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Systems level approach reveals the correlation of endoderm differentiation of mouse embryonic stem cells with specific microstructural cues of fibrin gels

机译:系统级方法揭示了小鼠胚胎干细胞的内胚层分化与纤维蛋白凝胶的特定微结构线索的相关性

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摘要

Stem cells receive numerous cues from their associated substrate that help to govern their behaviour. However, identification of influential substrate characteristics poses difficulties because of their complex nature. In this study, we developed an integrated experimental and systems level modelling approach to investigate and identify specific substrate features influencing differentiation of mouse embryonic stem cells (mESCs) on a model fibrous substrate, fibrin. We synthesized a range of fibrin gels by varying fibrinogen and thrombin concentrations, which led to a range of substrate stiffness and microstructure. mESCs were cultured on each of these gels, and characterization of the differentiated cells revealed a strong influence of substrate modulation on gene expression patterning. To identify specific substrate features influencing differentiation, the substrate microstructure was quantified by image analysis and correlated with stem cell gene expression patterns using a statistical model. Significant correlations were observed between differentiation and microstructure features, specifically fibre alignment. Furthermore, this relationship occurred in a lineage-specific manner towards endoderm. This systems level approach allows for identification of specific substrate features from a complex material which are influential to cellular behaviour. Such analysis may be effective in guiding the design of scaffolds with specific properties for tissue engineering applications.
机译:干细胞从其相关的基质中收到许多线索,有助于控制其行为。然而,由于其复杂的性质,对有影响的底物特征的鉴定带来了困难。在这项研究中,我们开发了一种集成的实验和系统级建模方法,以研究和鉴定影响模型纤维底物纤维蛋白上的小鼠胚胎干细胞(mESCs)分化的特定底物特征。我们通过改变纤维蛋白原和凝血酶的浓度合成了一系列纤维蛋白凝胶,从而产生了一系列的底物硬度和微观结构。在每种凝胶上均培养了mESC,对分化细胞的表征揭示了底物调节对基因表达模式的强烈影响。为了鉴定影响分化的特定底物特征,通过图像分析对底物微结构进行定量,并使用统计模型将其与干细胞基因表达模式相关联。在分化和微结构特征之间,特别是在纤维排列之间,观察到了显着的相关性。此外,这种关系以针对谱系的谱系特异性方式发生。这种系统级方法允许从复杂的材料中识别对细胞行为有影响的特定底物特征。这样的分析可以有效地指导具有组织工程应用的特定性质的支架的设计。

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