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一种用于植物和动物细胞培养的实验室制造的呼吸计。

A lab-built respirometer for plant and animal cell culture.

作者信息

Lamboursain Laurence, St-Onge Frédéric, Jolicoeur Mario

机构信息

Bio-P2 Research Unit, Department of Chemical Engineering, Ecole Polytechnique de Montréal, PO Box 6079, Centreville Station, Montréal, Québec, Canada H3C 3A7.

出版信息

Biotechnol Prog. 2002 Nov-Dec;18(6):1377-86. doi: 10.1021/bp015511j.

Abstract

A very simple off-line respirometer was developed to measure oxygen consumption rates of low respiring and shear-sensitive cell suspensions. The respirometer is composed of a 10 mL glass syringe in which the plunger was substituted with a polarographic dissolved oxygen probe. Mechanical agitation is provided by means of a magnetic stirring bar inside the measuring chamber and a stir plate placed below the respirometer. Abiotic oxygen fluxes occurring in the measurement chamber such as oxygen diffusion and probe oxygen consumption were investigated. The apparent oxygen uptake rate was then corrected for abiotic oxygen fluxes, leading to accurate measurements of respiration rates ranging from 0.5 to 25.0 mM x h(-1). Additionally, the effect of the stirring bar shape and of the test length on the integrity of plant (Eschschzoltzia californica) and animal (NS0) cells was evaluated. Animal cells showed a higher resistance to mechanical stirring inside the respirometer compared to plant cells (0% of broken cells and 78.1% respectively for a polygonal stirring bar and a 15 min test). For plant cells, cell damage inside the measurement chamber was reduced by optimizing the stirring bar shape and reducing the test length to 5 min or less. This very simple design was shown to provide reliable and low-cost quantification of the oxygen uptake rate of plant and animal cells and can be use even for more demanding measurements such as oxygen affinity studies.

摘要

我们开发了一种非常简单的离线呼吸计,用于测量低呼吸速率和对剪切敏感的细胞悬液的耗氧率。该呼吸计由一个10 mL的玻璃注射器组成,其中的活塞被一个极谱溶解氧探头所取代。通过测量室内的磁力搅拌棒和置于呼吸计下方的搅拌板提供机械搅拌。对测量室内发生的非生物氧通量,如氧扩散和探头耗氧进行了研究。然后对表观氧摄取率进行非生物氧通量校正,从而准确测量0.5至25.0 mM×h⁻¹范围内的呼吸速率。此外,还评估了搅拌棒形状和测试时长对植物(加州罂粟)和动物(NS0)细胞完整性的影响。与植物细胞相比,动物细胞在呼吸计内对机械搅拌表现出更高的抗性(对于多边形搅拌棒和15分钟测试,破碎细胞分别为0%和78.1%)。对于植物细胞,通过优化搅拌棒形状并将测试时长缩短至5分钟或更短,可减少测量室内的细胞损伤。这种非常简单的设计被证明能够可靠且低成本地定量植物和动物细胞的氧摄取率,甚至可用于更苛刻的测量,如氧亲和力研究。

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