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Coculture Strategies in Bone Tissue Engineering: The Impact of Culture Conditions on Pluripotent Stem Cell Populations

机译:骨组织工程中的共培养策略:培养条件对多能干细胞群体的影响

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摘要

The use of pluripotent stem cell populations for bone tissue regeneration provides many opportunities and challenges within the bone tissue engineering field. For example, coculture strategies have been utilized to mimic embryological development of bone tissue, and particularly the critical intercellular signaling pathways. While research in bone biology over the last 20 years has expanded our understanding of these intercellular signaling pathways, we still do not fully understand the impact of the system's physical characteristics (orientation, geometry, and morphology). This review of coculture literature delineates the various forms of coculture systems and their respective outcomes when applied to bone tissue engineering. To understand fully the key differences between the different coculture methods, we must appreciate the underlying paradigms of physiological interactions. Recent advances have enabled us to extrapolate these techniques to larger dimensions and higher geometric resolutions. Finally, the contributions of bioreactors, micropatterned biomaterials, and biomaterial interaction platforms are evaluated to give a sense of the sophistication established by a combination of these concepts with coculture systems.
机译:将多能干细胞群体用于骨组织再生在骨组织工程领域内提供了许多机遇和挑战。例如,共培养策略已被用来模拟骨组织,特别是关键的细胞间信号通路的胚胎学发育。尽管过去20年来对骨骼生物学的研究扩大了我们对这些细胞间信号通路的理解,但我们仍未完全了解系统物理特征(方向,几何形状和形态)的影响。对共培养文献的回顾描述了共培养系统的各种形式及其在应用于骨组织工程中的各自结果。为了充分理解不同共培养方法之间的关键区别,我们必须了解生理相互作用的潜在范例。最新的进展使我们能够将这些技术推论到更大的尺寸和更高的几何分辨率。最后,对生物反应器,微模式生物材料和生物材料相互作用平台的贡献进行了评估,以使人将这些概念与共培养系统相结合而建立的成熟感。

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