Pharmaceutical Production Research Facility (PPRF), Schulich School of Engineering, University of Calgary, Calgary, AB, Canada.
J Tissue Eng Regen Med. 2014 Apr;8(4):268-78. doi: 10.1002/term.1518. Epub 2012 Jun 1.
Pluripotent embryonic stem cells (ESCs) have been used increasingly in research as primary material for various tissue-engineering applications. Pluripotency, or the ability to give rise to all cells of the body, is an important characteristic of ESCs. Traditional methods use leukaemia inhibitory factor (LIF) to maintain murine embryonic stem cell (mESC) pluripotency in static and bioreactor cultures. When LIF is removed from mESCs in static cultures, pluripotency genes are downregulated and the cultures will spontaneously differentiate. Recently we have shown the maintenance of pluripotency gene expression of mESCs in stirred suspension bioreactors during differentiation experiments in the absence of LIF. This is undesired in a differentiation experiment, where the goal is downregulation of pluripotency gene expression and upregulation of gene expression characteristic to the differentiation. Thus, the objective of this study was to examine how effectively different levels of shear stress [100 rpm (6 dyne/cm(2) ), 60 rpm (3 dyne/cm(2) )] maintained and influenced pluripotency in suspension bioreactors. The pluripotency markers Oct-4, Nanog, Sox-2 and Rex-1 were assessed using gene expression profiles and flow-cytometry analysis and showed that shear stress does maintain and influence the gene expression of certain pluripotency markers. Some significant differences between the two levels of shear stress were seen and the combination of shear stress and LIF was observed to synergistically increase the expression of certain pluripotency markers. Overall, this study provides a better understanding of the environmental conditions within suspension bioreactors and how these conditions affect the pluripotency of mESCs.
多能胚胎干细胞(ESCs)已越来越多地被用于各种组织工程应用的基础研究。多能性,即产生身体所有细胞的能力,是 ESCs 的重要特征。传统方法使用白血病抑制因子(LIF)在静态和生物反应器培养物中维持小鼠胚胎干细胞(mESC)的多能性。当 LIF 从静态培养物中的 mESCs 中去除时,多能性基因下调,培养物将自发分化。最近,我们已经证明在没有 LIF 的分化实验中,mESC 在搅拌悬浮生物反应器中的多能性基因表达得到维持。这在分化实验中是不希望的,因为分化实验的目标是下调多能性基因表达并上调分化特征的基因表达。因此,本研究的目的是研究不同水平的剪切应力[100rpm(6dyne/cm²),60rpm(3dyne/cm²)]如何有效地维持和影响悬浮生物反应器中的多能性。使用基因表达谱和流式细胞术分析评估多能性标志物 Oct-4、Nanog、Sox-2 和 Rex-1,并表明剪切应力确实维持和影响某些多能性标志物的基因表达。观察到两种剪切应力水平之间存在一些显著差异,并观察到剪切应力和 LIF 的组合协同增加某些多能性标志物的表达。总体而言,这项研究提供了对悬浮生物反应器内环境条件的更好理解,以及这些条件如何影响 mESC 的多能性。