Synthesis and Biological Activity of Analogues of the Antidiabetic/Antiobesity Agent 3-Guanidinopropionic Acid: Discovery of a Novel Aminoguanidinoacetic Acid Antidiabetic Agent
- 10 March 2001
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Medicinal Chemistry
- Vol. 44 (8) , 1217-1230
- https://doi.org/10.1021/jm000095f
Abstract
3-Guanidinopropionic acid (1, PNU-10483) has been demonstrated to both improve insulin sensitivity and to promote weight loss selectively from adipose tissue in animal models of non-insulin-dependent diabetes mellitus (NIDDM). However, 1 has also been shown to be a substrate for both the creatine transporter and creatine kinase, leading to marked accumulation in muscle tissue as the corresponding N-phosphate 4. In an effort to identify novel entities that maintain antidiabetic potency without susceptibility to creatine-like metabolism, an analogue program was undertaken to explore the effects of various structural modifications, including homologation, simple substitution, single atom mutations, and bioisosteric replacements for the guanidine and carboxylic acid. Overall, the scope of activity encompassed by the set of new analogues proved to be exceedingly narrow. Notable exceptions demonstrating equivalent or improved antidiabetic activity included the α-amino derivative 29, aminopyridine 47, isothiourea 67, and aminoguanidine 69. On the basis of its superior therapeutic ratio, aminoguanidine 69 was selected for preclinical development and became the foundation for a second phase of analogue work. Furthermore, in vitro studies demonstrated that 69 is markedly less susceptible to phosphorylation by creatine kinase than the lead 1, suggesting that it should have less potential for accumulation in muscle tissue than 1.Keywords
This publication has 22 references indexed in Scilit:
- Actions of the creatine analogue β-guanidinopropionic acid on rat heart mitochondriaBiochemical Journal, 1994
- Syntheses of 6-Guanidino-hexoses and 5-Guanidino-pentosesJournal of Carbohydrate Chemistry, 1993
- Biguanides and NIDDMDiabetes Care, 1992
- Slow Glucose Removal Rate and Hyperinsulinemia Precede the Development of Type II Diabetes in the Offspring of Diabetic ParentsAnnals of Internal Medicine, 1990
- One-carbon compounds as synthetic intermediates. The synthesis of hydropyrimidines and hydroquinazolines by sequential nucleophilic addition to diphenyl cyanocarbonimidate with concomitant cyclizationThe Journal of Organic Chemistry, 1989
- The Triumvirate: β-Cell, Muscle, Liver: A Collusion Responsible for NIDDMDiabetes, 1988
- Angiotensin-converting enzyme inhibitors: synthesis and biological activity of acyltripeptide analogs of enalaprilJournal of Medicinal Chemistry, 1985
- Epidemiology of adverse drug reactions to phenformin and metformin.BMJ, 1978
- Effects of Arginine Homologues and other Guanidino Compounds on the ATP Level and Glucose Oxidation in Isolated Fat CellsHoppe-Seyler´s Zeitschrift Für Physiologische Chemie, 1975
- Specificity of creatine kinase. New glycocyamines and glycocyamine analogs related to creatineJournal of the American Chemical Society, 1971