首页> 外文会议>ASME summer bioengineering conference;SBC2009 >INDUCTION OF CARDIOMYOCYTE DIFFERENTIATION FROM MOUSE EMBRYONIC STEM CELLS IN A CONFINED MICROFLUIDIC ENVIRONMENT
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INDUCTION OF CARDIOMYOCYTE DIFFERENTIATION FROM MOUSE EMBRYONIC STEM CELLS IN A CONFINED MICROFLUIDIC ENVIRONMENT

机译:在有限的微流体环境中诱导小鼠胚胎干细胞分化为心肌细胞

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Embryonic stem cell derived cardiomyocytes are deemed an attractive treatment option for myocardial infarction. Their clinical efficacy, however, has not been unequivocally demonstrated. There is a need for better understanding and characterization of the cardiogenesis process. A microfluidic platform in vitro is used to dissect and better understand the differentiation process. Through this study, we find that while embryoid bodies (EBs) flatten out in a well plate system, differentiated EBs self-assemble into complex 3D structures. The beating regions of EBs are also different. Most beating areas are observed in a ring pattern on 2D well plates around the center, self-assembled beating large 3D aggregates are found in microfluidic devices. Furthermore, inspired by the natural mechanical environment of the heart, we applied uniaxial cyclic mechanical stretch to EBs. Results suggest that prolonged mechanical stimulation acts as a negative regulator of cardiogenesis. From this study, we conclude that the culture environments can influence differentiation of embryonic stem cells into cardiomycytes, and that the use of microfluidic systems can provide new insights into the differentiation process.
机译:胚胎干细胞衍生的心肌细胞被认为是心肌梗塞的一种有吸引力的治疗选择。但是,尚未明确证明其临床疗效。需要更好地理解和表征心脏发生过程。使用体外微流控平台进行解剖并更好地了解分化过程。通过这项研究,我们发现,尽管胚状体(EBs)在孔板系统中变平,但分化的EBs自组装成复杂的3D结构。 EB的跳动区域也不同。在中心附近的2D孔板上,以环形观察到大多数跳动区域,在微流控设备中发现了自组装的跳动大3D聚集体。此外,受心脏自然机械环境的启发,我们将单轴循环机械拉伸应用于EB。结果表明,长时间的机械刺激可作为心脏发生的负向调节器。从这项研究中,我们得出的结论是,培养环境可以影响胚胎干细胞向心肌细胞的分化,而微流体系统的使用可以为分化过程提供新的见识。

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