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关于气泡柱生物反应器中气液界面效应对杂交瘤细胞活力的评估

On the evaluation of gas-liquid interfacial effects on hybridoma viability in bubble column bioreactors.

作者信息

Handa A, Emery A N, Spier R E

出版信息

Dev Biol Stand. 1987;66:241-53.

PMID:3582753
Abstract

Sparger aeration, with or without mechanical agitation is the simplest method of providing an oxygen supply. Although earlier workers have demonstrated the sensitivity of mammalian cells to air bubbles, recent successful applications of the airlift principle to hybridoma culture indicate that under some conditions, the cells can withstand these effects. Therefore, this work has as its objective the elucidation of the relationship between gas-liquid interfaces and the survival of mammalian cells. Simple, 0.5 litre bubble columns with sintered discs are used batch-wise to study the effects of sparging on hybridomas and other mammalian cells in suspension culture. The effects of bubble diameters, superficial gas velocities and the non-ionic surfactant, Pluriol PE 6800, are investigated in cultures grown in RPM1 1640 with 5% foetal calf serum and 6 ppm silicone antifoam. From these studies it has become apparent that cell viability and survival in the presence of bubbles depend on: Cell type--Some cell lines are shown to be particularly sensitive to the presence of bubbles, although no gross morphological differences are detected by electron microscopy. Bubble sizes--At a superficial gas velocity of 0.42 X 10(-4)m/s (5 cc/min gas flow rate), small bubbles are shown to be more detrimental to the cells than the larger ones. Bubble frequency/superficial gas velocities--Increasing superficial gas velocities (0.42 X 10(-4) to 8.5 X 10(-4) m/s) result in decreasing cell viability. Where the presence of bubbles is detrimental to cell growth, the addition of the non-ionic surfactant, Pluriol PE 6800, has a concentration dependent protective effect. Surface tension, viscosity and bubble diameter data for typical medium will be presented. A novel application of microscopy to which video film systems can be applied for direct visualisation of the cells in the bubble column has been developed. From these studies, it is indicative that both the geometry of the system and the cell type are important in mammalian cell culture scale-up strategy.

摘要

带有或不带有机械搅拌的鼓泡曝气是提供氧气供应的最简单方法。尽管早期的研究人员已经证明了哺乳动物细胞对气泡的敏感性,但最近气升原理在杂交瘤培养中的成功应用表明,在某些条件下,细胞可以承受这些影响。因此,这项工作的目的是阐明气液界面与哺乳动物细胞存活之间的关系。使用带有烧结盘的简单0.5升鼓泡柱进行分批实验,以研究曝气对悬浮培养中的杂交瘤和其他哺乳动物细胞的影响。在含有5%胎牛血清和6 ppm有机硅消泡剂的RPMI 1640培养基中培养细胞,研究气泡直径、表观气速和非离子表面活性剂Pluriol PE 6800的影响。从这些研究中可以明显看出,在有气泡存在的情况下,细胞活力和存活取决于:细胞类型——尽管通过电子显微镜未检测到明显的形态差异,但一些细胞系对气泡的存在特别敏感。气泡大小——在表观气速为0.42×10(-4)m/s(气体流速5 cc/min)时,小气泡对细胞的损害比大气泡更大。气泡频率/表观气速——表观气速增加(0.42×10(-4)至8.5×10(-4)m/s)会导致细胞活力下降。在气泡的存在对细胞生长有害的情况下,添加非离子表面活性剂Pluriol PE 6800具有浓度依赖性的保护作用。将给出典型培养基的表面张力、粘度和气泡直径数据。已经开发出一种新颖的显微镜应用,视频胶片系统可用于直接观察鼓泡柱中的细胞。从这些研究中可以看出,系统的几何形状和细胞类型在哺乳动物细胞培养放大策略中都很重要。

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