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Titlebook: Cancer - Between Glycolysis and Physical Constraint; Laurent Schwartz Book 2004 Springer-Verlag Berlin Heidelberg 2004 aging.carcinogenesi

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https://doi.org/10.1007/978-1-4684-7665-1acellular phenomena. It was believed that normal cells given optimum environmental conditions had an unlimited capacity to replicate and function. Progress in the area of cell culture called into question, for a while, the essential role of these extracellular alterations. In fact, aging is directly
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Deep Inelastic Lepton Scattering,ion of the number of calories extends longevity. In rodents and primates, caloric restriction decreases the levels of plasma glucose, attenuates inflammation, and postpones both senescence and cancer without irreversible side effects.
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https://doi.org/10.1007/978-1-4613-4208-3ot divide. Glucose is degraded into water and gas. Lesser-differentiated cells like bone marrow stem cells use both aerobic and anaerobic glycolysis. The switch from respiration to anaerobic glycolysis appears responsible for both cell proliferation and loss of cell differentiation.
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Gauge Theory for Strong Interactionsancer growth by depleting the ATP pool and increasing cellular constraints. After successful hormonal treatment for breast cancer, BCG for superficial bladder carcinoma, or after chemotherapy the tumor is replaced by fibrosis. These increased extracellular constraints appear sufficient to explain tu
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Quarks and Strings on a Lattice of the past 50 years suggest an inhibitory effect of the glucose antagonist, 2-deoxy-d-Glucose. This molecule has been given orally, at the same dose to mice, in order to mimic caloric restriction without major side effect. As of today, no human clinical trials questioning the validity of inhibitio
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https://doi.org/10.1007/978-3-642-18543-4aging; carcinogenesis; cell; metastasis; prostate cancer
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Springer-Verlag Berlin Heidelberg 2004
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