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与内侧副韧带瘢痕体外拉伸加载相比,压缩加载对聚集蛋白聚糖、II型胶原和胶原酶的mRNA水平有独特影响。

Compressive compared with tensile loading of medial collateral ligament scar in vitro uniquely influences mRNA levels for aggrecan, collagen type II, and collagenase.

作者信息

Majima T, Marchuk L L, Sciore P, Shrive N G, Frank C B, Hart D A

机构信息

McCaig Center for Joint Injury and Arthritis Research, University of Calgary, Alberta, Canada.

出版信息

J Orthop Res. 2000 Jul;18(4):524-31. doi: 10.1002/jor.1100180403.

Abstract

To test the hypothesis that loading conditions can be used to engineer early ligament scar behaviors, we used an in vitro system to examine the effect that cyclic hydrostatic compression and cyclic tension applied to 6-week rabbit medial collateral ligament scars had on mRNA levels for matrix molecules, collagenase, and the proto-oncogenes c-fos and c-jun. Our specific hypothesis was that tensile stress would promote more normal mRNA expression in ligament whereas compression would lead to higher levels of mRNA for cartilage-like molecules. Femur (injured medial collateral ligament)-tibia complexes were subjected to a hydrostatic pressure of 1 MPa or a tensile stress of 1 MPa of 0.5 Hz for 1 minute followed by 14 minutes of rest. On the basis of a preliminary optimization experiment, this 15-minute testing cycle was repeated for 4 hours. Semiquantitative reverse transcription-polymerase chain reaction analysis was performed for mechanically treated medial collateral ligament scars with use of rabbit specific primer sets for types I, II, and III collagen, decorin, biglycan, fibromodulin, versican, aggrecan, collagenase, c-fos, c-jun, and a housekeeping gene, glyceraldehyde-3-phosphate dehydrogenase. Cyclic hydrostatic compression resulted in a statistically significant increase in mRNA levels of type-II collagen (171% of nonloaded values) and aggrecan (313% of nonloaded values) but statistically significant decreases in collagenase mRNA levels (35% of nonloaded values). Cyclic tension also resulted in a statistically significant decrease in collagenase mRNA levels (66% of nonloaded values) and an increase in aggrecan mRNA levels (458% of nonloaded values) but no significant change in the mRNA levels for the other molecules. The results show that it is possible to alter mRNA levels for a subset of genes in scar tissue by supplying unique mechanical stimuli in vitro and thus that further investigation of scar engineering for potential reimplantation appears feasible.

摘要

为了验证加载条件可用于调控早期韧带瘢痕行为这一假设,我们使用体外系统,研究对6周龄兔内侧副韧带瘢痕施加周期性静水压力和周期性张力,对基质分子、胶原酶以及原癌基因c-fos和c-jun的mRNA水平产生的影响。我们的具体假设是,拉伸应力会促进韧带中更正常的mRNA表达,而压缩会导致软骨样分子的mRNA水平升高。将股骨(内侧副韧带损伤)-胫骨复合体施加1 MPa的静水压力或1 MPa、0.5 Hz的拉伸应力,持续1分钟,随后休息14分钟。基于初步优化实验,将这个15分钟的测试周期重复4小时。使用针对I型、II型和III型胶原蛋白、核心蛋白聚糖、双糖链蛋白聚糖、纤调蛋白、多功能蛋白聚糖、聚集蛋白聚糖、胶原酶、c-fos、c-jun的兔特异性引物组以及管家基因甘油醛-3-磷酸脱氢酶,对经机械处理的内侧副韧带瘢痕进行半定量逆转录-聚合酶链反应分析。周期性静水压力导致II型胶原蛋白的mRNA水平有统计学意义的升高(为未加载值的171%)和聚集蛋白聚糖的mRNA水平有统计学意义的升高(为未加载值的313%),但胶原酶mRNA水平有统计学意义的降低(为未加载值的35%)。周期性张力也导致胶原酶mRNA水平有统计学意义的降低(为未加载值的66%)和聚集蛋白聚糖mRNA水平有统计学意义的升高(为未加载值的458%),但其他分子的mRNA水平无显著变化。结果表明,通过在体外提供独特的机械刺激,可以改变瘢痕组织中一部分基因的mRNA水平,因此,对用于潜在再植入的瘢痕工程进行进一步研究似乎是可行的。

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