Metabolic reprogramming in diabetes and other endocrine and metabolic disorders: exploring the Warburg effect, ketones, and SGLT2 inhibitors

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Abstract

The “Warburg effect”, a metabolic adaptation observed in dividing cells, involves a shift from mitochondrial oxidative phosphorylation to cytoplasmic glucose metabolism. This metabolic process is characterized by increased cellular uptake of glucose and glutamine, elevated intracellular pH and sodium levels, enhanced protection against oxidative stress, altered autophagy, and increased lactate production. Initially identified by Otto Warburg in cancer cells, the Warburg effect is now recognized as a common feature of all dividing cells, prioritizing biomass production for cell proliferation over energy generation for specialized cellular functions. Through a comprehensive analysis of existing literature, we aim to shed light on the mechanisms underlying these interventions and their potential impact on disease progression and patient outcomes.

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Carrera-Bastos, P., Muskiet, M. H. A., Mata-Ordoñez, F., Pruimboom, L., Lucia, A., Luque, R. M., & Muskiet, F. A. J. (2026). Metabolic reprogramming in diabetes and other endocrine and metabolic disorders: Exploring the Warburg effect, ketones, and SGLT2 inhibitors. Reviews in Endocrine and Metabolic Disorders, 27(1), 69-90. https://doi.org/10.1007/s11154-025-09996-z

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