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首页> 外文期刊>Tissue engineering, Part B. Reviews >The Application of Multiple Biophysical Cues to Engineer Functional Neocartilage for Treatment of Osteoarthritis. Part I: Cellular Response
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The Application of Multiple Biophysical Cues to Engineer Functional Neocartilage for Treatment of Osteoarthritis. Part I: Cellular Response

机译:多种生物物理提示在工程性新软骨治疗骨关节炎中的应用。第一部分:细胞反应

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Osteoarthritis (OA) is a complex disease of the joint for which current treatments are unsatisfactory, thus motivating development of tissue engineering (TE)-based therapies. To date, TE strategies have had some success, developing replacement tissue constructs with biochemical properties approaching that of native cartilage. However, poor biomechanical properties and limited postimplantation integration with surrounding tissue are major shortcomings that need to be addressed. Functional tissue engineering strategies that apply physiologically relevant biophysical cues provide a platform to improve TE constructs before implantation. In the previous decade, new experimental and theoretical findings in cartilage biomechanics and electromechanics have emerged, resulting in an increased understanding of the complex interplay of multiple biophysical cues in the extracellular matrix of the tissue. The effect of biophysical stimulation on cartilage, and the resulting chondrocyte-mediated biosynthesis, remodeling, degradation, and repair, has, therefore, been extensively explored by the TE community. This article compares and contrasts the cellular response of chondrocytes to multiple biophysical stimuli, and may be read in conjunction with its companion paper that compares and contrasts the subsequent intracellular signal transduction cascades. Mechanical, magnetic, and electrical stimuli promote proliferation, differentiation, and maturation of chondrocytes within established dose parameters or “biological windows.” This knowledge will provide a framework for ongoing studies incorporating multiple biophysical cues in TE functional neocartilage for treatment of OA.
机译:骨关节炎(OA)是关节的复杂疾病,目前的治疗方法还不能令人满意,因此刺激了基于组织工程(TE)疗法的发展。迄今为止,TE策略已经取得了一些成功,开发出具有接近天然软骨的生化特性的替代组织结构。然而,差的生物力学性能和植入后与周围组织的整合有限是需要解决的主要缺点。应用生理相关生物物理线索的功能组织工程策略为植入前改善TE结构提供了平台。在过去的十年中,在软骨生物力学和机电学中出现了新的实验和理论发现,从而使人们对组织细胞外基质中多种生物物理线索之间复杂的相互作用有了更深入的了解。因此,TE社区已广泛研究了生物物理刺激对软骨的影响以及由此产生的软骨细胞介导的生物合成,重塑,降解和修复。本文对软骨细胞对多种生物物理刺激的细胞反应进行了比较和对比,并可能与其对比和比较随后的细胞内信号转导级联反应的同行论文一起阅读。机械,磁和电刺激可在确定的剂量参数或“生物窗”内促进软骨细胞的增殖,分化和成熟。这些知识将为正在进行的研究提供框架,在TE功能性新软骨中结合多种生物物理线索来治疗OA。

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