EFFECT OF VISCOSITY UPON HYDRODYNAMICALLY CONTROLLED NATURAL AGGREGATES OF ANIMAL-CELLS GROWN IN STIRRED VESSELS

被引:38
作者
MOREIRA, JL
SANTANA, PC
FELICIANO, AS
CRUZ, PE
RACHER, AJ
GRIFFITHS, JB
CARRONDO, MJT
机构
[1] INST BIOL EXPTL & TECNOL, P-2780 OEIRAS, PORTUGAL
[2] UNIV NOVA LISBOA, INST TECNOL QUIM & BIOL, P-2780 OEIRAS, PORTUGAL
[3] PUBL HLTH LAB SERV, CTR APPL MICROBIOL & RES, DIV RES, SALISBURY SP4 0JG, WILTS, ENGLAND
[4] UNIV NOVA LISBOA, FAC CIENCIAS & TECNOL, ENGN BIOQUIM LAB, P-2825 MONTE DE CAPARICA, PORTUGAL
关键词
D O I
10.1021/bp00035a012
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The effect of medium viscosity upon cell growth and aggregate characteristics of baby hamster kidney (BHK) cells cultivated in stirred tanks was evaluated. Two thickening agents were tested, 9300 MW dextran and a low-viscosity sodium (carboxymethyl)cellulose; both were used in two different sets of experiments: (i) 250 cm(3) Wheaten spinner flasks with a ball impeller operated at 45 rpm; (ii) 500 cm(3) Corning spinner flasks with a paddle impeller, operated at constant power dissipation (88 cm(2) s(-3)). Aggregate diameter and the fraction of cells in aggregates increased with the increase in viscosity. Power laws were applied to the experimental results. A dependence of aggregate size upon power dissipation of the order of -0.19 and kinematic viscosity of 0.34 and 0.49 for the constant agitation and constant power dissipation tests were obtained, respectively. A model based upon the entire universal-equilibrium range (i.e., the entire spectrum of isotropic eddies) was used to predict theoretical relationships between the variables studied. The model leads to a power dependence of -0.25 for the energy dissipated in the entire universal-equilibrium range and between 0.25 and 0.5 for the kinematic viscosity in the viscous dissipation subrange, depending on the energy correlation used; it also gives a good explanation for the dependence of aggregate size on the hydrodynamics of the vessel.
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页码:575 / 583
页数:9
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