Latent Warheads for Targeted Cancer Therapy: Design and Synthesis of pro-Pyrrolobenzodiazepines and Conjugates

Pyrrolobenzodiazepines (PBDs) and their dimers (bis-PBDs) have emerged as some of the most potent chemotherapeutic compounds, and are currently under development as novel payloads in antibody–drug conjugates (ADCs). However, when used as stand-alone therapeutics or as warheads for small molecule dru...

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Veröffentlicht in:Bioconjugate chemistry 2017-12, Vol.28 (12), p.2921-2931
Hauptverfasser: Vlahov, Iontcho R, Qi, Longwu, Kleindl, Paul J, Santhapuram, Hari K, Felten, Albert, Parham, Garth L, Wang, Kevin, You, Fei, Vaughn, Jeremy F, Hahn, Spencer J, Klein, Hanna F, Vetzel, Marilynn, Reddy, Joseph A, Nelson, Melissa, Nicoson, Jeff, Leamon, Christopher P
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Sprache:eng
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Zusammenfassung:Pyrrolobenzodiazepines (PBDs) and their dimers (bis-PBDs) have emerged as some of the most potent chemotherapeutic compounds, and are currently under development as novel payloads in antibody–drug conjugates (ADCs). However, when used as stand-alone therapeutics or as warheads for small molecule drug conjugates (SMDCs), dose-limiting toxicities are often observed. As an elegant solution to this inherent problem, we designed diazepine-ring-opened conjugated prodrugs lacking the imine moiety. Once the prodrug (pro-PBD) conjugate enters a targeted cell, cleavage of the linker system triggers the generation of a reactive intermediate possessing an aldehyde and aromatic amine. An intramolecular ring-closing reaction subsequently takes place as the aromatic amine adds to the aldehyde with the loss of water to give the imine and, as a result, the diazepine ring. In our pro-PBDs, we mask the aldehyde as a hydrolytically sensitive oxazolidine moiety which in turn is a part of a reductively labile self-immolative linker system. To prove the range of applications for this new class of latent DNA-alkylators, we designed and synthesized several novel latent warheads: pro-PBD dimers and hybrids of pro-PBD with other sequence-selective DNA minor groove binders. Preliminary preclinical pharmacology studies showed excellent biological activity and specificity.
ISSN:1043-1802
1520-4812
DOI:10.1021/acs.bioconjchem.7b00476