Cooper James A, Lu Helen H, Ko Frank K, Freeman Joseph W, Laurencin Cato T
Department of Orthopaedic Surgery, University of Virginia, 400 Ray C. Hunt Drive, Suite 330, Charlottesville, VA 22903, USA.
Biomaterials. 2005 May;26(13):1523-32. doi: 10.1016/j.biomaterials.2004.05.014.
The anterior cruciate ligament (ACL) is the major intraarticular ligamentous structure of the knee, which functions as a joint stabilizer. It is the most commonly injured ligament of the knee, with over 150,000 ACL surgeries performed annually in the United States. Due to limitations associated with current grafts for ACL reconstruction, there is a significant demand for alternative graft systems. We report here the development of a biodegradable, tissue-engineered ACL graft. Several design parameters including construct architecture, porosity, degradability, and cell source were examined. This graft system is based on polymeric fibers of polylactide-co-glycolide 10:90, and it was fabricated using a novel, three-dimensional braiding technology. The resultant micro-porous scaffold exhibited optimal pore diameters (175-233 microm) for ligament tissue ingrowth, and initial mechanical properties of the construct approximate those of the native ligament.
前交叉韧带(ACL)是膝关节主要的关节内韧带结构,起到关节稳定器的作用。它是膝关节最常受伤的韧带,在美国每年有超过15万例ACL手术。由于目前用于ACL重建的移植物存在局限性,对替代移植物系统有很大需求。我们在此报告一种可生物降解的组织工程化ACL移植物的研发情况。研究了包括构建体结构、孔隙率、可降解性和细胞来源等几个设计参数。该移植物系统基于聚丙交酯-乙交酯共聚物(10:90)的聚合物纤维,并采用新型三维编织技术制造。所得的微孔支架具有适合韧带组织长入的最佳孔径(175 - 233微米),构建体的初始力学性能接近天然韧带。