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Updated: Mar 3, 2026

Amide Coupling Reaction for the Synthesis of Bispyridine-based Ligands and Their Complexation to Platinum as Dinuclear Anticancer Agents
Published on: May 28, 2014
Synthesis, Characterization, and Cytotoxicity of Dicyclo-alkyl-amine-pyrophosphato-platinum(II) Complexes
Dianne M Wagner1, Dieu Huyen My Nguyen1, Emily McHenry2
1Department of Chemistry, One University Pl, Widener University, Chester, Pennsylvania 19013, United States.
Abstract:
Platinum complexes have now been used in chemotherapy regimens for almost half a century to treat a variety of cancers. The most clinically significant of these compounds to date is cisplatin, cis-di-ammine-dichloro-platinum-(II), whose clinical application has significantly reduced the mortality rate of several cancers. Despite this development, there is still a push to find new compounds that have improved efficacy, that can be administered at lower doses, and that produce less severe side-effects compared to current options. One class of molecules that may fill that role is phosphaplatins, an underexplored class of platinum-(II) complexes that contain a bidentate pyrophosphate ligand. These compounds are anionic at physiological pH and display reduced DNA-binding compared to cisplatin. This study expands on the list of known phosphaplatins by introducing two new compounds, di-cyclo-butyl-amine-dihydrogen-pyro-phosphato-platinum-(II) and dicyclo-pentylamine-dihydrogen-pyrophosphato-platinum-(II). Here we report complete synthetic details, as well as cell viability data in response to these compounds using two cancer cell lines, a human lung adenocarcinoma and a triple-negative human breast cancer. While these compounds inhibit cell viability less than the leading phosphaplatin drug candidate, trans-(1R,2R)-diamino-cyclo-hexane-dihydrogen-pyro-phosphato-platinum-(II), this work represents an important step in elucidating structure-activity relationships for this class of molecules.

