Bioprocessing Technology Institute , A*STAR (Agency for Science, Technology and Research), Singapore, Singapore.
Tissue Eng Part C Methods. 2011 Feb;17(2):165-72. doi: 10.1089/ten.TEC.2010.0320. Epub 2010 Nov 4.
One of the factors that can impact human embryonic stem cell expansion in stirred microcarrier culture reactors is mechanical stress caused by agitation. Therefore, we have investigated the effects of agitation on human embryonic stem cell growth and expression of pluripotent markers. Agitation of HES-2 cell line in microcarrier cultures in stirred spinner and agitated six-well plates did not affect expression of pluripotent markers, cell viability, and cell doubling times even after seven passages. However, HES-3 cell line was found to be shear sensitive, showing downregulation of three pluripotent markers Oct-4, mAb 84, and Tra-1-60, and lower cell densities in agitated as compared with static cultures, even after one passage. Cell viability was unaffected. The HES-3-agitated cultures showed increased expression of genes and proteins of the three germ layers. We were unable to prevent loss of pluripotent markers or restore doubling times in agitated HES-3 microcarrier cultures by addition of five different known cell protective polymers. In addition, the human induced pluripotent cell line IMR90 was also shown to differentiate in agitated conditions. These results indicate that the effect of agitation on cell growth and differentiation is cell line specific. We assume that the changes in the growth and differentiation of the agitation-sensitive (HES-3) cell line do not result from the effect of shear stress directly on cell viability, but rather by signaling effects that influence the cells to differentiate resulting in slower growth.
在搅拌微载体培养反应器中,影响人类胚胎干细胞扩增的因素之一是搅拌引起的机械应力。因此,我们研究了搅拌对人类胚胎干细胞生长和多能性标记物表达的影响。即使经过七次传代,搅拌 HES-2 细胞系在微载体培养中的搅拌旋转瓶和搅拌六孔板中的生长也不会影响多能性标记物的表达、细胞活力和细胞倍增时间。然而,发现 HES-3 细胞系对剪切敏感,与静止培养相比,在搅拌培养中下调了三个多能性标记物 Oct-4、mAb 84 和 Tra-1-60,细胞密度也较低,即使在一次传代后也是如此。细胞活力不受影响。HES-3 搅拌培养中三个胚层的基因和蛋白表达增加。我们无法通过添加五种不同的已知细胞保护聚合物来防止搅拌 HES-3 微载体培养中多能性标记物的丢失或恢复倍增时间。此外,还表明人诱导多能干细胞系 IMR90 在搅拌条件下也会分化。这些结果表明,搅拌对细胞生长和分化的影响是细胞系特异性的。我们假设,搅拌敏感(HES-3)细胞系生长和分化的变化不是由于剪切应力直接对细胞活力的影响,而是通过影响细胞分化从而导致生长缓慢的信号转导效应。