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仿生骨机械转导模型在新生大鼠股骨器官培养中的应用:概念验证的结构验证。

Biomimetic bone mechanotransduction modeling in neonatal rat femur organ cultures: structural verification of proof of concept.

机构信息

University of Kentucky, Lexington, USA.

出版信息

Biomech Model Mechanobiol. 2010 Oct;9(5):539-50. doi: 10.1007/s10237-010-0195-9. Epub 2010 Feb 19.

Abstract

The goal of this work was to develop and validate a whole bone organ culture model to be utilized in biomimetic mechanotransduction research. Femurs harvested from 2-day-old neonatal rat pups were maintained in culture for 1 week post-harvest and assessed for growth and viability. For stimulation studies, femurs were physiologically stimulated for 350 cycles 24 h post-harvest then maintained in culture for 1 week at which time structural tests were conducted. Comparing 1 and 8 days in culture, bones grew significantly in size over the 7-day culture period. In addition, histology supported adequate diffusion and organ viability at 2 weeks in culture. For stimulation studies, 350 cycles of physiologic loading 24 h post-harvest resulted in increased bone strength over the 7-day culture period. In this work, structural proof of concept was established for the use of whole bone organ cultures as mechanotransduction models. Specifically, this work established that these cultures grow and remain viable in culture, are adequately nourished via diffusion and are capable of responding to a brief bout of mechanical stimulation with an increase in strength.

摘要

本研究旨在开发和验证一种全骨器官培养模型,用于仿生机械转导研究。从 2 日龄新生大鼠幼崽中采集股骨,收获后在培养中维持 1 周,评估其生长和活力。对于刺激研究,收获后 24 小时对股骨进行 350 个循环的生理刺激,然后在培养中维持 1 周,此时进行结构测试。与培养 1 天和 8 天相比,在 7 天的培养期间,骨骼显著增大。此外,组织学支持在培养 2 周时具有足够的扩散和器官活力。对于刺激研究,收获后 24 小时进行 350 个循环的生理负荷导致骨强度在 7 天的培养期间增加。在这项工作中,建立了全骨器官培养作为机械转导模型的结构概念验证。具体来说,这项工作证明了这些培养物在培养中生长并保持活力,通过扩散得到充分的营养,并能够对短暂的机械刺激做出反应,增加强度。

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