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后交叉韧带缺失兔膝关节中完整关节稳定结构的血管适应性

Vascular adaptation of intact joint stabilizing structures in the posterior cruciate ligament deficient rabbit knee.

作者信息

Bray Robert C, Leonard Catherine A, Salo Paul T

机构信息

McCaig Centre for Joint Injury and Arthritis Research, Department of Surgery, University of Calgary, 3330 Hospital Drive NW, Calgary, Alta., Canada T2N 4N1.

出版信息

J Orthop Res. 2003 Sep;21(5):787-91. doi: 10.1016/S0736-0266(03)00036-6.

Abstract

Loss of the posterior cruciate ligament (PCL) of the knee has a significant impact on joint stability and biomechanical function. Changes in joint biomechanics may result in mal-adaptive tissue degeneration and functional alteration of supporting ligaments. This study examines the effects of joint laxity on the vascular physiology of the intact anterior cruciate (ACL) and medial collateral (MCL) ligaments after PCL transection in rabbits.One-year-old female New Zealand white rabbits were assigned to control (n=12), sham-operated (n=12) or PCL transected (2, 6 or 16 weeks, n=12 per time point) groups. Half of the animals (n=6 per group) were used for ACL and MCL blood flow determination using coloured microsphere infusion (ml/min/100 g), and half were used for vascular volume determination (given as vascular index, micro l/g). In the MCL, PCL transection induced large, significant (4-5-fold) increases in blood flow (peak at 2 weeks) and vascular index (peak at 6 weeks) compared to sham-operated animals that returned towards control values by 16 weeks. In contrast, the ACL showed no increase in blood flow in lax joints, and a relatively small (2-fold) increase in vascular index at 6 weeks only. The wet weight and water content of both the MCL and ACL were significantly increased in PCL-deficient joints. We conclude that joint laxity (instability) subsequent to loss of the PCL in rabbits impacts the vascular physiology of intact supporting ligaments, inducing both vasomotor and angiogenic responses in the MCL. Changes in wet weight and water content of both the MCL and ACL demonstrate prolonged physiological adaptation of intact structures in lax joints.

摘要

膝关节后交叉韧带(PCL)的缺失对关节稳定性和生物力学功能有重大影响。关节生物力学的改变可能导致适应性不良的组织退变以及支持韧带的功能改变。本研究探讨了兔PCL横断后关节松弛对完整的前交叉韧带(ACL)和内侧副韧带(MCL)血管生理学的影响。

将一岁雌性新西兰白兔分为对照组(n = 12)、假手术组(n = 12)或PCL横断组(2周、6周或16周,每个时间点n = 12)。每组一半动物(n = 6)用于通过彩色微球灌注法测定ACL和MCL的血流量(ml/min/100 g),另一半用于测定血管容积(以血管指数表示,μl/g)。与假手术动物相比,PCL横断后MCL的血流量大幅显著增加(4 - 5倍)(2周时达到峰值),血管指数也增加(6周时达到峰值),到16周时恢复至对照值。相比之下,松弛关节中的ACL血流量未增加,仅在6周时血管指数有相对较小的(2倍)增加。PCL缺失的关节中,MCL和ACL的湿重和含水量均显著增加。我们得出结论,兔PCL缺失后的关节松弛(不稳定)影响完整支持韧带的血管生理学,在MCL中诱导血管舒缩和血管生成反应。MCL和ACL湿重和含水量的变化表明松弛关节中完整结构存在长期的生理适应。

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