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Influence of incubation time and action of fluid flow on SPEV cell adhesion strength to a glass substrate

机译:孵化时间和流体流动对玻璃基板的液体流动粘附强度的影响

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摘要

The results of study of SPEV cell adhesion to the glass substrate that were obtained with a radial-flow chamber shown that in some cases the cells which were incubated on the substrate for a longer time were more strongly attached to it, and under certain conditions such cells detached easier than cells with a shorter incubation time. For example, when the channel height was decreased more of cells were detached from substrate with increasing incubation time. Besides an increase of flow action time on the cells increased an amount of detached cells, and an increase of initial shear stress resulted in decrease an amount of cells which detached from the surface regardless of incubation time. During each experiment more spread cells detached from the substrate earlier than the more spherical one. When both the flow rate and channel height were reduced in the radial-flow chamber, but the initial shear stress was the same as before the changes of these parameters, then the critical radius, the critical shear stress and the time of reach these critical values sharply decreased. In addition, in this case, the area of the projection of cells remaining on the substrate also decreased.
机译:用径向流动室获得的玻璃基板的SPEV电池粘附结果表明,在某些情况下,在衬底上温育较长时间的细胞更强烈地附着在其中,并且在某些条件下细胞与孵育时间较短的细胞更容易。例如,当沟道高度减少更多细胞随着孵育时间拆分。除了细胞上的流动作用时间的增加,增加了脱离细胞的量,并且初始剪切胁迫的增加导致从表面脱离的细胞量减少,无论孵育时间如何。在每个实验期间,更多的涂抹电池比更具球形更早地从基板上脱离。当在径向流动室中减小流速和通道高度时,但初始剪切应力与这些参数的变化之前相同,然后是临界半径,临界剪切应力和达到这些关键值的时间急剧下降。另外,在这种情况下,留在基板上的单元的投影面积也降低。

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