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larger decrease » marked decrease (Expand Search)
largest decrease » largest decreases (Expand Search), marked decrease (Expand Search)
larger decrease » marked decrease (Expand Search)
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Table_2_Shortage of Cellular ATP as a Cause of Diseases and Strategies to Enhance ATP.XLSX
Published 2019“…Some disorders of those organs may reflect dysfunction in energy-consumption/production, and the observed beneficial effects related to reinforcement of ATP re-synthesis due to increased hypoxanthine levels in the blood and tissues. …”
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Table_4_Shortage of Cellular ATP as a Cause of Diseases and Strategies to Enhance ATP.XLSX
Published 2019“…Some disorders of those organs may reflect dysfunction in energy-consumption/production, and the observed beneficial effects related to reinforcement of ATP re-synthesis due to increased hypoxanthine levels in the blood and tissues. …”
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Table_1_Shortage of Cellular ATP as a Cause of Diseases and Strategies to Enhance ATP.XLSX
Published 2019“…Some disorders of those organs may reflect dysfunction in energy-consumption/production, and the observed beneficial effects related to reinforcement of ATP re-synthesis due to increased hypoxanthine levels in the blood and tissues. …”
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Table_3_Shortage of Cellular ATP as a Cause of Diseases and Strategies to Enhance ATP.XLSX
Published 2019“…Some disorders of those organs may reflect dysfunction in energy-consumption/production, and the observed beneficial effects related to reinforcement of ATP re-synthesis due to increased hypoxanthine levels in the blood and tissues. …”
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Bypass induces oxidative damage and activates caspase-3 in stored red blood cells.
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Inhibiting caspase-3 in stored red blood cells blocks damage induced by bypass.
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Bypass shortens the lifespan of stored red blood cells in a rat model of cardiopulmonary bypass.
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