Hayashi M, Zhao C, An K-N, Amadio P C
Biomechanics Laboratory, Division of Orthopedic Research, Mayo Clinic, Rochester, MN, USA.
J Hand Surg Eur Vol. 2011 May;36(4):271-9. doi: 10.1177/1753193410394521. Epub 2011 Jan 31.
The effects of growth differentiation factor-5 (GDF-5) and bone marrow stromal cells (BMSCs) on tendon healing were investigated under in vitro tissue culture conditions. BMSCs and GDF-5 placed in a collagen gel were interpositioned between the cut ends of dog flexor digitorum profundus tendons. The tendons were randomly assigned into four groups: 1) repaired tendon without gel; 2) repaired tendon with BMSC-seeded gel; 3) repaired tendon with GDF-5 gel without cells; and 4) repaired tendon with GDF-5 treated BMSC-seeded gel. At 2 and 4 weeks, the maximal strength of repaired tendons with GDF-5 treated BMSCs-seeded gel was significantly higher than in tendons without gel interposition. However, neither BMSCs nor GDF-5 alone significantly increased the maximal strength of healing tendons at 2 or 4 weeks. These results suggest that the combination of BMSCs and GDF-5 accelerates tendon healing, but either BMSCs or GDF-5 alone are not effective in this model.
在体外组织培养条件下,研究了生长分化因子-5(GDF-5)和骨髓间充质干细胞(BMSCs)对肌腱愈合的影响。将置于胶原凝胶中的BMSCs和GDF-5置于犬指深屈肌腱的断端之间。肌腱被随机分为四组:1)无凝胶修复的肌腱;2)接种BMSC的凝胶修复的肌腱;3)无细胞的GDF-5凝胶修复的肌腱;4)经GDF-5处理的接种BMSC的凝胶修复的肌腱。在2周和4周时,经GDF-5处理的接种BMSC的凝胶修复的肌腱的最大强度显著高于无凝胶植入的肌腱。然而,单独的BMSCs或GDF-5在2周或4周时均未显著提高愈合肌腱的最大强度。这些结果表明,BMSCs和GDF-5的组合可加速肌腱愈合,但在该模型中单独的BMSCs或GDF-5均无效。