Ignatius A, Dürselen L
Zentrum für Muskuloskelettale Forschung, Institut für Unfallchirurgische Forschung und Biomechanik, Universitätsklinikum, Helmholtzstrasse 14, 89081, Ulm, Deutschland.
Orthopade. 2009 Nov;38(11):1080-6. doi: 10.1007/s00132-009-1492-9.
Although current concepts of cruciate ligament reconstruction using tendon transplants provide midterm knee joint stabilization, a single-bundle or double-bundle tendon cannot adequately restore the complex three-dimensional structure of the anterior cruciate ligament. Therefore, researchers are attempting to develop alternatives using tissue engineering technology. The basic principle includes seeding of suitable cells on a resorbable carrier construct, in vitro biological and mechanical stimulation to generate a ligament-like extracellular matrix, and subsequent implantation as a cruciate ligament bioprosthesis. Several natural and synthetic materials have proven to be suitable as cell carriers; however, most of these exhibit inadequate tensile strength as well as minor fatigue properties, making an additional load carrier necessary. In principle, research has shown that tissue engineering technology is capable of generating a construct with a ligament-like extracellular matrix. However, the step from basic research to clinical application has not yet been taken.
尽管目前使用肌腱移植进行交叉韧带重建的理念能在中期为膝关节提供稳定,但单束或双束肌腱无法充分恢复前交叉韧带复杂的三维结构。因此,研究人员正尝试利用组织工程技术开发替代方案。其基本原理包括在可吸收载体构建物上接种合适的细胞,进行体外生物和机械刺激以生成韧带样细胞外基质,随后作为交叉韧带生物假体植入。几种天然和合成材料已被证明适合作为细胞载体;然而,其中大多数材料的拉伸强度不足,疲劳性能也较差,因此需要额外的负载载体。原则上,研究表明组织工程技术能够生成具有韧带样细胞外基质的构建物。然而,从基础研究到临床应用的这一步尚未迈出。