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润滑素表面修饰可改善犬类体外肌腱修复模型中肌腱修复后的滑动。

Lubricin surface modification improves tendon gliding after tendon repair in a canine model in vitro.

作者信息

Taguchi Manabu, Sun Yu-Long, Zhao Chunfeng, Zobitz Mark E, Cha Chung-Ja, Jay Gregory D, An Kai-Nan, Amadio Peter C

机构信息

Orthopedic Biomechanics Laboratory, Division of Orthopedic Research, Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

J Orthop Res. 2009 Feb;27(2):257-63. doi: 10.1002/jor.20731.

Abstract

This study investigated the effects of lubricin on the gliding of repaired flexor digitorum profundus (FDP) tendons in vitro. Canine FDP tendons were completely lacerated, repaired with a modified Pennington technique, and treated with one of the following solutions: saline, carbodiimide derivatized gelatin/hyaluronic acid (cd-HA-gelatin), carbodiimide derivatized gelatin to which lubricin was added in a second step (cd-gelatin + lubricin), or carbodiimide derivatized gelatin/HA + lubricin (cd-HA-gelatin + lubricin). After treatment, gliding resistance was measured up to 1,000 cycles of simulated flexion/extension motion. The increase in average and peak gliding resistance in cd-HA-gelatin, cd-gelatin + lubricin, and cd-HA-gelatin + lubricin tendons was less than the control tendons after 1,000 cycles (p < 0.05). The increase in average gliding resistance of cd-HA-gelatin + lubricin treated tendons was also less than that of the cd-HA-gelatin treated tendons (p < 0.05). The surfaces of the repaired tendons and associated pulleys were assessed qualitatively with scanning electron microscopy and appeared smooth after 1,000 cycles of tendon motion for the cd-HA-gelatin, cd-gelatin + lubricin, and cd-HA-gelatin + lubricin treated tendons, while that of the saline control appeared roughened. These results suggest that tendon surface modification can improve tendon gliding ability, with a trend suggesting that lubricin fixed on the repaired tendon may provide additional improvement over that provided by HA and gelatin alone.

摘要

本研究在体外研究了润滑素对修复后的指深屈肌腱(FDP)滑动的影响。犬FDP肌腱被完全切断,采用改良的彭宁顿技术进行修复,并用以下溶液之一进行处理:生理盐水、碳二亚胺衍生化明胶/透明质酸(cd-HA-明胶)、第二步添加了润滑素的碳二亚胺衍生化明胶(cd-明胶+润滑素)或碳二亚胺衍生化明胶/HA+润滑素(cd-HA-明胶+润滑素)。处理后,在高达1000次模拟屈伸运动循环中测量滑动阻力。在1000次循环后,cd-HA-明胶、cd-明胶+润滑素和cd-HA-明胶+润滑素肌腱的平均和峰值滑动阻力增加量小于对照肌腱(p<0.05)。cd-HA-明胶+润滑素处理的肌腱平均滑动阻力增加量也小于cd-HA-明胶处理的肌腱(p<0.05)。用扫描电子显微镜对修复后的肌腱和相关滑车表面进行定性评估,在对cd-HA-明胶、cd-明胶+润滑素和cd-HA-明胶+润滑素处理的肌腱进行1000次肌腱运动循环后,表面显得光滑,而生理盐水对照组的表面显得粗糙。这些结果表明,肌腱表面改性可以提高肌腱滑动能力,并且有一种趋势表明,固定在修复肌腱上的润滑素可能比单独的HA和明胶提供更多的改善。

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