Löffler M, Schneider F
J Cancer Res Clin Oncol. 1979 Oct;95(2):115-22. doi: 10.1007/BF00401005.
Anaerobic culture conditions (95% argon/5% CO2) caused a slightly greater increase in total lipids of Ehrlich ascites tumor cells than a gas phase of 20% O2, 75% N2, 5% CO2. Whereas the rate of [U-14C]acetate incorporation into total lipids and lipid-subclasses rose markedly in the absence of oxygen, a drastic decrease of [U-14C]pyruvate and [1-14C]octanoate incorporation as well as a 30% reduction of 3H incorporation into lipids from tritiated water were observed under these conditions. Since profound changes in the metabolic state of cells cause alterations in the specific activity of the acetyl-CoA pool but do not alter the specific activity of intracellular water, this precursor is considered to be an adequate monitor for lipogenesis under aerobic and anaerobic culture conditions. Therefore, it is concluded that Ehrlich ascites tumor cells are not able to reoxidize NADH/NADPH in the absence of oxygen by a stimulation of biosynthesis of fatty acids as is discussed to be the case in normal cells. The slight increase in total lipids of anaerobically cultured cells seems to be the result of an imbalance between normal uptake and impaired utilization of lipids from serum-supplemented culture medium.
与20%氧气、75%氮气、5%二氧化碳的气相环境相比,厌氧培养条件(95%氩气/5%二氧化碳)使艾氏腹水瘤细胞的总脂质增加略多。虽然在无氧条件下,[U-14C]乙酸掺入总脂质和脂质亚类的速率显著上升,但在这些条件下,观察到[U-14C]丙酮酸和[1-14C]辛酸掺入量急剧下降,以及从氚化水中掺入脂质的3H量减少了30%。由于细胞代谢状态的深刻变化会导致乙酰辅酶A池的比活性改变,但不会改变细胞内水的比活性,因此该前体被认为是有氧和厌氧培养条件下脂肪生成的合适监测指标。因此,可以得出结论,艾氏腹水瘤细胞在无氧条件下无法通过刺激脂肪酸生物合成来重新氧化NADH/NADPH,而正常细胞被认为是这样的。厌氧培养细胞总脂质的轻微增加似乎是补充血清的培养基中脂质正常摄取与利用受损之间失衡的结果。