表达的影响。每只兔子一侧植入含rhTGF-β2的可生物吸收微丸,对侧作为对照(无rhTGF-β2)。所有MCL均愈合,rhTGF-β2在3周时产生明显增加的瘢痕块,到6周时尺寸向对照减小。原位杂交显示,3周时胶原蛋白表达(I型和III型)与对照无差异,但到6周时可见I型胶原蛋白表达升高。3周时的生物力学分析表明,rhTGF-β2对结构特性无影响。然而,6周时rhTGF-β2显著抑制了最大负荷(p<0.05)和吸收能量(p<0.05),而刚度无变化。尽管I型胶原蛋白表达增加且早期瘢痕块显著增大,但rhTGF-β2并未改善结构特性。在此设计中无法确定结构特性下降是由剂量还是给药方式所致。我们推测,在同一研究中,对愈合韧带与细胞因子的研究应至少在两个时间点将生物学和生物力学特性关联起来。