首页> 外文学位 >Changes in Cellular and Biomechanical Properties in the Rat Gastrocnemius Muscle Complex Following Injection of Platelet Rich Plasma and TraumeelRTMS Post Calcaneal Tenotomy.
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Changes in Cellular and Biomechanical Properties in the Rat Gastrocnemius Muscle Complex Following Injection of Platelet Rich Plasma and TraumeelRTMS Post Calcaneal Tenotomy.

机译:跟腱切断术后注射富含血小板的血浆和TraumeelRTMS后,大鼠腓肠肌复合物中细胞和生物力学特性的变化。

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摘要

The aim of this thesis was to design a rat calcaneal tenotomy model that could be used to investigate the effect of PRP and TraumeelRTMS on the microscopic and biochemical properties of healing tendon and muscle. For the first study, the rat calcaneal tenotomy model was developed to determine baseline values for the natural progression of repair tension over six weeks following tenotomy, as well as the concurrent changes in myofibre diameter, percentage of total collagen, transforming growth factor-beta (TGF-beta1) and basic-fibroblast growth factor (b-FGF) protein expression in the gastrocnemius-calcaneal tendon unit and developing neotendon. For the second study, the calcaneal tenotomy model was used to investigate the effect of post-tenotomy injections of PRP and/or TraumeelRTMS. Repair tension was measured in vivo using a Shimpo force gauge. Histological analysis included measurement of myofibre diameter with bright field microscopy, and percentage/thickness of collagen with polarizing microscopy. Western blot analysis was used to study the time course of TGF-beta1 and b-FGF protein expression. The results of this study indicate that predominantly PRP but also TraumeelRTMS can: (1) decrease mean repair tension at four and six weeks post tenotomy; (2) increase myofibre regeneration, measured by an earlier return to normal myofibre diameter; (3) stimulate neotendon regeneration, measured by an increase in the mean percentage of collagen and percentage of thick collagen fibres, and (4) increase TGF-beta1 and b-FGF protein expression within the gastrocnemius muscle and neotendon. Since TGF-beta1 and b-FGF play important stimulatory roles in tendon and muscle healing, this increase in growth factor expression within the muscle and neotendon following injection may have stimulated faster myofibre and neotendon regeneration. The tenotomy model and injection protocol developed in this thesis, and most importantly the results of this thesis, can be used as a foundation for future basic science and subsequent clinical studies.
机译:本文的目的是设计一种大鼠跟骨腱切术模型,该模型可用于研究PRP和TraumeelRTMS对愈合肌腱和肌肉的微观和生化特性的影响。在第一项研究中,开发了大鼠跟骨腱切模型,以确定腱切术后六周修复张力自然进展的基线值,以及肌纤维直径,总胶原蛋白百分比,转化生长因子β( TGF-beta1)和碱性成纤维细胞生长因子(b-FGF)蛋白在腓肠肌-跟腱单元和发育中的新腱中表达。对于第二项研究,使用跟骨腱切术模型研究了在开胸手术后注射PRP和/或TraumeelRTMS的效果。使用Shimpo测力计在体内测量修复张力。组织学分析包括通过明视野显微镜测量肌纤维直径,以及通过偏光显微镜测量胶原蛋白的百分比/厚度。 Western印迹分析用于研究TGF-beta1和b-FGF蛋白表达的时间过程。这项研究的结果表明,以PRP为主但也有TraumeelRTMS可以:(1)切开手膜后四周和六周降低平均修复张力; (2)增加肌纤维再生,通过更早恢复到正常的肌纤维直径来测量; (3)刺激新生肌腱再生,通过增加胶原蛋白的平均百分比和增厚的胶原纤维的百分比来衡量,以及(4)增强腓肠肌和新生肌腱中TGF-β1和b-FGF蛋白的表达。由于TGF-beta1和b-FGF在肌腱和肌肉愈合中起重要的刺激作用,注射后肌肉和新腱内生长因子表达的这种增加可能刺激了更快的肌原纤维和新腱再生。本文开发的腱切模型和注射方案,最重要的是本文的结果,可作为未来基础科学和后续临床研究的基础。

著录项

  • 作者

    Sauks, Katherine Merike.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Surgery.;Alternative medicine.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 257 p.
  • 总页数 257
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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