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异环磷酰胺代谢物氯乙醛在不降低人乳腺癌细胞 MCF-7 细胞内 ATP 含量的情况下抑制细胞增殖和葡萄糖代谢。

Ifosfamide metabolite chloroacetaldehyde inhibits cell proliferation and glucose metabolism without decreasing cellular ATP content in human breast cancer cells MCF-7.

机构信息

Université Lyon1, Faculté de médecine Laennec, 7-11 rue G. Paradin, 69372 Lyon cedex 08, France.

出版信息

J Appl Toxicol. 2010 Apr;30(3):204-11. doi: 10.1002/jat.1485.


DOI:10.1002/jat.1485
PMID:19774546
Abstract

Chloroacetaldehyde (CAA), a product of hepatic metabolism of the widely used anticancer drug ifosfamide (IFO), has been reported to decrease cancer cell proliferation. The basis of this effect is not completely known but has been attributed to a drop of cellular ATP content. Given the importance of glucose metabolism and of the 'Warburg effect' in cancer cells, we examined in the present study the ability of CAA to inhibit cancer cell proliferation by altering the glycolytic pathway. Cell proliferation, ATP content, glucose transport and metabolism as well as the activities of the main enzymes of glycolysis were determined in human breast cancer cells MCF-7 in the presence of various CAA concentrations (5-50 microm). Our results show that low CAA concentrations inhibited cell proliferation in a concentration-dependent manner. This inhibition was explained by a decrease in glucose utilization. Cellular ATP content was not reduced but even increased with 25 microm CAA. The inhibition of glucose metabolism was mainly explained by the decrease in glucose transport and hexokinase activity. The activity of glyceraldehyde-3-phosphate dehydrogenase, but not that of phosphofructokinase, was also inhibited. Glycolysis inhibition by CAA was effective in decreasing the proliferation of MCF-7 cells. Interestingly, this decrease was not due to ATP depletion; rather, it was linked to a drop of biosynthetic precursors from glycolytic intermediates. This CAA-induced inhibition of cell proliferation suggests that it might play a role in the antitumor activity of IFO.

摘要

氯乙醛(CAA)是广泛使用的抗癌药物异环磷酰胺(IFO)肝代谢的产物,已被报道可降低癌细胞增殖。这种作用的基础尚不完全清楚,但归因于细胞 ATP 含量下降。鉴于葡萄糖代谢和癌细胞中的“Warburg 效应”的重要性,我们在本研究中检查了 CAA 通过改变糖酵解途径抑制癌细胞增殖的能力。在各种 CAA 浓度(5-50μm)存在下,测定人乳腺癌细胞 MCF-7 中的细胞增殖、ATP 含量、葡萄糖转运和代谢以及糖酵解的主要酶的活性。我们的结果表明,低浓度的 CAA 以浓度依赖性方式抑制细胞增殖。这种抑制作用可以通过葡萄糖利用减少来解释。细胞 ATP 含量没有减少,甚至在 25μm CAA 存在下增加。葡萄糖代谢的抑制主要归因于葡萄糖转运和己糖激酶活性的降低。甘油醛-3-磷酸脱氢酶的活性,但不是磷酸果糖激酶的活性,也受到抑制。CAA 对糖酵解的抑制有效降低了 MCF-7 细胞的增殖。有趣的是,这种减少不是由于 ATP 耗竭引起的;相反,它与糖酵解中间产物的生物合成前体减少有关。CAA 诱导的细胞增殖抑制表明它可能在 IFO 的抗肿瘤活性中发挥作用。

相似文献

[1]
Ifosfamide metabolite chloroacetaldehyde inhibits cell proliferation and glucose metabolism without decreasing cellular ATP content in human breast cancer cells MCF-7.

J Appl Toxicol. 2010-4

[2]
Ifosfamide cytotoxicity on human tumor and renal cells: role of chloroacetaldehyde in comparison to 4-hydroxyifosfamide.

Cancer Res. 1997-7-1

[3]
Chloroacetaldehyde: mode of antitumor action of the ifosfamide metabolite.

Cancer Chemother Pharmacol. 2006-2

[4]
Metabolism of ifosfamide to chloroacetaldehyde contributes to antitumor activity in vivo.

Drug Metab Dispos. 2000-5

[5]
Glucose-dependent active ATP depletion by koningic acid kills high-glycolytic cells.

Biochem Biophys Res Commun. 2008-1-11

[6]
Chloroacetaldehyde as a sulfhydryl reagent: the role of critical thiol groups in ifosfamide nephropathy.

Kidney Blood Press Res. 2006

[7]
Targets of chloroacetaldehyde-induced nephrotoxicity.

Toxicol In Vitro. 2009-9-3

[8]
Necrotic pathway in human osteosarcoma Saos-2 cell death induced by chloroacetaldehyde.

Anticancer Drugs. 2007-6

[9]
Mechanisms of the ifosfamide-induced inhibition of endocytosis in the rat proximal kidney tubule.

Arch Toxicol. 2008-9

[10]
Combination of imatinib and clotrimazole enhances cell growth inhibition in T47D breast cancer cells.

Chem Biol Interact. 2015-4-8

引用本文的文献

[1]
Dissecting Drug-Induced Cytotoxicity and Metabolic Dysfunction in Conditionally Immortalized Human Proximal Tubule Cells.

Front Toxicol. 2022-2-28

[2]
Ifosfamide nephrotoxicity in adult patients.

Clin Kidney J. 2019-12-31

[3]
Pyruvate Treatment Restores the Effectiveness of Chemotherapeutic Agents in Human Colon Adenocarcinoma and Pleural Mesothelioma Cells.

Int J Mol Sci. 2018-11-10

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