Creatine Metabolism after X-irradiation of Rats
GEORG B. GERBER, Gisela Gerber, Kurt I. Altman, Louis H. Hempelmann
Abstract
GEORG B. GERBER, Gisela Gerber, Kurt I. Altman, Louis H. Hempelmann
Abstract
Summary1. Creatine-2-14C was injected into rats at different times after x- or sham-irradiation.2. Muscle creatine and phosphocreatine, as well as creatine from blood, kidney and urine, were isolated and their respective specific activities determined. Urinary creatinine was also isolated and its 14C-activity determined.3. Coincident with the maximal excretion of creatine, the specific activities of muscle creatine and phosphocreatine decreased after x-irradiation.4. Immediately after injecting the x-irradiated rats with creatine-2-14C, the specific activity of urinary creatine increased, whereas that of creatinine decreased, but at a somewhat later time.5. It is postulated that defective utilization of creatine by muscle constitutes the cause of radiation-induced creatinuria.
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Summary1. Creatine-2-14C was injected into rats at different times after x- or sham-irradiation.2. Muscle creatine and phosphocreatine, as well as creatine from blood, kidney and urine, were isolated and their respective specific activities determined. Urinary creatinine was also isolated and its 14C-activity determined.3. Coincident with the maximal excretion of creatine, the specific activities of muscle creatine and phosphocreatine decreased after x-irradiation.4. Immediately after injecting the x-irradiated rats with creatine-2-14C, the specific activity of urinary creatine increased, whereas that of creatinine decreased, but at a somewhat later time.5. It is postulated that defective utilization of creatine by muscle constitutes the cause of radiation-induced creatinuria.
Key concepts: Phosphocreatine, Creatine, Creatinine, Internal medicine, Endocrinology, Urine, Excretion, Urinary system