首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >(V010T13A001)A BIOMIMETiC MICROFLUIDIC DEVICE FOR THE STUDY OF THE RESPONSE OF ENDOTHELIAL CELLS UNDER MECHANICAL FORCES
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(V010T13A001)A BIOMIMETiC MICROFLUIDIC DEVICE FOR THE STUDY OF THE RESPONSE OF ENDOTHELIAL CELLS UNDER MECHANICAL FORCES

机译:(V010T13A001)一种用于研究机械力下内皮细胞响应的仿生微流体装置

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Vascular science is an active area of medicine and biological research. In recent years, intensive research has been focused on the reaction of endothelial cells (ECs) to relevant biological, chemical, or physical cues in vitro. The primary thing of these studies is to make a biomimic environment of ECs which is closer to the in vivo conditions. Here we developed a microfluidic system and fabricated a grooved rnicropattern thin film to simulate inner blood vessel wall. The micropattern structure was generated by using the elastic biocompatible material poly(dimethylsiloxane) (PDMS). Human umbilical vein endothelial cells (HUVECs) were cultured on the grooved micropattern film. After the cells reached confluence, the thin PDMS film with cells was inserted into the biological grade plastic tube. Then cell culture medium was perfused into the tube and the cellular responses under shear stress and pressure were investigated. The F-actin cytoskeleton and the nuclei of the cells were stained for examination. This microfluidic system provides a convenient and cost-effective platform for the studies of cellular response to mechanical forces. Moreover, this system could also be used for studying cellular responses to drugs under mechanical forces.
机译:血管科学是一种活跃的医学领域和生物学研究。近年来,密集研究专注于内皮细胞(ECS)对多体外生物,化学或物理线索的反应。这些研究的主要事情是制造ECS的生物体环境,该生物环境更接近体内条件。在这里,我们开发了一种微流体系统并制造了一个带槽耙薄膜,以模拟内部血管壁。通过使用弹性生物相容性材料聚(二甲基硅氧烷)(PDMS)产生微图案结构。人的脐静脉内皮细胞(HUVECS)在带槽的微图案膜上培养。在细胞达到汇合之后,将具有细胞的薄PDMS薄膜插入生物级塑料管中。然后将细胞培养基灌注到管中,并研究了剪切应力和压力下的细胞反应。染色F-肌动蛋白细胞骨架和细胞的核被染色检查。这种微流体系统为研究机械力的植物反应提供了一种方便且经济高效的平台。此外,该系统还可用于研究对机械力下药物的细胞反应。

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