1. Academic Validation
  2. Synthesis and structure-activity relationships of pyrazolodiazepine derivatives as human P2X7 receptor antagonists

Synthesis and structure-activity relationships of pyrazolodiazepine derivatives as human P2X7 receptor antagonists

  • Bioorg Med Chem Lett. 2009 Nov 1;19(21):6053-8. doi: 10.1016/j.bmcl.2009.09.053.
Ju-Yeon Lee 1 Juan Yu Won Je Cho Hyojin Ko Yong-Chul Kim
Affiliations

Affiliation

  • 1 Research Center for Biomolecular Nanotechnology, Department of Life Science, Gwangju Institute of Science & Technology, Gwangju, Republic of Korea.
Abstract

Screening of library compounds has yielded pyrazolodiazepine derivatives with P2X7 Receptor Antagonist activity. To explore the structure-activity relationships (SAR) of these pyrazolodiazepines as human P2X7 Receptor antagonists, derivatives were synthesized by substitutions at positions R2 and R3 of the pyrazolodiazepine skeleton. Using a 2'(3')-O-(4-benzoylbenzoyl)ATP (BzATP)-induced fluorescent ethidium uptake assay, the activities of these derivatives were tested in HEK-293 cells stably expressing human P2X7 receptors. Moreover, the effect of these derivatives was assessed by measuring their effect on IL-1beta release induced by BzATP-induced activation of differentiated THP-1 cells. A 2-phenethyl pyrazolodiazepine derivative with a 1-methyl-1H-3-indolyl group at position R2 had fivefold greater activity than the derivative with a 5-isoquinolinyl at R2. Moreover, a benzyl moiety at R3 had fivefold greater activity than a bicyclic moiety. The stereochemical effect at C-6 showed a preference for the (R)-isomer. Among the series of active derivatives, compound 23b, with a phenethyl group at R1, a 3-methyl indole at R2, and a benzyl at R3, exhibited activity similar to that of the positive control, KN-62, as shown by the inhibitory effects of IL-1beta release.

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