In vivo pH in metabolic-defective Ras-transformed fibroblast tumors: Key role of the monocarboxylate transporter, MCT4, for inducing an alkaline intracellular pH

被引:93
作者
Chiche, Johanna [1 ]
Le Fur, Yann
Vilmen, Christophe
Frassineti, Frederic [2 ]
Daniel, Laurent [2 ]
Halestrap, Andrew P. [3 ]
Cozzone, Patrick J.
Pouyssegur, Jacques [1 ]
Lutz, Norbert W.
机构
[1] Univ Nice, Inst Dev Biol & Canc, CNRS, Ctr Antoine Lacassagne,UMR 6543, F-06108 Nice 2, France
[2] Univ Mediterranee, INSERM, UMR U911, F-13005 Marseille, France
[3] Univ Bristol, Sch Biochem, Bristol, Avon, England
关键词
tumor pH; cancer therapy; metabolism; proton transport; ENERGY-METABOLISM; HYPOXIA; CANCER; GROWTH; INHIBITORS; OVEREXPRESSION; HIF-1-ALPHA; GLYCOLYSIS; MECHANISMS; CATALASE;
D O I
10.1002/ijc.26125
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
We present an investigation of tumor pH regulation, designed to support a new anticancer therapy concept that we had previously proposed. Our study uses a tumor model of ras-transformed hamster fibroblasts, CCL39, xenografted in the thighs of nude mice. We demonstrate, for the first time, that genetic modifications of specific mechanisms of proton production and/or proton transport result in distinct, reproducible changes in intracellular and extracellular tumor pH that can be detected and quantified noninvasively in vivo, simultaneously with determinations of tumor energetic status and necrosis in the same experiment. The CCL39 variants used were deficient in the sodium/proton exchanger, NHE-1, and/or in the monocarboxylate transporter, MCT4; further, variants were deficient in glycolysis or respiration. MCT4 expression markedly increased the gradient between intracellular and extracellular pH from 0.14 to 0.43 when compared to CCL39 wild-type tumors not expressing MCT4. The other genetic modifications studied produced smaller but significant increases in intracellular and decreases in extracellular pH. In general, increased pH gradients were paralleled by increased tumor growth performance and diminished necrotic regions, and 50% of the CCL39 variant expressing neither MCT4 nor NHE-1, but possessing full genetic capacity for glycolysis and oxidative phosphorylation, underwent regression before reaching a 1-cm diameter. Except for CCL39 wild-type tumors, no significant HIF-1a expression was detected. Our in vivo results support a multipronged approach to tumor treatment based on minimizing intracellular pH by targeting several proton production and proton transport processes, among which the very efficient MCT4 proton/lactate co-transport deserves particular attention.
引用
收藏
页码:1511 / 1520
页数:10
相关论文
共 51 条
[1]   Effects of HIF-1 alpha and HIF2 alpha on Growth andMetabolism of Clear-Cell Renal Cell Carcinoma 786-0 Xenografts [J].
Biswas, Swethajit ;
Troy, Helen ;
Leek, Russell ;
Chung, Yuen-Li ;
Li, Ji-liang ;
Raval, Raju R. ;
Turley, Helen ;
Gatter, Kevin ;
Pezzella, Francesco ;
Griffiths, John R. ;
Stubbs, Marion ;
Harris, Adrian L. .
JOURNAL OF ONCOLOGY, 2010, 2010
[2]  
BOYER MJ, 1992, CANCER RES, V52, P4441
[3]   Hypoxia signalling controls metabolic demand [J].
Brahimi-Horn, M. Christiane ;
Chiche, Johanna ;
Pouyssegur, Jacques .
CURRENT OPINION IN CELL BIOLOGY, 2007, 19 (02) :223-229
[4]  
Brahimi-Horn MC, 2010, CURR OPIN GENE DEV, V21, P1
[5]   Membrane-bound carbonic anhydrases are key pH regulators controlling tumor growth and cell migration [J].
Chiche, Johanna ;
Ilc, Karine ;
Brahimi-Horn, M. Christiane ;
Pouyssegur, Jacques .
ADVANCES IN ENZYME REGULATION, VOL 50, 2010, 50 :20-33
[6]   Tumour hypoxia induces a metabolic shift causing acidosis: a common feature in cancer [J].
Chiche, Johanna ;
Brahimi-Horn, M. Christiane ;
Pouyssegur, Jacques .
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2010, 14 (04) :771-794
[7]   A Dialogue between the Hypoxia-Inducible Factor and the Tumor Microenvironment [J].
Dayan, Frederic ;
Mazure, Nathalie M. ;
Brahimi-Horn, M. Christiane ;
Pouyssegur, Jacques .
CANCER MICROENVIRONMENT, 2008, 1 (01) :53-68
[8]   pH-dependent antitumor activity of proton pump inhibitors against human melanoma is mediated by inhibition of tumor acidity [J].
De Milito, Angelo ;
Canese, Rossella ;
Marino, Maria Lucia ;
Borghi, Martina ;
Iero, Manuela ;
Villa, Antonello ;
Venturi, Giulietta ;
Lozupone, Francesco ;
Iessi, Elisabetta ;
Logozzi, Mariantonia ;
Della Mina, Pamela ;
Santinami, Mario ;
Rodolfo, Monica ;
Podo, Franca ;
Rivoltini, Licia ;
Fais, Stefano .
INTERNATIONAL JOURNAL OF CANCER, 2010, 127 (01) :207-219
[9]   The biology of cancer: Metabolic reprogramming fuels cell growth and proliferation [J].
DeBerardinis, Ralph J. ;
Lum, Julian J. ;
Hatzivassiliou, Georgia ;
Thompson, Craig B. .
CELL METABOLISM, 2008, 7 (01) :11-20
[10]   Ion homeostasis, channels, and transporters: an update on cellular mechanisms [J].
Dubyak, GR .
ADVANCES IN PHYSIOLOGY EDUCATION, 2004, 28 (04) :143-154