首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >In vitro characterization of mesenchymal stem cell-seeded collagen scaffolds for tendon repair: effects of initial seeding density on contraction kinetics.
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In vitro characterization of mesenchymal stem cell-seeded collagen scaffolds for tendon repair: effects of initial seeding density on contraction kinetics.

机译:间充质干细胞接种胶原蛋白支架的肌腱修复的体外表征:初始接种密度对收缩动力学的影响。

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Mesenchymal stem cells (MSCs) were isolated from bone marrow, culture-expanded, and then seeded at 1, 4, and 8 million cells/mL onto collagen gel constructs designed to augment tendon repair in vivo. To investigate the effects of seeding density on the contraction kinetics and cellular morphology, the contraction of the cell/collagen constructs was monitored over time up to 72 h in culture conditions. Constructs seeded at 4 and 8 million cells/mL showed no significant differences in their gross appearance and dimensions throughout the contraction process. By contrast, constructs seeded at 1 million cells/mL initially contracted more slowly and their diameters at 72 h were 62 to 73% larger than those seeded at higher densities. During contraction, MSCs reoriented and elongated significantly with time. Implants prepared at higher seeding densities showed more well aligned and elongated cell nuclei after 72 h of contraction. Changes in nuclear morphology of the MSCs in response to physical constraints provided by the contracted collagen fibrils may trigger differentiation pathways toward the fibroblastic lineage and influence the cell synthetic activity. Controlling the contraction and organization of the cells and matrix will be critical for successfully creating tissue engineered grafts. Copyright 2000 John Wiley & Sons, Inc.
机译:从骨髓中分离间充质干细胞(MSCs),进行培养扩增,然后以1、4和8百万个细胞/ mL的密度接种到旨在增强体内肌腱修复作用的胶原蛋白凝胶构建体上。为了研究接种密度对收缩动力学和细胞形态的影响,在培养条件下直至72小时的时间内监测细胞/胶原构建体的收缩。在整个收缩过程中,以4和8百万个细胞/ mL接种的构建体在其总体外观和尺寸上没有显示出明显差异。相比之下,以1百万个细胞/ mL接种的构建体最初收缩更慢,其在72 h处的直径比以较高密度接种的构建体大62%至73%。在收缩过程中,MSC会随着时间的推移而重新定向并显着伸长。收缩72小时后,以更高的播种密度准备的植入物显示出更好的排列和细长的细胞核。响应于收缩的胶原原纤维提供的物理限制,MSC的核形态变化可能触发朝向成纤维细胞谱系的分化途径并影响细胞合成活性。控制细胞和基质的收缩和组织对于成功创建组织工程移植物至关重要。版权所有2000 John Wiley&Sons,Inc.

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