172733-31-2Relevant academic research and scientific papers
Indole inhibitors of human nonpancreatic secretory phospholipase A2. 3. Indole-3-glyoxamides
Draheim, Susan E.,Bach, Nicholas J.,Dillard, Robert D.,Berry, Dennis R.,Carlson, Donald G.,Chirgadze, Nickolay Y.,Clawson, David K.,Hartley, Lawrence W.,Johnson, Lea M.,Jones, Noel D.,McKinney, Emma R.,Mihelich, Edward D.,Olkowski, Jennifer L.,Schevitz, Richard W.,Smith, Amy C.,Snyder, David W.,Sommers, Cynthia D.,Wery, Jean-Pierre
, p. 5159 - 5175 (2007/10/03)
The preceding papers of this series detail the development of functionalized indole-3-acetamides as inhibitors of hnps-PLA2. We describe here the extension of the structure-activity relationship to include a series of indole-3-glyoxamide derivatives. Functionalized indole-3-glyoxamides with an acidic substituent appended to the 4- or 5-position of the indole ring were prepared and tested as inhibitors of hnps-PLA2. It was found that the indole-3-glyoxamides with a 4-oxyacetic acid substituent had optimal inhibitory activity. These inhibitors exhibited an improvement in potency over the best of the indole-3-acetamides, and LY315920 (6m) was selected for evaluation clinically as an hnps-PLA2 inhibitor.
Indole inhibitors of human nonpancreatic secretory phospholipase A2. 1. Indole-3-acetamides
Dillard, Robert D.,Bach, Nicholas J.,Draheim, Susan E.,Berry, Dennis R.,Carlson, Donald G.,Chirgadze, Nickolay Y.,Clawson, David K.,Hartley, Lawrence W.,Johnson, Lea M.,Jones, Noel D.,McKinney, Emma R.,Mihelich, Edward D.,Olkowski, Jennifer L.,Schevitz, Richard W.,Smith, Amy C.,Snyder, David W.,Sommers, Cynthia D.,Wery, Jean-Pierre
, p. 5119 - 5136 (2007/10/03)
Phospholipases (PLAs) produce rate-limiting precursors in the biosynthesis of various types of biologically active lipids involved in inflammatory processes. Increased levels of human nonpancreatic secretory phospholipase A2 (hnps-PLA2) have been detected in several pathological conditions. An inhibitor of this enzyme could have therapeutic utility. A broad screening program was carried out to identify chemical structures which could inhibit hnps-PLA2. One of the lead compounds generated by the screening program was 5-methoxy-2-methyl-1-(phenylmethyl)-1H-indole-3-acetic acid (13a). We describe the syntheses, structure-activity relationships, and pharmacological activities of a series of indole-3-acetamides and related compounds derived from this lead. This SAR was undertaken with the aid of X- ray crystal structures of complexes between the inhibitors and hnps-PLA2 which were of great value in directing the SAR.
