Tissue Engineering Repair and Regeneration Program, Hospital for Special Surgery , New York, New York.
Tissue Eng Part A. 2014 Jan;20(1-2):171-7. doi: 10.1089/ten.TEA.2012.0669. Epub 2013 Oct 25.
Anterior cruciate ligament (ACL) injury and subsequent reconstructive surgery is increasing with an estimated 200,000 reconstructions performed yearly in the United States. Current treatment requires reconstruction with autograft or allograft tissue with inherent disadvantages. The development of tissue-engineered ligament replacements or scaffolds may provide an alternative treatment method minimizing these issues. The study of ligament fibroblast catabolic and anabolic responses to mechanical and biologic stimuli in three-dimensional (3D) cell culture systems is critical to the development of such therapies. A 3D cell culture system was used to measure the total content and active forms of matrix metalloproteinases (MMPs)-1, -3, and -13 to assess the potential role of the mechanical environment in regulation of matrix turnover by ligament fibroblasts. The production, retention, and secretion of MMPs by ACL fibroblasts in 3D culture were measured over a 14-day period. The total MMP content and MMP activity were determined. The level of all MMPs studied increased over 7-10 days and then reached a steady state or decreased slightly in both the collagen gels and the media. This system will now permit the study of externally applied cyclic and static strains, strain deprivation, and the potential combined role of the cytoskeleton and MMPs in matrix turnover in ligaments.
前交叉韧带 (ACL) 损伤及其随后的重建手术日益增多,据估计,美国每年进行 20 万次重建手术。目前的治疗方法需要使用自体移植物或同种异体组织进行重建,存在固有缺陷。组织工程韧带替代物或支架的发展可能为最小化这些问题提供一种替代治疗方法。研究韧带成纤维细胞在三维 (3D) 细胞培养系统中对机械和生物刺激的分解代谢和合成代谢反应对于这些治疗方法的发展至关重要。使用 3D 细胞培养系统来测量基质金属蛋白酶 (MMPs)-1、-3 和 -13 的总含量和活性形式,以评估机械环境在调节韧带成纤维细胞基质周转中的潜在作用。在 14 天的时间内测量 ACL 成纤维细胞在 3D 培养中的 MMP 产生、保留和分泌情况。测定总 MMP 含量和 MMP 活性。在胶原凝胶和培养基中,所有研究的 MMP 水平在 7-10 天内增加,然后达到稳定状态或略有下降。该系统现在将允许研究外部施加的循环和静态应变、应变剥夺以及细胞骨架和 MMPs 在韧带基质周转中的潜在联合作用。