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Influence of shear stress in perfusion bioreactor cultures for the development of three-dimensional bone tissue constructs: a review.

机译:剪切应力在灌注生物反应器培养物中对三维骨组织构造发展的影响:综述。

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摘要

Bone tissue engineering aims to generate clinically applicable bone graft substitutes in an effort to ease the demands and reduce the potential risks associated with traditional autograft and allograft bone replacement procedures. Biomechanical stimuli play an important role under physiologically relevant conditions in the normal formation, development, and homeostasis of bone tissue--predominantly, strain (predicted levels in vivo for humans u3c2000u3eμε) caused by physical deformation, and fluid shear stress (0.8-3 Pa), generated by interstitial fluid movement through lacunae caused by compression and tension under loading. Therefore, in vitro bone tissue cultivation strategies seek to incorporate biochemical stimuli in an effort to create more physiologically relevant constructs for grafting. This review is focused on collating information pertaining to the relationship between fluid shear stress, cellular deformation, and osteogenic differentiation, providing further insight into the optimal culture conditions for the creation of bone tissue substitutes.
机译:骨组织工程旨在产生可临床应用的骨移植替代物,以减轻需求并减少与传统自体移植和同种异体骨替代手术相关的潜在风险。在生理相关条件下,生物力学刺激在骨骼组织的正常形成,发育和体内平衡中起着重要作用-主要是由物理变形和流体剪切应力(0.8)引起的应变(人类体内的预测水平) -3 Pa),是由加载下的压缩和拉伸引起的间隙流体通过腔隙运动产生的。因此,体外骨组织培养策略试图结合生化刺激,以试图创建更多生理相关的移植结构。这篇综述的重点是整理与流体剪切应力,细胞变形和成骨分化之间的关系有关的信息,从而进一步了解创建骨组织替代物的最佳培养条件。

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