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  2. Warburg effect (oncology) - Wikipedia

    en.wikipedia.org/wiki/Warburg_effect_(oncology)

    A model called the "reverse Warburg effect" describes cells releasing energy by glycolysis, but which are not tumor cells, but stromal fibroblasts. [32] In this scenario, the stroma become corrupted by cancer cells and turn into factories for the synthesis of energy rich nutrients.

  3. Warburg hypothesis - Wikipedia

    en.wikipedia.org/wiki/Warburg_hypothesis

    Scientist Otto Warburg, whose research activities led to the formulation of the Warburg hypothesis for explaining the root cause of cancer.. The Warburg hypothesis (/ ˈ v ɑːr b ʊər ɡ /), sometimes known as the Warburg theory of cancer, postulates that the driver of carcinogenesis (cancer formation) is insufficient cellular respiration caused by insult (damage) to mitochondria. [1]

  4. Warburg effect inversion - Wikipedia

    en.wikipedia.org/wiki/Warburg_effect_inversion

    The inversion to the Warburg effect is a corollary to the Warburg hypothesis or Warburg effect that was discovered in obesity. Warburg's hypothesis suggests that tumor cells proliferate quickly and aggressively by obtaining energy or ATP, through high glucose consumption and lactate production. [1]

  5. Oncometabolism - Wikipedia

    en.wikipedia.org/wiki/Oncometabolism

    In the absence of hypoxic conditions (i.e. physiological levels of oxygen), cancer cells preferentially convert glucose to lactate, according to Otto H. Warburg, who believed that aerobic glycolysis was the key metabolic change in cancer cell malignancy. The "Warburg effect" was later coined to describe this metabolic shift. [6]

  6. Carcinogenesis - Wikipedia

    en.wikipedia.org/wiki/Carcinogenesis

    The Warburg effect is the preferential use of glycolysis for energy to sustain cancer growth. p53 has been shown to regulate the shift from the respiratory to the glycolytic pathway. [ 102 ] However, a mutation can damage the tumor suppressor gene itself, or the signal pathway that activates it, "switching it off".

  7. The Hallmarks of Cancer - Wikipedia

    en.wikipedia.org/wiki/The_Hallmarks_of_Cancer

    Most cancer cells use alternative metabolic pathways to generate energy, a fact appreciated since the early twentieth century with the postulation of the Warburg hypothesis, [24] [25] but only now gaining renewed research interest. [26] Cancer cells exhibiting the Warburg effect upregulate glycolysis and lactic acid fermentation in the cytosol ...

  8. Tumor hypoxia - Wikipedia

    en.wikipedia.org/wiki/Tumor_hypoxia

    Tumor stroma and extracellular matrix in hypoxia. Tumor hypoxia is the situation where tumor cells have been deprived of oxygen.As a tumor grows, it rapidly outgrows its blood supply, leaving portions of the tumor with regions where the oxygen concentration is significantly lower than in healthy tissues.

  9. Glycolysis - Wikipedia

    en.wikipedia.org/wiki/Glycolysis

    This phenomenon was first described in 1930 by Otto Warburg and is referred to as the Warburg effect. The Warburg hypothesis claims that cancer is primarily caused by dysfunctionality in mitochondrial metabolism, rather than because of the uncontrolled growth of cells. A number of theories have been advanced to explain the Warburg effect.