Matsui Y, Kitade H, Kamiya T, Kanemaki T, Hiramatsu Y, Okumura T, Kamiyama Y
First Department of Surgery, Kansai Medical University, Osaka, Japan.
In Vitro Cell Dev Biol Anim. 1994 Sep;30A(9):609-14. doi: 10.1007/BF02631260.
A simple and rapid method for the assay of adenine nucleotides (ATP, ADP, and AMP) was established to evaluate the adenylate energy charge (ATP+ADP/2)/(ATP+ADP+AMP) of cultured hepatocytes. The effects of inhibitors of glycolysis, fatty acid oxidation, or oxidative phosphorylation on the energy charge were examined. The energy charges of cultured hepatocytes in rats and human were almost identical and were maintained at a high level between 6 and 24 h after changing the media (rat: 0.908 +/- 0.008 n = 9, human: 0.918 +/- 0.014 n = 6, mean +/- SD). Inhibition of glycolysis with sodium fluoride or oxidative phosphorylation with antimycin A irreversibly reduced both the adenine nucleotide contents and the energy charge. However, the inhibition of fatty acid oxidation with 2-tetradecylglycidic acid did not affect the nucleotide contents, and the energy charge only decreased transiently to recover within 8 h. When the inhibitor of oxidative phosphorylation was removed, the recovery in the energy charge preceded the recovery in the adenine nucleotide contents. These findings suggest that the adenylate energy charge is a more sensitive measure of the changes in energy metabolism than the adenine nucleotide contents. Furthermore, energy charge regulates adenine nucleotide contents in cultured hepatocytes. It is important to confirm that the high energy charge of the cultured hepatocytes is maintained when these cells are used for metabolic studies.
建立了一种简单快速的腺嘌呤核苷酸(ATP、ADP和AMP)检测方法,以评估培养肝细胞的腺苷酸能量荷(ATP+ADP/2)/(ATP+ADP+AMP)。研究了糖酵解、脂肪酸氧化或氧化磷酸化抑制剂对能量荷的影响。大鼠和人培养肝细胞的能量荷几乎相同,在更换培养基后6至24小时内维持在较高水平(大鼠:0.908±0.008,n=9;人:0.918±0.014,n=6,平均值±标准差)。用氟化钠抑制糖酵解或用抗霉素A抑制氧化磷酸化会不可逆地降低腺嘌呤核苷酸含量和能量荷。然而,用2-十四烷基缩水甘油酸抑制脂肪酸氧化并不影响核苷酸含量,能量荷仅短暂下降并在8小时内恢复。当去除氧化磷酸化抑制剂时,能量荷的恢复先于腺嘌呤核苷酸含量的恢复。这些发现表明,腺苷酸能量荷比腺嘌呤核苷酸含量更能敏感地反映能量代谢的变化。此外,能量荷调节培养肝细胞中的腺嘌呤核苷酸含量。当这些细胞用于代谢研究时,确认培养肝细胞的高能量荷得以维持非常重要。