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Integration of mechanotransduction concepts in bone tissue engineering

机译:机械转导概念在骨组织工程中的整合

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Mechanical stimulus has been identified for a long time as a key player in the adaptation of the musculo-skeletal tissues to their function. Mechanical loading is then an intrinsic variable to be considered when new developments are proposed in bone tissue engineering. By combining structural biomechanics and mechanotransduction aspects, a new paradigm is presented for bone tissue engineering. It is proposed that in vivo mechanical loading be used to increased bone formation in the scaffold instead of pre-seeding the scaffold with cells or delivering growth factors. In this article, we demonstrated the feasibility of this approach and compared it to the classical tissue engineering strategy. In particular, we showed that bone formation could be increased in the scaffold that underwent mechanical loading during an in vivo study in rats. A model of bone formation was then proposed to translate the in vivo results into a possible clinical application where the loading of the scaffold would be transmitted by the sharing of the load between an implant and the bone scaffold.
机译:长期以来,机械刺激一直被认为是肌肉骨骼组织适应其功能的关键因素。因此,当在骨组织工程中提出新的发展时,机械负载是要考虑的固有变量。通过结合结构生物力学和机械转导方面,提出了一种用于骨组织工程的新范例。提出使用体内机械负荷来增加支架中的骨形成,而不是用细胞或递送生长因子预接种支架。在本文中,我们演示了此方法的可行性,并将其与经典的组织工程策略进行了比较。特别是,我们表明在大鼠体内研究期间,受到机械负荷的支架中的骨骼形成可能会增加。然后提出骨形成模型,以将体内结果转化为可能的临床应用,其中支架的载荷将通过植入物和骨支架之间的载荷分担来传递。

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