[Study on the distribution of radioactive colloidal chromic phosphate after intracardiac and intraperitoneal injection in rats].
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The duckweed Spirodela oligorrhiza was grown in sterile nutrient solutions that contained 1 mm phosphate-(32)P at various specific activities. In solutions with activities higher than 2 muc per mumole per ml, plant growth was inhibited after a time, and the physical appearance of the plants was affected. The critical level of radiation, at which growth was first affected, corresponded to 5 kilorads.Plants were grown for 9 days (5 generations) in a culture solution containing phosphate at 0.5 muc per mumole per ml (radiation load approx 0.5 kilorads) so that all phosphorus-containing materials in the tissue became uniformly labeled. The various radioactive compounds were extracted, chromatographed, identified, and their radioactivity was measured. From this radioactivity plus the specific activity of the supplied phosphate, the amount of each compound was calculated. The data constitute a complete balance-sheet for phosphorus in a plant tissue. The identity of 98% of the phosphorus in the tissue was determined. Inorganic phosphate (32,700 mmumoles/g fr wt) was the predominant phosphorus-containing compound; RNA (5100 mmumoles P/g fr wt) was the main organic phosphate; phosphatidyl choline (1600 mmumoles/g fr wt) was the main phospholipid, and glucose-6-phosphate (500 mmumoles/g fr wt) the main acid-soluble phosphate ester. Amounts of other phosphorus compounds are given.
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Organic extractants play a significant role in the selective removal of radioactive cations from waste streams. Although, literature on the selective removal of man-made radioactive material such as Americium (Am) is widespread, the selective removal of naturally occurring radioactive material such as Ra2+ is only mentioned sporadically. This tutorial review deals with the selective extraction of the highly radiotoxic Ra2+. Special attention is paid to different types of organic extractants used.
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Radioactive colloidal solutions and suspensions are being widely used in the diagnosis and treatment of various diseases. The author considers the behaviour or radioactive disperse preparations in the body and devotes particular attention to the reasons for isotope transition from the colloidal to the ionic state. Questions concerned with producing and investigating radioactive colloidal solutions are discussed. In the light of the physical and chemical properties of the radioisotopes and of the disperse systems themselves, the author considers methods of producing the more important radioactive disperse preparations: colloidal solutions of noble metals; colloidal solutions containing phosphorus-32, yttrium-90 and isotopes of the rare-earth elements; colloidal solutions with with indium-113m, gallium-68, technetium-99m and rhenium-186; suspensions (macroaggregates and microspheres) for the diagnosis of lung diseases; and radioactive colloidal solutions based on quaternary ammonium base compounds.
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OBJECTIVE: The aim was to evaluate regional coronary blood flow, contractile function, and concentration of phosphate compounds with inotropic stimulation in moderately ischaemic canine hearts. METHODS: Dogs were prepared with instrumentation for the determination of regional coronary blood flow (non-radioactive microsphere method), contractile function (sonomicrometry), and haemodynamics. Myocardial phosphate compounds were measured simultaneously by the phosphorus-31 magnetic resonance spectroscopic technique. RESULTS: In the non-ischaemic condition, dobutamine increased regional coronary blood flow and enhanced contractile function with no significant changes in myocardial phosphate compounds. After constricting the left anterior descending coronary artery, dogs were divided into two groups according to their heart beat response to dobutamine, classified as no pronounced tachycardia with dobutamine (group NT), and pronounced tachycardia (group T). In group NT, dobutamine increased regional coronary blood flow and improved regional contractile function with no significant effect on myocardial phosphate compounds. In group T, dobutamine failed to increase regional coronary blood flow or to improve contractile function, but there was a significant increase in the inorganic phosphate to creatinine phosphate ratio. CONCLUSIONS: Dobutamine increased coronary blood flow and augmented contractile function without significant changes in phosphate compounds in the moderately ischaemic heart, when pronounced tachycardia was not induced. The augmentation of contractile function occurred without prominent improvement in energy metabolism.
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