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Published in: Cancer Chemotherapy and Pharmacology 2/2004

01-02-2004 | Original Article

Greater cell cycle inhibition and cytotoxicity induced by 2-deoxy-d-glucose in tumor cells treated under hypoxic vs aerobic conditions

Authors: Johnathan C. Maher, Awtar Krishan, Theodore J. Lampidis

Published in: Cancer Chemotherapy and Pharmacology | Issue 2/2004

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Abstract

Purpose

In order to investigate the hypothesis that cells found in hypoxic areas of solid tumors are more sensitive to glycolytic inhibitors than cells growing aerobically, we have previously characterized three distinct in vitro models (A, B and C) that simulate this condition. In all of the models it was shown that cells growing under hypoxic conditions are hypersensitive to the glycolytic inhibitor 2-deoxy-d-glucose (2-DG). However, in those studies cytostatic and cytotoxic effects were not distinguished from one another. Since successful treatment of cancer includes not only slowing down but also actually killing tumor cells, studies were undertaken to assess the effects of 2-DG on cell cycle progression and cell death.

Methods and results

Using flow cytometry and cell viability assays, it was found that 2-DG caused significantly greater cell cycle inhibition and cell death in all three hypoxic models as compared to aerobically growing control cells. In model A (a chemically induced model of hypoxia in which rhodamine-123 is used to block oxidative phosphorylation), 1200 μg/ml of 2-DG was shown to induce more cell cycle arrest in late S/G2 and more cell death than in the aerobic cell counterpart treated with 3600 μg/ml 2-DG. In ρ0 cells which are genetically constructed to be unable to perform oxidative phosphorylation (model B), an even greater window of selectivity (more than tenfold) between hypoxic and aerobic cells was found when considering 2-DG’s effects on cell cycle arrest and cell death. In the environmental model (model C), where cells were grown under reduced amounts of external oxygen (0.1%), hypersensitivity to the effects of 2-DG with respect to cell cycle arrest and cell death were also observed.

Conclusions

Overall, these results indicate that cells growing under anaerobic conditions respond with greater sensitivity to the effects of 2-DG on cell cycle inhibition and cell death than those growing under aerobic conditions. This supports our contention that glycolytic inhibitors added to standard chemotherapeutic protocols should increase treatment efficacy by selectively killing the slow-growing cells, which are found in the hypoxic portions of solid tumors, while sparing most of the normal cells that are also slow-growing but are living under aerobic conditions.
Literature
1.
go back to reference Arbuckle MI, Kane S, Porter LM, Seatter MJ, Gould GW (1996) Structure-function analysis of liver-type (GLUT2) and brain-type (GLUT3) glucose transporters: expression of chimeric transporters in Xenopus oocytes suggests an important role for putative transmembrane helix 7 in determining substrate selectivity. Biochemistry 35:16519CrossRefPubMed Arbuckle MI, Kane S, Porter LM, Seatter MJ, Gould GW (1996) Structure-function analysis of liver-type (GLUT2) and brain-type (GLUT3) glucose transporters: expression of chimeric transporters in Xenopus oocytes suggests an important role for putative transmembrane helix 7 in determining substrate selectivity. Biochemistry 35:16519CrossRefPubMed
2.
go back to reference Bell SE, Quinn DM, Kellett GL, Warr JR (1998) 2-Deoxy-D-glucose preferentially kills multidrug-resistant human KB carcinoma cell lines by apoptosis. Br J Cancer 78:1464PubMed Bell SE, Quinn DM, Kellett GL, Warr JR (1998) 2-Deoxy-D-glucose preferentially kills multidrug-resistant human KB carcinoma cell lines by apoptosis. Br J Cancer 78:1464PubMed
3.
go back to reference Boros LG, Brandes JL, Yusuf FI, Cascante M, Williams RD, Schirmer WJ (1998) Inhibition of the oxidative and nonoxidative pentose phosphate pathways by somatostatin: a possible mechanism of antitumor action. Med Hypotheses 50:501PubMed Boros LG, Brandes JL, Yusuf FI, Cascante M, Williams RD, Schirmer WJ (1998) Inhibition of the oxidative and nonoxidative pentose phosphate pathways by somatostatin: a possible mechanism of antitumor action. Med Hypotheses 50:501PubMed
4.
go back to reference Brown J (1962) Effects of 2-deoxyglucose on carbohydrate metabolism: review of the literature and studies in the rat. Metabolism 11:1098PubMed Brown J (1962) Effects of 2-deoxyglucose on carbohydrate metabolism: review of the literature and studies in the rat. Metabolism 11:1098PubMed
5.
go back to reference Hankinson O (1979) Single-step selection of clones of a mouse hepatoma line deficient in aryl hydrocarbon hydroxylase. Proc Natl Acad Sci U S A 76:373PubMed Hankinson O (1979) Single-step selection of clones of a mouse hepatoma line deficient in aryl hydrocarbon hydroxylase. Proc Natl Acad Sci U S A 76:373PubMed
6.
go back to reference Hu Y, Moraes CT, Savaraj N, Priebe W, Lampidis TJ (2000) ρ0 tumor cells: a model for studying whether mitochondria are targets for rhodamine 123, doxorubicin and other drugs. Biochem Pharmacol 60:1897CrossRefPubMed Hu Y, Moraes CT, Savaraj N, Priebe W, Lampidis TJ (2000) ρ0 tumor cells: a model for studying whether mitochondria are targets for rhodamine 123, doxorubicin and other drugs. Biochem Pharmacol 60:1897CrossRefPubMed
7.
go back to reference Hume DA, Radik JL, Ferber E, Weidemann MJ (1978) Aerobic glycolysis and lymphocyte transformation. Biochem J 174:703PubMed Hume DA, Radik JL, Ferber E, Weidemann MJ (1978) Aerobic glycolysis and lymphocyte transformation. Biochem J 174:703PubMed
8.
go back to reference Gould GW, Holman GD (1993) The glucose transporter family: structure, function and tissue-specific expression. Biochem J 295:329PubMed Gould GW, Holman GD (1993) The glucose transporter family: structure, function and tissue-specific expression. Biochem J 295:329PubMed
9.
go back to reference King MP, Attardi G (1989) Human cells lacking mtDNA: repopulation with exogenous mitochondria by complementation. Science 248:500 King MP, Attardi G (1989) Human cells lacking mtDNA: repopulation with exogenous mitochondria by complementation. Science 248:500
10.
go back to reference Krishan A, Paika K, Frei E (1975) Cytofluorometric studies on the action of podophyllotoxin and epipodophyllotoxins (VM-26, VP-16-213) on the cell cycle traverse of human lymphoblasts. J Cell Biol 66:521PubMed Krishan A, Paika K, Frei E (1975) Cytofluorometric studies on the action of podophyllotoxin and epipodophyllotoxins (VM-26, VP-16-213) on the cell cycle traverse of human lymphoblasts. J Cell Biol 66:521PubMed
11.
go back to reference LaManna JC, Lust D (1997) Nutrient consumption and metabolic perturbations. Neurosurg Clin N Am 8:145–163PubMed LaManna JC, Lust D (1997) Nutrient consumption and metabolic perturbations. Neurosurg Clin N Am 8:145–163PubMed
12.
go back to reference Lampidis TJ, Salet C, Moreno G, Chen LB (1984) Effects of the mitochondrial probe rhodamine 123 and related analogs on the function and viability of pulsating myocardial cells in culture. Agents Actions 14:751PubMed Lampidis TJ, Salet C, Moreno G, Chen LB (1984) Effects of the mitochondrial probe rhodamine 123 and related analogs on the function and viability of pulsating myocardial cells in culture. Agents Actions 14:751PubMed
13.
go back to reference Liu H, Hu YP, Savaraj N, Priebe W, Lampidis TJ (2001) Hypersensitization of tumor cells to glycolytic inhibitors. Biochemistry 40:5542CrossRefPubMed Liu H, Hu YP, Savaraj N, Priebe W, Lampidis TJ (2001) Hypersensitization of tumor cells to glycolytic inhibitors. Biochemistry 40:5542CrossRefPubMed
14.
go back to reference Liu H, Hu YP, Savaraj N, Priebe W, Lampidis TJ (2002) Hypoxia increases tumor cell sensitivity to glycolytic inhibitors a strategy for solid tumor therapy (model C). Biochem Pharmacol 64:1746 Liu H, Hu YP, Savaraj N, Priebe W, Lampidis TJ (2002) Hypoxia increases tumor cell sensitivity to glycolytic inhibitors a strategy for solid tumor therapy (model C). Biochem Pharmacol 64:1746
15.
go back to reference Maxwell PH, Pugh CW, Ratcliffe PJ (1993) Inducible operation of the erythropoietin 3′ enhancer in multiple cell lines: evidence for a widespread oxygen sensing mechanism. Proc Natl Acad Sci U S A 90:2423PubMed Maxwell PH, Pugh CW, Ratcliffe PJ (1993) Inducible operation of the erythropoietin 3′ enhancer in multiple cell lines: evidence for a widespread oxygen sensing mechanism. Proc Natl Acad Sci U S A 90:2423PubMed
16.
go back to reference Maxwell PH, Dachs GU, Gleadle JM, Nicholls LG, Harris AL, Stratford IJ, Hankinson O, Pugh CW, Ratcliffe PJ (1997) Hypoxia-inducible factor-1 modulates gene expression in solid tumors and influences both angiogenesis and tumor growth. Proc Natl Acad Sci U S A 94:8104PubMed Maxwell PH, Dachs GU, Gleadle JM, Nicholls LG, Harris AL, Stratford IJ, Hankinson O, Pugh CW, Ratcliffe PJ (1997) Hypoxia-inducible factor-1 modulates gene expression in solid tumors and influences both angiogenesis and tumor growth. Proc Natl Acad Sci U S A 94:8104PubMed
17.
go back to reference Maxwell PH, Pugh CW, Ratcliffe PJ (2001) Activation of the HIF pathway in cancer. Curr Opin Genet Dev 11:93CrossRef Maxwell PH, Pugh CW, Ratcliffe PJ (2001) Activation of the HIF pathway in cancer. Curr Opin Genet Dev 11:93CrossRef
18.
go back to reference McKeehan WL (1982) Glycolysis, glutaminolysis and cell proliferation. Cell Biol Int Rep 6:635PubMed McKeehan WL (1982) Glycolysis, glutaminolysis and cell proliferation. Cell Biol Int Rep 6:635PubMed
19.
go back to reference Modica-Napolitano JS, Weiss MJ, Chen LB, Aprille JR (1984) Rhodamine 123 inhibits bioenergetic function in isolated rat liver mitochondria. Biochem Biophys Res Commun 118:717PubMed Modica-Napolitano JS, Weiss MJ, Chen LB, Aprille JR (1984) Rhodamine 123 inhibits bioenergetic function in isolated rat liver mitochondria. Biochem Biophys Res Commun 118:717PubMed
20.
go back to reference Reitzer LJ, Wice BM, Kennell D (1980) The pentose cycle: control and essential function in HeLa cell nucleic acid synthesis. J Biol Chem 255:5616PubMed Reitzer LJ, Wice BM, Kennell D (1980) The pentose cycle: control and essential function in HeLa cell nucleic acid synthesis. J Biol Chem 255:5616PubMed
21.
go back to reference Semenza GL (2000) HIF: mediator of physiological and pathophysiological responses to hypoxia. J Appl Physiol 88:1474PubMed Semenza GL (2000) HIF: mediator of physiological and pathophysiological responses to hypoxia. J Appl Physiol 88:1474PubMed
22.
go back to reference Sumbilla CM, Zielke CL, Reed DW, Ozand PT, Zielke RH (1981) Comparison of the oxidation of glutamine, glucose, ketone bodies and fatty acids by human diploid fibroblasts. Biochim Biophys Acta 675:301CrossRefPubMed Sumbilla CM, Zielke CL, Reed DW, Ozand PT, Zielke RH (1981) Comparison of the oxidation of glutamine, glucose, ketone bodies and fatty acids by human diploid fibroblasts. Biochim Biophys Acta 675:301CrossRefPubMed
23.
go back to reference Vaux EC, Metzen E, Yeates KM, Ratcliffe PJ (2001) Regulation of hypoxia-inducible factor is preserved in the absence of a functioning mitochondrial respiratory chain. Blood 98:296CrossRefPubMed Vaux EC, Metzen E, Yeates KM, Ratcliffe PJ (2001) Regulation of hypoxia-inducible factor is preserved in the absence of a functioning mitochondrial respiratory chain. Blood 98:296CrossRefPubMed
24.
go back to reference Wang GL, Jiang B, Rue EA, Semenza GL (1995) Hypoxia-inducible factor 1 is a basic-helix-loop-helix-PAS heterodimer regulated by cellular O2 tension. Proc Natl Acad Sci U S A 92:5510PubMed Wang GL, Jiang B, Rue EA, Semenza GL (1995) Hypoxia-inducible factor 1 is a basic-helix-loop-helix-PAS heterodimer regulated by cellular O2 tension. Proc Natl Acad Sci U S A 92:5510PubMed
25.
go back to reference Wood SM, Gleadle JM, Pugh CW, Hankinson O, Ratcliffe PJ (1996) The role of the aryl hydrocarbon receptor nuclear translocator (ARNT) in hypoxic induction of gene expression. J Biol Chem 271:15117CrossRefPubMed Wood SM, Gleadle JM, Pugh CW, Hankinson O, Ratcliffe PJ (1996) The role of the aryl hydrocarbon receptor nuclear translocator (ARNT) in hypoxic induction of gene expression. J Biol Chem 271:15117CrossRefPubMed
Metadata
Title
Greater cell cycle inhibition and cytotoxicity induced by 2-deoxy-d-glucose in tumor cells treated under hypoxic vs aerobic conditions
Authors
Johnathan C. Maher
Awtar Krishan
Theodore J. Lampidis
Publication date
01-02-2004
Publisher
Springer-Verlag
Published in
Cancer Chemotherapy and Pharmacology / Issue 2/2004
Print ISSN: 0344-5704
Electronic ISSN: 1432-0843
DOI
https://doi.org/10.1007/s00280-003-0724-7

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