Ju Young-Jin, Tohyama Harukazu, Kondo Eiji, Yoshikawa Toshikazu, Muneta Takeshi, Shinomiya Kenichi, Yasuda Kazunori
Department of Sports Medicine and Joint Reconstruction Surgery, Hokkaido University School of Medicine, Kita-15, Nishi-7, Sapporo 060-8638, Japan.
Am J Sports Med. 2006 Jan;34(1):84-91. doi: 10.1177/0363546505278700. Epub 2005 Oct 6.
In the autogenous tendon for anterior cruciate ligament reconstruction, intrinsic fibroblasts are necrotized immediately after surgery, and repopulation and revascularization occur. Vascular endothelial growth factor is considered to be a potent mediator of angiogenesis.
An application of vascular endothelial growth factor significantly enhances angiogenesis in the in situ frozen anterior cruciate ligament, and the application significantly affects mechanical properties of the in situ frozen anterior cruciate ligament.
Controlled laboratory study.
Right anterior cruciate ligaments from 66 rabbits underwent the freeze-thaw treatment, and animals were then divided into 3 groups. Group I served as a freeze-thaw but otherwise untreated control. In group II, 0.2 mL phosphate-buffered saline alone was applied. In group III, 30 mug vascular endothelial growth factor was applied. The groups were compared on the basis of histologic revascularization examinations using the Chalkley score, an indicator of the microvessel density, and mechanical evaluations, which included the anterior-posterior translation of the tibia relative to the femur during +/- 10 N of anterior-posterior load and the mechanical properties of the anteromedial bundle of the anterior cruciate ligament.
Group III's Chalkley score was significantly greater than that of groups I and II. The tensile strength and the tangent modulus of anterior cruciate ligaments in groups I, II, and III were significantly lower than those of a normal anterior cruciate ligament, although there were no significant differences among groups I, II, and III.
Vascular endothelial growth factor, as administered in this study, significantly promoted angiogenesis in the devitalized anterior cruciate ligament with in situ freeze-thaw treatment, but it did not affect the mechanical properties of the in situ frozen-thawed anterior cruciate ligament in the rabbit model.
An application of the recombinant anterior cruciate ligament is a potential future strategy to enhance revascularization of the autograft in anterior cruciate ligament reconstruction.
在用于前交叉韧带重建的自体肌腱中,内在成纤维细胞在手术后立即坏死,随后发生细胞再填充和血管再生。血管内皮生长因子被认为是血管生成的有效介质。
应用血管内皮生长因子可显著增强原位冷冻前交叉韧带的血管生成,且该应用会显著影响原位冷冻前交叉韧带的力学性能。
对照实验室研究。
对66只兔的右前交叉韧带进行冻融处理,然后将动物分为3组。第一组作为仅接受冻融处理但未进行其他处理的对照组。第二组仅应用0.2 mL磷酸盐缓冲盐水。第三组应用30 μg血管内皮生长因子。基于使用Chalkley评分(微血管密度指标)的组织学血管再生检查以及力学评估对各组进行比较,力学评估包括在前后负荷为±10 N时胫骨相对于股骨的前后平移以及前交叉韧带前内侧束的力学性能。
第三组的Chalkley评分显著高于第一组和第二组。第一组、第二组和第三组前交叉韧带的拉伸强度和切线模量均显著低于正常前交叉韧带,尽管第一组、第二组和第三组之间无显著差异。
本研究中应用的血管内皮生长因子在原位冻融处理的失活前交叉韧带中显著促进了血管生成,但在兔模型中并未影响原位冻融前交叉韧带的力学性能。
应用重组前交叉韧带是未来增强前交叉韧带重建中自体移植物血管再生的潜在策略。