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Adult Stem Cells Spheroids to Optimize Cell Colonization in Scaffolds for Cartilage and Bone Tissue Engineering

机译:成人干细胞球体可以优化支架在软骨和骨组织工程中的细胞定殖

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摘要

Top-down tissue engineering aims to produce functional tissues using biomaterials as scaffolds, thus providing cues for cell proliferation and differentiation. Conversely, the bottom-up approach aims to precondition cells to form modular tissues units (building-blocks) represented by spheroids. In spheroid culture, adult stem cells are responsible for their extracellular matrix synthesis, re-creating structures at the tissue level. Spheroids from adult stem cells can be considered as organoids, since stem cells recapitulate differentiation pathways and also represent a promising approach for identifying new molecular targets (biomarkers) for diagnosis and therapy. Currently, spheroids can be used for scaffold-free (developmental engineering) or scaffold-based approaches. The scaffold promotes better spatial organization of individual spheroids and provides a defined geometry for their 3D assembly in larger and complex tissues. Furthermore, spheroids exhibit potent angiogenic and vasculogenic capacity and serve as efficient vascularization units in porous scaffolds for bone tissue engineering. An automated combinatorial approach that integrates spheroids into scaffolds is starting to be investigated for macro-scale tissue biofabrication.
机译:自上而下的组织工程旨在使用生物材料作为支架来生产功能性组织,从而为细胞增殖和分化提供线索。相反,自下而上的方法旨在对细胞进行预处理,以形成以椭球体表示的模块化组织单位(构件)。在球状培养中,成体干细胞负责其细胞外基质合成,在组织水平上重建结构。来自成体干细胞的球体可以被视为类器官,因为干细胞概括了分化途径,也代表了一种有前景的方法,可用于鉴定新的分子靶标(生物标志物)进行诊断和治疗。当前,球体可用于无支架(开发工程)或基于支架的方法。支架可促进单个球体更好的空间组织,并为大型和复杂组织中的3D组装提供定义的几何形状。此外,球体显示出有效的血管生成和血管生成能力,并且在骨组织工程的多孔支架中用作有效的血管形成单位。正在开始研究将球体整合到支架中的自动化组合方法,以进行大规模组织生物制造。

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