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Biomedical subjects

L Muñoz-Barragan

Publications and source records attributed to L Muñoz-Barragan.

4 recordsLinked to original sources

Demonstration of gastric glucagon hypersecretion in insulin-deprived alloxan-diabetic dogs.

The contribution of the gastric fundus to the hyperglucagonemia of poorly controlled diabetes was studied in insulin-deprived alloxan-diabetic dogs by simultaneously measuring plasma glucagon in the venous effluents of the fundus and the pancreas, and the inferior vena cavae plasma. In the basal state, mean glucagon averaged 411 +/- 45 pg./ml. in the gastric vein and 941 +/-161 in the pancreaticoduodenal vein; both values were significantly above the vana caval level of 281 +/-35 (p less than 0.01). Intravenous arginine infusion to 1,180 +/- 432 after 1.5 minutes; this was significantly above the mean vena caval glucagon concentration which reached a peak of only 352 +/- 74 (p less than 0.01 to 0.05). Intragastric instillation of arginine was followed by a doubling of gastric vein glucagon within 10 minutes, and the increases in the gastric vein were significantly greater than in the peripheral plasms at several points. The infusion of insulin at a rate of 0.0015 u./kg./min. rapidly lowered glucagon in the gastric and pancreaticoduodenal veins, abolishing the gradient across the stomach and reducing the transpancreatic gradient. The studies raise the possibility that extrapancreatic glucagon may contribute to the hyperglucagonemia of insulin deficiency.

Animals

Gastric A-cell function in normal dogs.

Glucagon release from the gastric fundus and pancreas were compared in normal dogs by measuring glucagon in plasma from a major gastroepiploic vein, the superior pancreaticoduodenal vein, and the inferior vena cava. In 32 dogs in the basal state, gastric vein glucagon averaged 97 +/- 40 pg/ml, not significantly different from the 93 +/- 41 pg/ml level in the vena cava. Pancreaticoduodenal vein glucagon averaged 250 +/- 32 pg/ml (P less than 0.001). Intravenous arginine infused in four dogs caused a rise in mean gastric vein glucagon to 210 +/- 33 pg/ml within 3 min, and glucagon remained between 53 and 98 pg/ml above the vena caval level thereafter. In the gastric vein, the rise in glucagon was significantly greater than in the vena cava at 3, 5, and 10 min (P less than 0.05), but was far less than in the pancreaticoduodenal vein where glucagon rose to 1,295 +/- 379 pg/ml at 1.5 min. Evidence of modest gastric glucagon release was observed after the intragastric instillation of arginine, but not during insulin or phloridzin-induced hypoglycemia. It was concluded that in normal dogs under the circumstances studied, the gastric fundus is not a major source of circulating glucagon.

Animals

Gastric A-cell function in insulin-deprived depancreatized dogs.

To determine if gastric A-cells are a major source of the glucagonemia of insulin-deprived depancreatized dogs and to examine their secretory behavior, immunoreactive glucagon (IRG) was measured simultaneously in plasma from the inferior vena cava (VC) and from a gastric vein (GV) draining the fundus. Basal GV IRG averaged 205 +/- 35 pg/ml, significantly above the VC level of 71 +/- 30 (P less than 0.001) and rose to 1417 +/- 498 1.5 minutes after the start of an arginine infusion, exceeding VC IRG at all points (P less than 0.01). Measurement of IRG in gastric, jejunal, and ileal veins and vena cava revealed an IRG gradient only across the stomach. Measurement of glucagon-like immunoreactivity (GLI) revealed no gradient across the stomach, jejunum, or ileum, thus excluding cross-reaction with GLI as the cause of the GV hyperglucagonemia. Intragastric arginine elicited a near doubling of GV IRG within 1.5 minutes and this persisted for at least 120 minutes, ranging from 142 to 623 pg/ml above the VC level. Infusion of insulin at a physiologic rate lowered GV IRG from 665 +/- 66 to 151 +/- 49 pg/ml in 20 minutes and abolished the GV-VC gradient within 60 minutes, whereas intravenous and intragastric glucose administration without insulin did not alter GV IRG. It is concluded that: 1) in the insulin-deprived depancreatized dog, the stomach is a major source of IRG; 2) gastric IRG secretion is somehow stimulated by intravenous and intragastric arginine administration; 3) it is not influenced by intravenous or intragastric glucose administration; and 4) its release is suppressed by physiologic levels of insulin.

Animals