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A Niki

Publications and source records attributed to A Niki.

27 records · Page 2Linked to original sources

Uptake of radioactive D-glucose anomers by pancreatic islets.

Isolated rat islets were incubated in media containing either the alpha or beta anomer of D-[1-3H]glucose for 5 min at 37 degrees. The amounts of the two anomers incorporated were determined using L-[1-14C]glucose as an extracellular space marker. The incorporation of beta-D-glucose was about twice that of alpha-D-glucose. Our previous and present results suggest that the two anomers of D-glucose each have a preferential function in pancreatic beta cells; alpha-D-glucose stimulates insulin secretion, and beta-D-glucose is transported into the cells.

Animals↗

Insulin secretion by anomers of d-glucose.

Isolated rat islets were incubated for 5 minutes in the media containing either the alpha or beta anomer of D-glucose (2 milligrams per milliliter). The amounts of secreted insulin and changes of anomers ratio were concomitantly determined. In spite of rapid mutarotation, significantly greater stimulation of insulin secretion was observed by alpha-D-glucose as compared with beta-D-glucose.

Animals↗

[Proinsulin].

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Amino Acid Sequence↗

Pharmacological studies on the hypoglycemic effect of 7,8-dihydro-2-(4-methylpiperazinyl)-4-(1-pyrrolidinyl)-6H-thi opyrano [3,2-d] pyrimidine dimaleate (MTP-1307), a novel hypoglycemic agent.

MTP-1307, 7,8-dihydro-2-(4-methylpiperazinyl)-4-(1-pyrrolidinyl)-6H- thiopyrano[3,2-d]pyrimidine dimaleate, is a novel oral hypoglycemic agent, structurally different from any existing hypoglycemic drugs. In fasted rats, the hypoglycemic effect of MTP-1307 was accompanied by elevation of the plasma insulin. In glucose tolerance tests, MTP-1307 suppressed the hyperglycemia after glucose loading and significantly enhanced the glucose-induced insulin secretion. In isolated hepatocytes from fasted rats, MTP-1307 inhibited gluconeogenesis from lactate and alanine. Furthermore, MTP-1307 increased the lactate/pyruvate ratio but did not increase the lactate level. MTP-1307 did not influence glycogenolysis in isolated hepatocytes from fed rats. In genetically diabetic ob/ob mice, MTP-1307 decreased the blood glucose level and improved glucose tolerance, but did not affect the level of plasma insulin. MTP-1307 increased 14CO2 production from glucose in isolated epididymal fat pads of ob/ob mice. Thus, these findings suggest that MTP-1307 produces hypoglycemic activities not only in normal animals but also in genetically diabetic animals, and that the hypoglycemic mechanism of MTP-1307 involves the promotion of glucose utilization in adipose tissue and, partially, the inhibition of gluconeogenesis in the liver and the stimulation of insulin release from the pancreas.

Adipose Tissue↗