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Application of Fluid Mechanical Force to Embryonic Sources of Hemogenic Endothelium and Hematopoietic Stem Cells

机译:流体机械力在造血内皮细胞和造血干细胞胚胎源中的应用

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摘要

During embryonic development, hemodynamic forces caused by blood flow support vascular remodeling, arterialization of luminal endothelium, and hematopoietic stem cell (HSC) emergence. Previously, we reported that fluid shear stress plays a key role in stimulating nitric oxide (NO) signaling in the aorta-gonad-mesonephros (AGM) and is essential for definitive hematopoiesis. We employed a Dynamic Flow System modified from a cone-and-plate assembly to precisely regulate in vitro exposure of AGM cells to a defined pattern of laminar shear stress. Here, we present the design of a microfluidic platform accessible to any research group that requires small cell numbers and allows for recirculation of paracrine signaling factors with minimal damage to nonadherent hematopoietic progenitors and stem cells. We detail the assembly of the microfluidic platform using commercially available components and provide specific guidance in the use of an emerging standard in the measurement of embryonic HSC potential, intravenous neonatal transplantation.
机译:在胚胎发育过程中,由血流引起的血液动力支持血管重塑,腔内皮的动脉化和造血干细胞(HSC)的出现。以前,我们报道了流体剪切应力在刺激主动脉-性腺-中肾(AGM)中的一氧化氮(NO)信号传导中起关键作用,并且对于确定性造血至关重要。我们采用了动态流系统,该系统由锥板组装改进而成,可以精确地调节AGM细胞在体外对层流切应力的定义模式的暴露。在这里,我们提出了一个微流体平台的设计,该平台可用于需要小细胞数量的任何研究小组,并允许旁分泌信号因子的再循环,对非粘附造血祖细胞和干细胞的损害最小。我们详细介绍了使用市售组件的微流控平台的组装,并在新兴标准的应用中为胚胎HSC潜力的测量,静脉内新生儿移植提供具体指导。

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