首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Evaluating 3D bone tissue engineered constructs with different seeding densities using the alamarBlue~(TM) assay and the effect on in vivo bone formation
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Evaluating 3D bone tissue engineered constructs with different seeding densities using the alamarBlue~(TM) assay and the effect on in vivo bone formation

机译:使用alamarBlue〜(TM)分析评估具有不同接种密度的3D骨组织工程化构建体及其对体内骨骼形成的影响

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摘要

Bone tissue engineering using patient derived cells seeded onto porous scaffolds has gained much attention in recent years. Evaluating the viability of these 3D constructs is an essential step in optimizing the process. The alamarBlue~(TM) (aB) assay was evaluated for its potential to follow in vitro cell proliferation on architecturally standardized hydroxyapatite scaffolds. The impact of the aB assayed and seeding density on subsequent in vivo bone formation was investigated. Twelve scaffolds were seeded with various densities from 250 to 2.5 x 10~6 cells/ scaffold and assay by aB at 5 time points during the 7-day culture period. Twelve additional scaffolds were seeded with 2.5 x 10~5 cells/scaffold. Two control and 2 aB treated scaffolds were subcutaneously implanted into each of 6 nude mice for 6 weeks. Four observers ranked bone formation using a pair wise comparison of histological sections form each mouse. The aB assay successfully followed cell proliferation, however, the diffusion kinetics of the 3D constructs must be considered. The influence of in vitro aB treatment on subsequent in vivo bone formation cannot be ruled out but was not shown to be significant in the current study. The aB assay appears to be quite promising for evaluating a maximum or end-point viability of 3D tissue engineered constructs. Finally, higher seeding densities resulted in more observed bone formation.
机译:近年来,使用从患者获得的细胞播种到多孔支架上的骨组织工程学受到了广泛关注。评估这些3D构造的可行性是优化过程的必要步骤。评估了alamarBlueTM(aB)分析在架构标准化的羟基磷灰石支架上跟随体外细胞增殖的潜力。研究了测定的aB和接种密度对随后体内骨骼形成的影响。在7天的培养期间的5个时间点,将十二个支架以250至2.5 x 10〜6个细胞/支架的不同密度接种,并通过aB进行分析。再向十二个支架中接种2.5 x 10〜5个细胞/支架。将两个对照和2个aB处理的支架皮下植入6只裸鼠中的每只,持续6周。四名观察员使用成对比较每只小鼠的组织学切片对骨形成进行了排名。 aB分析成功地跟随了细胞增殖,但是,必须考虑3D构建体的扩散动力学。不能排除体外aB治疗对随后体内骨形成的影响,但在当前研究中并未显示出显着影响。对于评估3D组织工程构建体的最大或终点生存力而言,aB分析似乎非常有前途。最后,较高的播种密度导致观察到更多的骨形成。

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