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中文摘要
翻译
肌腱到骨骼插入部位的损伤是老年人疼痛和残疾的主要原因 年轻的人群。在肩袖,那里没有免疫复发的修复技术 据报道,中短期失败率高达94%。同样,屈肌腱 插入部位修复不能很好地愈合。失败的愈合反应的两个关键特征是骨质丢失 界面处矿物质密度大,缺乏纤维软骨形成。因此,这一总体目标是 研究是使用生物工程方法促进骨和纤维软骨的形成,以便 改善肌腱到骨骼的修复。 我们的组织工程学方法将利用胎儿肌腱到骨骼的发育作为 在我们的两个已建立的动物模型中促进再生愈合反应的动机。 骨形态发生蛋白2(BMP-2)和骨形态发生蛋白12的表达 (BMP-12)将被上调,以分别促进骨和纤维软骨的形成。BMP-2有 与骨胎儿发育有关,并已成功地用于促进骨形成 成人纸巾。BMP-12与联合胎儿发育有关,并已被证明诱导 皮下植入后形成新生肌腱/纤维软骨。在本研究中,自体间充质干细胞 干细胞将被转化为产生感兴趣的因子,并使用胶原蛋白基质输送。这个 机械负荷环境也与骨的发育和维持有关。 胎儿发育和成人愈合研究表明,增加负荷会导致 骨形成,而减少负荷导致骨吸收。机械加载的作用 在愈合过程中,将通过在一组中移除修复部位的负荷并增强 在第二组中穿过维修现场的装载。 在特定的目标1中,我们将刺激成骨细胞在愈合的犬屈肌腱产生骨- 骨植入部位通过生物(即BMP-2)和机械(即增加负荷)的方式。具体而言 目的2建立生物力学模型来预测肌腱-骨界面处的应力。在……里面 具体目标3我们将刺激修复部位的细胞在愈合的大鼠冈上产生纤维软骨 通过生物方法(即BMP-12)植入肌腱-骨。 我们研究计划的长期目标是为临床问题提供治疗方案。 从肌腱到骨骼的愈合。候选人在生物工程方面的专业知识将与导师结合起来 在临床科学和分子生物学方面的优势,以形成一个独特的和平衡的跨学科团队。
英文摘要
Tendon to bone insertion site injuries are a leading cause of pain and disability in elderly as well as young populations. At the rotator cuff, where there are no repair techniques that are immune from recurrent tears, short to mid term failure rates have been reported to be as high as 94%. Similarly, flexor tendon insertion site repairs do not heal well. The two key features of the failed healing response are loss of bone mineral density and lack of fibrocartilage formation at the interface. Therefore,the overall objective of this study is to use bioengineering approaches to promote bone and fibrocartilage formation in order to improve the tendon to bone repair. Our tissue engineering approach will use the fetal development of tendon to bone insertions as motivation for promoting a regenerative healing response in our two well established animal models. Specifically, the expression of bone morphogenetic protein 2 (BMP-2) and bone morphogenetic protein 12 (BMP-12) will be upregulated to promote the formation of bone and fibrocartilage, respectively. BMP-2 has been implicated in bone fetal development and has successfully been used to promote bone formation in adult tissues. BMP-12 has been implicated in joint fetal development and has been demonstrated to induce neo-tendon/fibrocartilage formation when implanted subcutaneously. In this study, autologous mesenchymal stem cells will be transformed to produce the factors of interest and delivered using a collagen matrix. The mechanical loading environment has also been implicated in the development and maintenance of bone. Fetal development and adult healing studies have demonstrated that increased loading results in the formation of bone, while decreased loading results in the resorption of bone. The role of mechanical loading during healing will be explored by removing the loading across the repair site in one group and enhancing the loading across the repair site in a second group. In specific aim 1 we will stimulate osteoblasts to produce bone at the healing canine flexor tendon- bone insertion site through biologic (i.e., BMP-2) and mechanical (i.e., increased loading) means. In specific aim 2 we will develop biomechanical models to predict the stresses at the tendon to bone interface. In specific aim 3 we will stimulate repair site cells to produce fibrocartilage at the healing rat supraspinatu tendon-bone insertion through biologic (i.e., BMP-12) means. The long term goal of our research program is to provide therapeutic solutions to the clinical problem of tendon to bone healing. The candidate's expertise in bioengineering will be combined with the mentors strengths in clinical science and molecular biology to form a unique and well balanced interdisciplinary team.
期刊论文(1)
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会议论文
DOI: 10.1366/000370208786822179
发表时间: 2008-12
期刊: Applied spectroscopy
影响因子: 3.5
作者: [Wopenka B, Kent A, Pasteris JD, Yoon Y, Thomopoulos S]
通讯作者: Thomopoulos S
Formation of a functional tendon enthesis during development and healing
Summer Biomechanics, Bioengineering, and Biotransport Conference
Biomimetic approaches for enthesis tissue engineering
Structure Function Relationships at the Tendon to Bone Insertion Site
  • 批准号:
    7828047
  • 项目类别:
  • 资助金额:
    $16.93万
  • 财政年份:
    2009
  • 负责人:
    Stavros Thomopoulos
  • 依托单位:
海外基金