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氧张力对WI-38细胞生长和代谢的影响。

The effect of oxygen tension on the growth and metabolism of WI-38 cells.

作者信息

Balin A K, Goodman B P, Rasmussen H, Cristofalo V J

出版信息

J Cell Physiol. 1976 Oct;89(2):235-49. doi: 10.1002/jcp.1040890207.

Abstract

The effect of oxygen tension on cellular growth and metabolism was studied in actively growing WI-38 cells [greater than 90% labeled nuclei (LN)] grown under atmospheres containing 5% CO2 and various combinations of O2 and N2. Cells grown under a partial pressure of oxygen (PO2) of 7.8 +/- 3.5 mm Hg had a significantly slower growth rate, lower saturation densities and higher rates of glucose consumption and lactate production than did cells grown under a PO2 of 44 +/- 7 mm Hg. There were no significant differences in saturation density or the rates of glucose consumption or lactate production between cells grown under PO2 26 +/- 4 mm Hg, 44 +/- 7 mm Hg, or 134 +/- 11 mm Hg. Population doubling time was slightly prolonged at a PO2 of 134 mm Hg compared to a PO2 of 44 mm Hg. Cells grown under a PO2 of 291 +/- 25 mm Hg showed only 20-30% of the growth rate and 10-20% of the saturation density of cells grown under a PO2 of 134 mm Hg. Despite this reduced growth, cells grown under a PO2 of 291 mm Hg consumed four to six times as much glucose and produced four to six times as much lactate per cell as cells grown at a PO2 of 134 mm Hg. Cells grown under a PO2 of 560 +/- 38 mm Hg attached but did not proliferate. This toxic effect of oxygen on cell proliferation was reversible and was not due to an effect of oxygen on the media.

摘要

在含有5%二氧化碳以及氧气和氮气各种组合的环境中培养的活跃生长的WI - 38细胞(大于90%标记细胞核)中,研究了氧张力对细胞生长和代谢的影响。与在44±7 mmHg氧分压(PO2)下培养的细胞相比,在7.8±3.5 mmHg PO2下培养的细胞生长速率明显较慢,饱和密度较低,葡萄糖消耗率和乳酸产生率较高。在26±4 mmHg、44±7 mmHg或134±11 mmHg PO2下培养的细胞之间,饱和密度、葡萄糖消耗率或乳酸产生率没有显著差异。与44 mmHg PO2相比,134 mmHg PO2下的群体倍增时间略有延长。在291±25 mmHg PO2下培养的细胞生长速率仅为在134 mmHg PO2下培养细胞的20 - 30%,饱和密度为10 - 20%。尽管生长受到抑制,但在291 mmHg PO2下培养的细胞每细胞消耗的葡萄糖量是在134 mmHg PO2下培养细胞的四到六倍,产生的乳酸量也是四到六倍。在560±38 mmHg PO2下培养的细胞能够附着但不增殖。氧对细胞增殖的这种毒性作用是可逆的,且不是由于氧对培养基的影响。

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