Klein L, Player J S, Heiple K G, Bahniuk E, Goldberg V M
J Bone Joint Surg Am. 1982 Feb;64(2):225-30.
Various experimental methods for producing bone and ligament atrophy have yielded contradictory results. These methods include denervation, immobilization (both internal and external), and disarticulation. We studied a model of internal skeletal fixation for twelve weeks in dogs that were chronically prelabeled with 3H-tetracycline, 45Ca, and 3H-proline. Bone resorption was analyzed by the loss of 3H-tetracycline, and bone and soft-tissue mass were analyzed by the radiochemical and chemical analysis of calcium and collagen. The strength of the anterior cruciate ligament was studied in tension to failure when a fast rate of deformation was applied. Failure of the femur-ligament-tibia complex occurred through the insertion of the ligament into the tibia for both the experimental and the control limbs. Loss of collagen was greater in the tibia and femur than in the lateral meniscus and anterior cruciate ligament, and correlated with a mechanical failure via bone. No evidence for collagen replacement in atrophied tissues was found, but one-half of the resorbed calcium was conserved. The marked loss of 3H-tetracycline indicated that bone atrophy was the result of increased resorption of bone rather than decreased bone formation.
We have demonstrated significant atrophy of the soft tissues (lateral meniscus and anterior cruciate ligament) as well as of bone in immobilized joints of dogs. It is likely that the decrease in strength of the bone-ligament-bone complex is related to this atrophy of soft tissues and bone around the joint.
各种用于导致骨骼和韧带萎缩的实验方法得出了相互矛盾的结果。这些方法包括去神经支配、固定(内固定和外固定)以及关节离断术。我们对长期用³H - 四环素、⁴⁵Ca和³H - 脯氨酸预先标记的犬进行了为期十二周的内骨骼固定模型研究。通过³H - 四环素的丢失分析骨吸收,通过对钙和胶原蛋白的放射化学及化学分析来分析骨和软组织质量。当以快速变形速率施加张力直至失效时,研究前交叉韧带的强度。实验肢体和对照肢体的股骨 - 韧带 - 胫骨复合体均通过韧带在胫骨的附着处发生失效。胫骨和股骨中胶原蛋白的丢失比外侧半月板和前交叉韧带中更严重,并且与通过骨的机械性失效相关。在萎缩组织中未发现胶原蛋白替代的证据,但有一半被吸收的钙得以保留。³H - 四环素的显著丢失表明骨萎缩是骨吸收增加而非骨形成减少的结果。
我们已证明犬固定关节中的软组织(外侧半月板和前交叉韧带)以及骨出现了明显萎缩。骨 - 韧带 - 骨复合体强度的降低很可能与关节周围软组织和骨的这种萎缩有关。