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首页> 外文期刊>American Journal of Sports Medicine >The biomechanical and histologic effects of platelet-rich plasma on rat rotator cuff repairs
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The biomechanical and histologic effects of platelet-rich plasma on rat rotator cuff repairs

机译:富血小板血浆对大鼠肩袖修复的生物力学和组织学影响

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Background: Rotator cuff tears are common injuries that are often treated with surgical repair. Because of the high concentration of growth factors within platelets, platelet-rich plasma (PRP) has the potential to enhance healing in rotator cuff repairs. Hypothesis: Platelet-rich plasma would alter the biomechanical and histologic properties of rotator cuff repair during an acute injury response. Study Design: Controlled laboratory study. Methods: Platelet-rich plasma was produced from inbred donor rats. A tendon-from-bone supraspinatus tear was created surgically and an immediate transosseous repair performed. The control group underwent repair only. The PRP group underwent a repair with PRP augmentation. Rats in each group were sacrificed at 7, 14, and 21 days. The surgically repaired tendons underwent biomechanical testing, including failure load, stiffness, failure strain, and stress relaxation characteristics. Histological analysis evaluated the cellular characteristics of the repair tissue. Results: At 7- and 21-day periods, augmentation with PRP showed statistically significant effects on the biomechanical properties of the repaired rat supraspinatus tear, but failure load was not increased at the 7-, 14-, or 21-day periods (P = .688, .209, and .477, respectively). The control group had significantly higher stiffness at 21 days (P = .006). The control group had higher failure strain at 7 days (P = .02), whereas the PRP group had higher failure strain at 21 days (P = .008). Histologically, the PRP group showed increased fibroblastic response and vascular proliferation at each time point. At 21 days, the collagen fibers in the PRP group were oriented in a more linear fashion toward the tendon footprint. Conclusion: In this controlled, rat model study, PRP altered the tissue properties of the supraspinatus tendon without affecting the constructs failure load. Clinical Relevance: The decreased tendon tissue stiffness acutely and failure to enhance tendon-to-bone healing of repairs hould be considered before augmenting rotator cuff repairs with PRP. Further studies will be necessary to determine the role of PRP in clinical practice.
机译:背景:肩袖撕裂是常见的损伤,通常需要外科手术修复。由于血小板内生长因子的浓度很高,富含血小板的血浆(PRP)有可能增强肩袖修复的愈合。假设:富含血小板的血浆会在急性损伤反应期间改变肩袖修复的生物力学和组织学特性。研究设计:受控实验室研究。方法:从近交供体大鼠产生富含血小板的血浆。手术产生了腱上骨的腱上撕裂,并立即进行了骨间修复。对照组仅接受修复。 PRP组接受了PRP增强修复。在第7、14和21天处死每组大鼠。手术修复的肌腱经过了生物力学测试,包括破坏载荷,刚度,破坏应变和应力松弛特性。组织学分析评估了修复组织的细胞特征。结果:在7天和21天的时间段内,PRP增强对修复的大鼠棘上肌撕裂的生物力学性能具有统计学上的显着影响,但在7天,14天或21天的时间段内,失败负荷并未增加(P分别为.688,.209和.477)。对照组在21天时具有较高的僵硬度(P = .006)。对照组在7天时具有较高的衰竭应变(P = .02),而PRP组在21天时具有较高的失效应变(P = .008)。从组织学上讲,PRP组在每个时间点均显示出成纤维细胞反应和血管增生。在21天时,PRP组中的胶原纤维以更线性的方式朝向肌腱足迹定向。结论:在这项受控的大鼠模型研究中,PRP改变了棘上肌腱的组织特性,而不影响构建体的失败负荷。临床意义:在使用PRP增强肩袖修复之前,应考虑肌腱组织刚度急剧下降以及无法增强肌腱到骨的修复。为了确定PRP在临床实践中的作用,有必要进行进一步的研究。

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