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利多卡因抑制人白血病单核细胞样U937细胞中的胆碱摄取及磷脂酰胆碱生物合成。

Lidocaine inhibits choline uptake and phosphatidylcholine biosynthesis in human leukemic monocyte-like U937 cells.

作者信息

Chu A J, Lee J M

机构信息

Miami Heart Institute, Miami Beach, FL 33140-2999.

出版信息

Cell Biochem Funct. 1994 Jun;12(2):89-98. doi: 10.1002/cbf.290120203.

Abstract

The effect of lidocaine on [3H]choline uptake and the incorporation of label into phosphatidylcholine (PC) in human monocyte-like U937 cells was investigated. Lidocaine inhibited the rate of choline uptake in a dose-dependent manner; at 3.2 mM it resulted in a drastic reduction, by as much as 65 per cent (n = 10; p < 0.0005) or 55 per cent (n = 10; p < 0.0006) in a 3- or 6-h incubation, respectively. Lidocaine also decreased the rate of choline incorporation into PC in a dose-dependent manner. At the highest dose, nearly 70 per cent or 45 per cent reduction was seen in a 3- or 6-h incubation, respectively. Analysis of choline-containing metabolites showed that the major label association with phosphocholine and PC was reduced to a similar extent which was also parallel to the inhibition of choline uptake. At 3.2 mM lidocaine, the reduction of choline uptake was shown to follow a competitive inhibition. In the case of [3H] choline incorporation into PC, the inhibitory pattern was shown to be of a mixed type. The pulse-chase study dissecting the effect on choline metabolism from that on total choline uptake indicated that lidocaine exerted an additionally inhibitory effect on intracellular choline metabolism into PC. In a separate protocol in which the labelled cells were first allowed to be chased until 3H-incorporation into PC reached a steady state, lidocaine no longer showed any effect. These results seem to exclude the possibility of enhanced PC breakdown and further suggest that the main inhibitory effect is on the CDP-choline pathway for PC biosynthesis. After a 3-h treatment, CTP: cholinephosphate cytidylyltransferase (CYT) in both the cytosolic and microsomal fractions was inhibited by approximately 20 per cent, while choline kinase (CK) and choline phosphotransferase (CPT) remain relatively unchanged. There was no evidence for translocation of CYT between cytosol and microsomes. Taken together, we have demonstrated a dual inhibitory function of lidocaine which inhibits PC biosynthesis in addition to its ability to block choline uptake profoundly in U937 cells.

摘要

研究了利多卡因对人单核细胞样U937细胞中[3H]胆碱摄取以及标记物掺入磷脂酰胆碱(PC)的影响。利多卡因以剂量依赖的方式抑制胆碱摄取速率;在3.2 mM时,在3小时或6小时孵育中分别导致急剧降低,高达65%(n = 10;p < 0.0005)或55%(n = 10;p < 0.0006)。利多卡因还以剂量依赖的方式降低胆碱掺入PC的速率。在最高剂量下,在3小时或6小时孵育中分别观察到近70%或45%的降低。对含胆碱代谢物的分析表明,与磷酸胆碱和PC的主要标记物关联降低到相似程度,这也与胆碱摄取的抑制平行。在3.2 mM利多卡因时,胆碱摄取的降低显示为竞争性抑制。在[3H]胆碱掺入PC的情况下,抑制模式显示为混合型。脉冲追踪研究将对胆碱代谢的影响与对总胆碱摄取的影响分开分析,表明利多卡因对细胞内胆碱代谢为PC具有额外的抑制作用。在一个单独的实验方案中,先让标记细胞进行追踪,直到3H掺入PC达到稳态,此时利多卡因不再显示任何作用。这些结果似乎排除了PC分解增强的可能性,并进一步表明主要抑制作用是在PC生物合成的CDP - 胆碱途径上。经过3小时处理后,胞质和微粒体部分的CTP:胆碱磷酸胞苷转移酶(CYT)均被抑制约20%,而胆碱激酶(CK)和胆碱磷酸转移酶(CPT)保持相对不变。没有证据表明CYT在胞质和微粒体之间发生转位。综上所述,我们证明了利多卡因的双重抑制功能,它除了能在U937细胞中深刻阻断胆碱摄取外,还能抑制PC生物合成。

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