S. Rahbar et al., “Novel Inhibitors of Advanced Glycation Endproducts,” Biochemical and Biophysical Research Communications 262:651-656, 1999. |
S. Rahbar et al., “A new rapid method to detect inhibition of Amadori product generated by δ-gluconolactone,” Clinica Chimica Acta 287:123-130, 1999. |
Asif, M. et al. “An advanced glycation endproduct cross-link breaker can reverse age-related increases in myocardial stiffness”, PNAS, Mar. 14, 2000; 97(6):2809-2813 plus 1 page with correction. |
Beisswenger, P.J. et al. “Metformin Reduces Systemic Methylglyoxal Levels in Type 2 Diabetes”, Diabetes, Jan. 1999; 48:198-202. |
Cooper, M.E. et al. “The cross-link breaker, N-phenacylthiazolium bromide prevents vascular advanced glycation end-product accumulation”, Diabetologia, 2000; 43:660-664. |
Jyothirmayi, G.N. et al. “Effects of Metformin on Collagen Glycation and Diastolic Dysfunction in Diabetic Myocardium”, J. Cardiovasc. Pharmacol. Therapeut., 1998; 3(4):319-326. |
Lalezari, I. et al. “Synthesis and Investigation of Effects of 2-[4-[[(Arylamino)carbonyl]amino]phenoxy]-2-methylpropionic Acids on the Affinity of Hemoglobin for Oxygen: Structure-Activity Relationships”, J. Med. Chem., 1989; 32:2352-2357. |
Lalezari, I. et al. “LR16, a compound with potent effects on the oxygen affinity of hemoglobin, on blood cholesterol, and on low density lipoprotein”, Proc. Natl. Acad. Sci. USA, Aug. 1988; 85:6117-6121. |
Rahbar, S. et al. “A new rapid method to detect inhibition of Amadori product generated by δ-gluconolactone”, Clinica Chimica Acta, 1999; 123-130. |
Rahbar, S. et al. “Novel Inhibitors of Advanced Glycation Endproducts”, Biochemical and Biophysical Research Communications, 1999; 262:651-656. |
Raj, D.S.C. et al. “Advanced Glycation End Products: A Nephrologist's Perspective”, American Journal of Kidney Diseases, Mar. 2000, 35(3):365-380. |
Ruggiero-Lopez, D. et al. “Reaction of Metformin with Dicarbonyl Compounds. Possible Implication in the Inhibition of Advanced Glycation End Product Formation”, Biochemical Pharmacology, 1999; 58:1765-1773. |
Tanaka, Y. et al. “Effect of metformin on advanced glycation endproduct formation and peripheral nerve function in streptozotocin-induced diabetic rats”, European Journal of Pharmacology, 1999; 376:17-22. |
Thornalley, P.J. et al. “Rapid Hydrolysis and Slow α,β-Dicarbonyl Cleavage of an Agent Proposed to Cleave Glucose-Derived Protein Cross-Links”, Biochemical Pharmacology, 1999; 57:303-307. |
Ulrich, P. et al. “Pharmacological reversal of advanced glycation end-product-mediated protein crosslinking”, Diabetologia, 1997; 40:S157-S159. |
Vasan, S. et al. “An agent cleaving glucose-derived protein crosslinks in vitro and in vivo”, Nature, Jul. 18, 1996; 382:275-278. |
Wolffenbuttel, B.H.R. et al. “Breakers of advanced glycation end products restore large artery properties in experimental diabetes”, Proc. Natl. Acad. Sci. USA, Apr. 1998; 95:4630-4634. |