4-Hydroxyisoleucine: experimental evidence of its insulinotropic and antidiabetic properties
- 1 October 1999
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Endocrinology and Metabolism
- Vol. 277 (4) , E617-E623
- https://doi.org/10.1152/ajpendo.1999.277.4.e617
Abstract
We have recently shown in vitro that 4-hydroxyisoleucine (4-OH-Ile), an amino acid extracted from fenugreek seeds, potentiates insulin secretion in a glucose-dependent manner. The present study was designed to investigate whether 4-OH-Ile could exert in vivo insulinotropic and antidiabetic properties. For this purpose, intravenous or oral glucose tolerance tests (IVGTTs and OGTTs, respectively) were performed not only in normal animals but also in a type II diabetes rat model. During IVGTT in normal rats or OGTT in normal dogs, 4-OH-Ile (18 mg/kg) improved glucose tolerance. The lactonic form of 4-OH-Ile was ineffective in normal rats. In non-insulin-dependent diabetic (NIDD) rats, a single intravenous administration of 4-OH-Ile (50 mg/kg) partially restored glucose-induced insulin response without affecting glucose tolerance; a 6-day subchronic administration of 4-OH-Ile (50 mg/kg, daily) reduced basal hyperglycemia, decreased basal insulinemia, and slightly, but significantly, improved glucose tolerance. In vitro, 4-OH-Ile (200 μM) potentiated glucose (16.7 mM)-induced insulin release from NIDD rat-isolated islets. So, the antidiabetic effects of 4-OH-Ile on NIDD rats result, at least in part, from a direct pancreatic B cell stimulation.Keywords
This publication has 15 references indexed in Scilit:
- Experimental NIDDM: Development of a New Model in Adult Rats Administered Streptozotocin and NicotinamideDiabetes, 1998
- Glucagon-Like PeptidesDiabetes, 1998
- β-Cell Dysfunction Induced by Chronic Hyperglycemia: Current Ideas on Mechanism of Impaired Glucose-Induced Insulin SecretionDiabetes Care, 1992
- Symptomatic Hypoglycemia in NIDDM Patients Treated With Oral Hypoglycemic AgentsDiabetes Care, 1989
- Islet dysfunction in non-insulin-dependent diabetes mellitusThe American Journal of Medicine, 1988
- The Triumvirate: β-Cell, Muscle, Liver: A Collusion Responsible for NIDDMDiabetes, 1988
- Decreased Sensitivity of the Pancreatic Beta Cells to Glucose in Prediabetic and Diabetic Subjects: A Glucose Dose-Response StudyDiabetes, 1972
- A Difference in Mechanism by Which Leucine and Other Amino Acids Induce Insulin Release1Journal of Clinical Endocrinology & Metabolism, 1967
- Method for the Isolation of Intact Islets of Langerhans from the Rat PancreasDiabetes, 1967
- Coated Charcoal Immunoassay of InsulinJournal of Clinical Endocrinology & Metabolism, 1965