McCaig Institute for Bone & Joint Health, Faculty of Medicine, University of Calgary, Calgary, AL, Canada.
Connect Tissue Res. 2012;53(4):277-84. doi: 10.3109/03008207.2011.637652. Epub 2011 Dec 7.
The human anterior cruciate ligament (ACL) is a composite structure of two anatomically distinct bundles: an anteromedial (AM) and posterolateral (PL) bundles. Tendons are often used as autografts for surgical reconstruction of ACL following severe injury. However, despite successful surgical reconstruction, some people experience re-rupture and later development of osteoarthritis. Understanding the structure and molecular makeup of normal ACL is essential for its optimal replacement. Reportedly the two bundles display different tensions throughout joint motion and may be fundamentally different. This study assessed the similarities and differences in ultrastructure and molecular composition of the AM and PL bundles to test the hypothesis that the two bundles of the ACL develop unique characteristics with maturation. ACLs from nine mature and six immature sheep were compared. The bundles were examined for mRNA and protein levels of collagen types I, III, V, and VI, and two proteoglycans. The fibril diameter composition of the two bundles was examined with transmission electron microscopy. Maturation does alter the molecular and structural composition of the two bundles of ACL. Although the PL band appears to mature slower than the AM band, no significant differences were detected between the bundles in the mature animals. We thus reject our hypothesis that the two ACL bundles are distinct. The two anatomically distinct bundles of the sheep ACL can be considered as two parts of one structure at maturity and material that would result in a structure of similar functionality can be used to replace each ACL bundle in the sheep.
人类前交叉韧带(ACL)是由两个解剖学上不同的束组成的复合结构:前内侧(AM)束和后外侧(PL)束。在严重受伤后,肌腱常被用作 ACL 外科重建的自体移植物。然而,尽管手术重建成功,一些人仍会再次断裂,并随后发展为骨关节炎。了解正常 ACL 的结构和分子组成对于其最佳替代至关重要。据报道,两个束在整个关节运动中显示出不同的张力,并且可能在根本上不同。本研究评估了 AM 和 PL 束的超微结构和分子组成的相似性和差异,以检验以下假设:即 ACL 的两个束在成熟过程中会发展出独特的特征。比较了来自 9 只成熟和 6 只未成熟绵羊的 ACL。检查了两个束的 I、III、V 和 VI 型胶原以及两种蛋白聚糖的 mRNA 和蛋白水平。使用透射电子显微镜检查了两个束的纤维直径组成。成熟确实改变了 ACL 的两个束的分子和结构组成。尽管 PL 带似乎比 AM 带成熟得更慢,但在成熟动物中,两个束之间没有检测到显著差异。因此,我们拒绝了以下假设:即 ACL 的两个束是不同的。绵羊 ACL 的两个解剖学上不同的束在成熟时可以被视为一个结构的两个部分,并且可以使用相似功能的材料来替代绵羊的每个 ACL 束。