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维持细胞深度活力:三模态支架孔结构和动态旋转培养的功效。

Maintaining cell depth viability: on the efficacy of a trimodal scaffold pore architecture and dynamic rotational culturing.

机构信息

Trinity Centre for Bioengineering, School of Engineering, Trinity College Dublin, Dublin, Ireland.

出版信息

J Mater Sci Mater Med. 2010 May;21(5):1731-8. doi: 10.1007/s10856-010-4013-9. Epub 2010 Feb 17.

Abstract

Tissue-engineering scaffold-based strategies have suffered from limited cell depth viability when cultured in vitro with viable cells typically existing at the fluid-scaffold interface. This is primarily believed to be due to the lack of nutrient delivery into and waste removal from the inner regions of the scaffold construct. This work focused on the assessment of a hydroxyapatite multi-domain porous scaffold architecture (i.e. a scaffold providing a discrete domain for cell occupancy and a separate domain for nutrient delivery). It has been demonstrated that incorporating unidirectional channels into a porous scaffold material significantly enhanced initial cell seeding distribution, while maintaining relatively high seeding efficiencies. In vitro static culturing showed that providing a discrete domain for nutrient diffusion and metabolic waste removal is insufficient to enhance or maintain homogeneous cell viability throughout the entire scaffold depth during a 7-day culture period. In contrast, scaffolds subjected to dynamic rotational culturing maintained uniform cell viability throughout the scaffold depth with increasing culturing time and enhanced the extent of cell proliferation (approximately 2-2.4-fold increase) compared to static culturing.

摘要

基于组织工程支架的策略在体外培养时,由于活细胞通常存在于流体-支架界面,因此细胞深度存活能力有限。这主要是由于缺乏向支架结构内部区域输送营养物质和清除废物的能力。本工作重点评估了羟基磷灰石多域多孔支架结构(即提供离散的细胞占据域和单独的营养物质输送域的支架)。已经证明,在多孔支架材料中加入单向通道可以显著提高初始细胞接种分布,同时保持相对较高的接种效率。体外静态培养表明,提供离散的营养扩散和代谢废物清除域不足以在 7 天的培养期间增强或维持整个支架深度的均匀细胞活力。相比之下,在动态旋转培养中,支架在整个支架深度保持均匀的细胞活力,随着培养时间的增加,细胞增殖程度增加(与静态培养相比约增加 2-2.4 倍)。

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