EXTRACORPOREAL IRRADIATION OF BLOOD AND LYMPH IN ANIMALS: ITS EFFECT ON HOMOGRAFTS AND ON LYMPHOMA.
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Biomedical subjects
Publications and source records attributed to E P CRONKITE.
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The development of hypothalamic lesions due to goldthioglucose are described. The initial extensive necrotic lesion occurs in close to 100 per cent of animals injected with LD(50). Within 2 weeks the necrotic material has been removed and a narrow scar results. After a lapse of several months, the scar is often difficult to visualize, especially in animals that have not developed obesity. The ventromedial nucleus is not the center of the lesion. The nucleus is preserved in some instances, and partially or completely destroyed in others, depending on the extent of the lesion. The more prominent scar in the obese animals correlates with the larger initial lesion necessary for the complete bilateral destruction of the ventromedial nucleus which is known to be a prerequisite for the development of hypothalamic obesity. Thus, contrary to earlier suggestions, goldthioglucose does not localize specifically in the cells of the ventromedial nucleus.
The accumulation of gold in the hypothalamus and the development of hyperphagia and obesity were studied in mice given a single intravenous injection of goldthioglucose at various levels of blood glucose concentration. It was found that the glucose concentration prevailing at the time of goldthioglucose injection was correlated directly with the level of free and bound goldthioglucose in the blood 3 minutes later, with the hypothalamic uptake of gold, with the extent of the hypothalamic lesion, and with the severity of the subsequent hyperphagia and obesity. Hyperglycemia was associated with an increased gold deposition throughout the brain. A gold content of 88 +/- 12 microg/mg wet tissue in the hypothalamus of fasted animals was associated with clearcut lesions in all animals studied, whereas a similar gold content in the control brain lobes of hyperglycemic animals was not associated with lesions in any animal. This finding indicates that some regions in the brain (e.g. the ventral hypothalamus) are more susceptible than others to damage by goldthioglucose.
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A recently established method of in vivo radioiron investigation in humans, employing a steel-room whole-body counter, has been applied to the study of Fe(59) absorption and loss in seven menstruating women, six with menorrhagia and hypochromic anemia. All six were found by this method to be iron-deficient, having radioiron absorptions of 53.7-97.5% (normal 5.7-24.7%). With almost 100% radioiron incorporation into the red-cell mass, subsequent drops in Fe(59) activity, when correlated with monthly menses, revealed estimated menstrual blood losses of 110-550 c.c. The single normal patient absorbed 19.6% of the tracer, with only 33-59 c.c. menstrual blood loss. Additional applications of the technique in assessing episodic (e.g., epistaxis) and continuous (e.g., gastrointestinal) blood loss are also described. The method would appear eminently applicable to the study of any hypochromic anemia of hemorrhagic origin.