Flow in the well: computational fluid dynamics is essential in flow chamber construction

被引:0
作者
Markus Vogel
Jörg Franke
Wolfram Frank
Horst Schroten
机构
[1] Universitätsklinikum Düsseldorf,Pädiatrische Infektiologie, Klinik für Allgemeine Pädiatrie
[2] Universität Siegen,Institut für Fluid
来源
Cytotechnology | 2007年 / 55卷
关键词
Cell culture; Computational fluid dynamics; Endothelium; Venous macrovascular; Parallel plate flow chamber; Shear force;
D O I
暂无
中图分类号
学科分类号
摘要
A perfusion system was developed to generate well defined flow conditions within a well of a standard multidish. Human vein endothelial cells were cultured under flow conditions and cell response was analyzed by microscopy. Endothelial cells became elongated and spindle shaped. As demonstrated by computational fluid dynamics (CFD), cells were cultured under well defined but time varying shear stress conditions. A damper system was introduced which reduced pulsatile flow when using volumetric pumps. The flow and the wall shear stress distribution were analyzed by CFD for the steady and unsteady flow field. Usage of the volumetric pump caused variations of the wall shear stresses despite the controlled fluid environment and introduction of a damper system. Therefore the use of CFD analysis and experimental validation is critical in developing flow chambers and studying cell response to shear stress. The system presented gives an effortless flow chamber setup within a 6-well standard multidish.
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页码:41 / 54
页数:13
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