Simone Cardaci, Maria Rosa Ciriolo
Index: Autophagy 8(12) , 1830-2, (2012)
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Killing properties of antitumor drugs can be enhanced by strategies targeting biochemical adaptations of cancer cells. Recently, we reported that depriving cancer cells of glutamine is a feasible approach to enhance antitumor effects of the alkylating analog of pyruvic acid, 3-bromopyruvate, which rely on the induction of autophagic cell death by metabolic-oxidative stress. 3-bromopyruvate chemopotentiation is the result of its increased intracellular uptake mediated by the monocarboxylate transporter 1, whose expression is post-transcriptionally increased upon glutamine withdrawal. Overall, our results identified the metabolic condition able to increase the selectivity of 3-bromopyruvate targets in neoplastic tissues, thereby providing a stage for its use in clinical settings for targeting malignancies and represent a proof of principle that modulation of glutamine availability can influence the delivery of monocarboxylic drugs into tumors.
Structure | Name/CAS No. | Molecular Formula | Articles |
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3-Bromopyruvic acid
CAS:1113-59-3 |
C3H3BrO3 |
3-Bromopyruvate: A novel antifungal agent against the human ...
2013-05-03 [Biochem. Biophys. Res. Commun. 434(2) , 322-7, (2013)] |
Inhibition of glucose turnover by 3-bromopyruvate counteract...
2014-07-15 [Oncotarget 5(13) , 5177-89, (2014)] |
Insights into the carboxyltransferase reaction of pyruvate c...
2013-11-01 [Biochem. Biophys. Res. Commun. 441(2) , 377-82, (2013)] |
Regulation of the proliferation of colon cancer cells by com...
2013-02-01 [Anticancer Res. 33(2) , 401-7, (2013)] |
3-Bromopyruvate (3BP) a fast acting, promising, powerful, sp...
2012-02-01 [J. Bioenerg. Biomembr. 44(1) , 1-6, (2012)] |
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