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A new flow co-culture system for studying mechanobiology effects of pulse flow waves

机译:用于研究脉冲流波的机械生物学效应的新型流动共培养系统

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摘要

Artery stiffening is known as an important pathological change that precedes small vessel dysfunction, but underlying cellular mechanisms are still elusive. This paper reports the development of a flow co-culture system that imposes a range of arterial-like pulse flow waves, with similar mean flow rate but varied pulsatility controlled by upstream stiffness, onto a 3-D endothelial-smooth muscle cell co-culture. Computational fluid dynamics results identified a uniform flow area critical for cell mechanobiology studies. For validation, experimentally measured flow profiles were compared to computationally simulated flow profiles, which revealed percentage difference in the maximum flow to be <10, <5, or <1% for a high, medium, or low pulse flow wave, respectively. This comparison indicated that the computational model accurately demonstrated experimental conditions. The results from endothelial expression of proinflammatory genes and from determination of proliferating smooth muscle cell percentage both showed that cell activities did not vary within the identified uniform flow region, but were upregulated by high pulse flow compared to steady flow. The flow system developed and characterized here provides an important tool to enhance the understanding of vascular cell remodeling under flow environments regulated by stiffening.Electronic supplementary materialThe online version of this article (doi:10.1007/s10616-012-9445-2) contains supplementary material, which is available to authorized users.
机译:众所周知,动脉硬化是发生在小血管功能障碍之前的重要病理改变,但潜在的细胞机制仍然难以捉摸。本文报道了一种流动共培养系统的发展,该系统在3-D内皮-平滑肌细胞共培养上施加了一系列类似动脉的脉搏波,具有类似的平均流速,但受上游硬度控制的搏动变化。计算流体动力学结果确定了对细胞力学生物学研究至关重要的均匀流动区域。为了进行验证,将实验测量的流量曲线与计算模拟的流量曲线进行比较,结果表明,对于高,中或低脉冲流波,最大流量的百分比差异分别为<10%,<5%或<1%。该比较表明该计算模型准确地证明了实验条件。促炎基因的内皮表达和增生的平滑肌细胞百分比测定的结果均表明,在确定的均匀流区域内,细胞活性没有变化,但与稳定流相比,高脉冲流上调了细胞活性。本文开发和表征的流动系统提供了一个重要工具,可增强对在变硬条件下流动环境下血管细胞重塑的了解。电子补充材料本文的在线版本(doi:10.1007 / s10616-012-9445-2)包含补充材料,可供授权用户使用。

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