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动物细胞生物反应器中的氧梯度。

Oxygen gradients in animal-cell bioreactors.

机构信息

Food and Bioprocess Engineering Group, Wageningen Agricultural University, P.O. Box 8129, 6700 EV, Wageningen, The Netherlands.

出版信息

Cytotechnology. 1995 Jan;18(1-2):27-34. doi: 10.1007/BF00744317.

Abstract

An estimation is made of oxygen gradients in animal-cell bioreactors, using straightforward engineering calculations. Three types of bioreactor are considered: stirred vessel, bubble column and air lift, of sizes between 0.01 and 10 m(3). First, the gradient is estimated in the stagnant layer surrounding a cell (15 μm), a microcarrier (185 μm) with 300 cells attached to it, a macroporous support (1.25 mm) containing 185,00 cells and one (6 mm) containing 4.25 million cells. It is assumed that oxygen consumption is 10(-16) mole O(2)·cell(-1)·s(-1), while mass transfer coefficients are obtained from Sherwood relations. Circulation and liquid-retention times of the bioreactors are compared with the oxygen-exhaust times of suspensions with 10(12), 10(13) and 10(14) cells/m(3) to estimate if oxygen gradients are likely to exist in the bulk-liquid phase. Finally, the gradient in the liquid film surrounding air bubbles is estimated using k( l )A-values obtained from empirical correlations. It is clear from all these estimations that in many situations severe gradients can be expected. The question remains, however, whether gradients should be avoided as much as possible, or may be tolerated to a certain extent or even created on purpose because of possible beneficial effects.

摘要

使用简单的工程计算方法对动物细胞生物反应器中的氧梯度进行估算。考虑了三种类型的生物反应器:搅拌釜、鼓泡塔和空气升液,其尺寸在 0.01 至 10 m(3)之间。首先,在细胞(15 μm)、附着有 300 个细胞的微载体(185 μm)、含有 185,000 个细胞的大孔载体(1.25 mm)和含有 4.25 百万个细胞的载体(6 mm)周围的停滞层中估计梯度。假设氧消耗为 10(-16)摩尔 O(2)·细胞(-1)·s(-1),而传质系数则根据 Sherwood 关系获得。将生物反应器的循环和液体保留时间与含有 10(12)、10(13)和 10(14)个细胞/m(3)的悬浮液的氧耗尽时间进行比较,以估计在主体液相中是否可能存在氧梯度。最后,使用从经验相关关系获得的 k( l )A 值估算围绕气泡的液体膜中的梯度。从所有这些估算中可以清楚地看出,在许多情况下可能会出现严重的梯度。然而,问题仍然是,梯度是否应该尽可能避免,或者可以在一定程度上容忍,甚至可以有意地产生,因为可能存在有益的影响。

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