Article ID Journal Published Year Pages File Type
1364982 Bioorganic & Medicinal Chemistry Letters 2008 4 Pages PDF
Abstract

Poly(ADP-ribose) polymerases (PARPs) play significant roles in various cellular functions including DNA repair and control of RNA transcription. PARP inhibitors have been demonstrated to potentiate the effect of cytotoxic agents or radiation in a number of animal tumor models. Utilizing a benzimidazole carboxamide scaffold in which the amide forms a key intramolecular hydrogen bond for optimal interaction with the enzyme, we have identified a novel series of PARP inhibitors containing a quaternary methylene-amino substituent at the C-2 position of the benzimidazole. Geminal dimethyl analogs at the methylene-amino substituent were typically more potent than mono-methyl derivatives in both intrinsic and cellular assays. Smaller cycloalkanes such as cyclopropyl or cyclobutyl were tolerated at the quaternary carbon while larger rings were detrimental to potency. In vivo efficacy data in a B16F10 murine flank melanoma model in combination with temozolomide (TMZ) are described for two optimized analogs.

Graphical abstractWe discovered a novel series of potent and orally bioavailable PARP inhibitors containing a quaternary methylene-amino substituent at the C-2 position of the benzimidazole scaffold. Two optimized analogs, 9b and 9k, displayed excellent intrinsic and cellular potency, adequate pharmaceutical properties, and potentiated the efficacy of cytotoxic agent temozolomide (TMZ) in a B16F10 flank melanoma model.Figure optionsDownload full-size imageDownload as PowerPoint slide

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