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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Suspension of microcarriers for cell culture with axial flow impellers
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Suspension of microcarriers for cell culture with axial flow impellers

机译:悬浮微载体用于带有轴流式叶轮的细胞培养

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The suspension characteristics, the agitator speed, N-js, and the mean specific energy dissipation rate, epsilon(Tjs), required to just fully suspend similar to20% wet weight Cytodex 3(R) microcarrier beads have been studied using a range of different diameter Chemineer HE-3 hydrofoils, a pair of Ekato InterMIG impellers and a six-blade mixed-flow impeller in a baffled vessel of 19.2 1 operating volume containing phosphate buffer saline solution. Flat and modified tank bases were used. Njs values were observed to be in the range of 50 to 90 rev min(-1). The use of Zwietering's correlation using existing literature geometric suspension parameters, S, to predict N-js would give values up to 50% higher. The low Njs values obtained in the experiments are attributed to the very small particle-liquid density difference (40 kg m(-3)), which eased the lifting of the particles from the tank bottom, compared to those studied previously. Also, it was found that at Njs, it took up to about 40 min to suspend all particles as the upper surface of the initially settled bed was scoured away. Previous work has not reported such a long-term phenomenon. With the liquid/particle properties used in this study, the three-blade hydrofoil HE-3 impeller of D/T = 0.39 in a cone-and-fillet based tank was marginally the most efficient; that is, it had the lowest (epsilon(T))(js) of similar to0.5 x 10(-3) W kg(-1). However, (epsilon(T))(js) was less than 1 x 10(-3) W kg(-1) in most cases with the different size HE-3 hydrofoils, which implies that these geometries would probably be suitable for application in shear-sensitive animal cell culture systems using such microcarriers.
机译:已经研究了仅完全悬浮类似于20%湿重Cytodex 3(R)微载体微珠所需的悬浮特性,搅拌器速度N-js和平均比能量耗散率epsilon(Tjs)。在装有磷酸盐缓冲盐溶液的19.2 1工作容积的带挡板的容器中,使用直径最大的Chemineer HE-3水翼,一对Ekato InterMIG叶轮和六叶混合流叶轮。使用扁平的和改良的坦克基地。观察到Njs值在50至90 rev min(-1)的范围内。使用Zwietering的相关性(使用现有文献中的几何悬浮参数S来预测N-js)可将值提高50%。在实验中获得的低Njs值归因于非常小的颗粒-液体密度差(40 kg m(-3)),与先前研究的相比,该颗粒与颗粒从罐底部的提起更容易。另外,还发现在Njs,最初的沉降床的上表面被冲走时,所有颗粒的悬浮过程大约需要40分钟。以前的工作尚未报告这种长期现象。凭借本研究中使用的液体/颗粒特性,在圆锥角圆角的水箱中D / T = 0.39的三叶水翼HE-3叶轮效率最高;也就是说,它的(epsilon(T))(js)最低,约为0.5 x 10(-3)W kg(-1)。但是,在大多数情况下,使用不同尺寸的HE-3水翼,(epsilon(T))(js)小于1 x 10(-3)W kg(-1),这意味着这些几何形状可能适合于应用在使用此类微载体的对剪切敏感的动物细胞培养系统中的应用。

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