Abstract
The conformation of thiomalate (mercaptosuccinate) in neutral aqueous solutions of the anti-arthritic drug aurothiomalate has been determined by analysis of 1H–1H and 1H–13C three-bond n.m.r. coupling constants. The results indicate the formation of a low molecular weight polymer with only sulphur co-ordination for AuI. At high ionic strength additional 1H and 13C n.m.r. resonances appear and peaks broaden, consistent with the formation of higher molecular weight species with up to three different environments for thiomalate. Structural changes are accompanied by a new electronic absorption band at 340 nm. High molecular weight polymers are also formed at low pH, where the 1H and 13C resonances are severely broadened.