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Merck

Disrupting proton dynamics and energy metabolism for cancer therapy.

Nature reviews. Cancer (2013-08-24)
Scott K Parks, Johanna Chiche, Jacques Pouysségur
摘要

Intense interest in the 'Warburg effect' has been revived by the discovery that hypoxia-inducible factor 1 (HIF1) reprogrammes pyruvate oxidation to lactic acid conversion; lactic acid is the end product of fermentative glycolysis. The most aggressive and invasive cancers, which are often hypoxic, rely on exacerbated glycolysis to meet the increased demand for ATP and biosynthetic precursors and also rely on robust pH-regulating systems to combat the excessive generation of lactic and carbonic acids. In this Review, we present the key pH-regulating systems and synthesize recent advances in strategies that combine the disruption of pH control with bioenergetic mechanisms. We discuss the possibility of exploiting, in rapidly growing tumours, acute cell death by 'metabolic catastrophe'.

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碳酸酐酶 来源于牛红细胞, lyophilized powder, ≥2,000 W-A units/mg protein
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碳酸酐酶同工酶 II 来源于牛红细胞, lyophilized powder, ≥3,000 W-A units/mg protein
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碳酸酐酶 来源于牛红细胞, For use as a marker in SDS-PAGE
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碳酸酐酶I 来源于人类红细胞
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Carbonic Anhydrase Isozyme II 人, ≥80%, powder, ≥3,000 W-A units/mg protein
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碳酸酐酶 来源于牛红细胞, non-denaturing PAGE marker
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碳酸酐酶I 来源于人类红细胞, Isoelectric focusing marker, pI 6.6
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碳酸酐酶同工酶 II 来源于牛红细胞, Isoelectric focusing marker, pI 5.4
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碳酸酐酶同工酶 II 来源于牛红细胞, lyophilized powder, ≥2,000 W-A units/mg protein