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Influence of culture pH on proliferation and cardiac differentiation of murine embryonic stem cells

机译:培养液pH值对小鼠胚胎干细胞增殖和心脏分化的影响

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Embryonic stem cells (ESCs) possess great potential in many tissue engineering applications such as cardiac regeneration. Culture pH is important in stem cell cultures as they could impact vitality of the culture and cell fate decisions. In this study, we demonstrated how sensitive ESCs are to pH, utilizing murine ESCs as a cell model and experiments conducted at three different pH conditions (pH 6,8,7.1 and 7.4). Maintenance of culture pH was achieved via a perfused rotary bioreactor while murine ESCs were encapsulated in alginate hydrogels, which served as a three-dimensional (3D) platform and matrix support for the ESC culture. Our results showed that at pH 6.8, ESC viability was inferior to those at pH 7.1 and 7.4. Lower cardiac gene expressions and percentage of cardiac troponin-! positive cells at pH 6.8 indicated that cardiac differentiation of ESCs was significantly compromised. Concurrently, residual pluripotency of ESCs was better conserved at pH 6.8 as compared to higher pH conditions. Finally increased levels of MAPK14 and HIF-2a suggest an impact of pH on kinase and HIF regulated pathways. This study highlights how a small change in pH could significantly affect the growth and differentiation of ESCs toward cardiomyocytes. Therefore, there is an important need for good control of culture parameters such as pH in ESC cultures, so as to obtain the optimal and desired cell output.
机译:胚胎干细胞(ESC)在许多组织工程应用(例如心脏再生)中具有巨大潜力。培养液的pH在干细胞培养中很重要,因为它们可能影响培养的活力和细胞命运的决定。在这项研究中,我们利用鼠类ESC作为细胞模型并在三种不同的pH条件(pH 6,8,7.1和7.4)下进行了实验,证明了ESC对pH的敏感性。通过灌注的旋转生物反应器实现培养pH的维持,而将小鼠ESC封装在藻酸盐水凝胶中,藻酸盐水凝胶充当ESC培养的三维(3D)平台和基质支持。我们的结果表明,在pH 6.8时,ESC的生存能力低于在pH 7.1和7.4时。降低心脏基因表达和心肌肌钙蛋白-!的百分比pH 6.8的阳性细胞表明,ESC的心脏分化受到明显损害。同时,与更高的pH条件相比,在pH 6.8时ESC的残留多能性得到更好的保护。最后,MAPK14和HIF-2a的水平升高表明pH对激酶和HIF调控途径的影响。这项研究强调了pH值的微小变化如何显着影响ESCs向心肌细胞的生长和分化。因此,非常需要对ESC参数培养中的pH等培养参数进行良好的控制,以获得最佳的期望细胞输出。

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