Design, Synthesis, and Development of Pyrazolo[1,5-a]pyrimidine Derivatives as a Novel Series of Selective PI3Kδ Inhibitors: Part II—Benzimidazole Derivatives

Author:

Stypik MariolaORCID,Michałek StanisławORCID,Orłowska Nina,Zagozda Marcin,Dziachan Maciej,Banach Martyna,Turowski Paweł,Gunerka PawełORCID,Zdżalik-Bielecka DariaORCID,Stańczak Aleksandra,Kędzierska Urszula,Mulewski Krzysztof,Smuga Damian,Maruszak Wioleta,Gurba-Bryśkiewicz LidiaORCID,Leniak ArkadiuszORCID,Pietruś WojciechORCID,Ochal Zbigniew,Mach MateuszORCID,Zygmunt Beata,Pieczykolan Jerzy,Dubiel Krzysztof,Wieczorek Maciej

Abstract

Phosphoinositide 3-kinase (PI3K) is the family of lipid kinases participating in vital cellular processes such as cell proliferation, growth, migration, or cytokines production. Due to the high expression of these proteins in many human cells and their involvement in metabolism regulation, normal embryogenesis, or maintaining glucose homeostasis, the inhibition of PI3K (especially the first class which contains four subunits: α, β, γ, δ) is considered to be a promising therapeutic strategy for the treatment of inflammatory and autoimmune diseases such as systemic lupus erythematosus (SLE) or multiple sclerosis. In this work, we synthesized a library of benzimidazole derivatives of pyrazolo[1,5-a]pyrimidine representing a collection of new, potent, active, and selective inhibitors of PI3Kδ, displaying IC50 values ranging from 1.892 to 0.018 μM. Among all compounds obtained, CPL302415 (6) showed the highest activity (IC50 value of 18 nM for PI3Kδ), good selectivity (for PI3Kδ relative to other PI3K isoforms: PI3Kα/δ = 79; PI3Kβ/δ = 1415; PI3Kγ/δ = 939), and promising physicochemical properties. As a lead compound synthesized on a relatively large scale, this structure is considered a potential future candidate for clinical trials in SLE treatment.

Funder

The National Centre for Research and Development

Publisher

MDPI AG

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

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