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对软骨细胞和成纤维软骨细胞基因表达的传代及三维培养效应进行定量追踪。

Quantitative tracking of passage and 3D culture effects on chondrocyte and fibrochondrocyte gene expression.

作者信息

Son Min-Sun, Levenston Marc E

机构信息

Department of Bioengineering, Stanford University, CA, USA.

Department of Mechanical Engineering, Stanford University, CA, USA.

出版信息

J Tissue Eng Regen Med. 2017 Apr;11(4):1185-1194. doi: 10.1002/term.2022. Epub 2015 Mar 30.

Abstract

Success in cartilage and fibrocartilage tissue engineering relies heavily on using an appropriate cell source. Many different cell sources have been identified, including primary and stem cells, along with experimental strategies to obtain the required number of cells or to induce chondrogenesis. However, no definitive method exists to quantitatively evaluate the similarity of the resulting cell phenotypes to those of the native cells between candidate strategies. In this study, we develop an integrative approach to enable such evaluations by deriving, from gene expression profiles, two quantitative metrics representing the nearest location within the range of native cell phenotypes and the deviation from it. As an example application to evaluating potential cell sources for cartilage or meniscus tissue engineering, we examine phenotypic changes of juvenile and adult articular chondrocytes and fibrochondrocytes across multiple passages and subsequent 3D culture. A substantial change was observed in cell phenotype due to the isolation process itself, followed by a clear progression toward the outer meniscal cell phenotype with passage. The new metrics also indicated that 3D culture moderately reduced the passage-induced deviation from the native meniscal phenotypes for juvenile chondrocytes and adult fibrochondrocytes, which was not obvious through examination of individual gene expressions. However, brief 3D culture alone did not move any of the cells towards an inner meniscal phenotype, the most relevant target for meniscal tissue engineering. This integrative approach of examining and combining multiple gene expressions can be used to evaluate various other tissue-engineering strategies to direct cells toward the desired phenotype. Copyright © 2015 John Wiley & Sons, Ltd.

摘要

软骨和纤维软骨组织工程的成功很大程度上依赖于使用合适的细胞来源。已经确定了许多不同的细胞来源,包括原代细胞和干细胞,以及获得所需细胞数量或诱导软骨形成的实验策略。然而,目前还没有确定的方法来定量评估候选策略所产生的细胞表型与天然细胞表型之间的相似性。在本研究中,我们开发了一种综合方法,通过从基因表达谱中推导两个定量指标来进行此类评估,这两个指标分别代表在天然细胞表型范围内的最接近位置以及与之的偏差。作为评估软骨或半月板组织工程潜在细胞来源的一个示例应用,我们研究了幼年和成年关节软骨细胞以及纤维软骨细胞在多次传代和随后的三维培养过程中的表型变化。由于分离过程本身,细胞表型发生了显著变化,随后随着传代明显向半月板外侧细胞表型发展。新的指标还表明,三维培养适度降低了传代诱导的幼年软骨细胞和成年纤维软骨细胞与天然半月板表型的偏差,这通过单个基因表达的检测并不明显。然而,单独的短暂三维培养并没有使任何细胞向半月板内侧表型发展,而半月板内侧表型是半月板组织工程最相关的目标。这种检查和组合多个基因表达的综合方法可用于评估各种其他组织工程策略,以引导细胞向所需表型发展。版权所有© 2015约翰威立父子有限公司。

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