Nω-Hydroxy-L-arginine (NOHA)—the physiological nitric oxide precursor—is the intermediate of NO synthase (NOS) catalysis. Besides the important fact of releasing NO mainly at the NOS-side of action, NOHA also represents a potent inhibitor of arginases, making it an ideal therapeutic tool to treat cardiovascular diseases that are associated with endothelial dysfunction. Here, we describe an approach to impart NOHAdrug-like properties, particularly by wrapping up the chemically and metabolically instable N-hydroxyguanidine moiety with different prodruggroups. We present synthetic routes that deliver several more or less highly substituted NOHA derivatives in excellent yields. Versatile prodrug strategies were realized, including novel concepts of bioactivation. Prodrug candidates were primarily investigated regarding their hydrolytic and oxidative stabilities. Within the scope of this work, we essentially present the first prodrug approaches for an interesting pharmacophoric moiety, i.e., N-hydroxyguanidine.
Fetching data from CrossRef. This may take some time to load.
This may take some time to load.
This text is added as a work around for heading error in Accessibility testing