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Dual PI3Kδγ inhibition demonstrates potent anticancer effects in diffuse large B-cell lymphoma models: Discovery and preclinical characterization of LL-00084282. | LitMetric

AI Article Synopsis

  • The PI3K pathway is essential for B-cell survival and is linked to B-cell cancers like DLBCL, with the overactivation of PI3Kδ being a significant factor.
  • Small molecule inhibitors targeting PI3Kδγ, like LL-00084282, show promise in fighting DLBCL by demonstrating high potency and selectivity against this isoform while outperforming selective PI3Kδ inhibitors in cancer cell lines.
  • LL-00084282 has shown effective results in vivo and exhibits good pharmacokinetic properties, indicating potential for future clinical trials in DLBCL patients and possible benefits in treating immunoinflammatory conditions.

Article Abstract

Phosphoinositide 3-kinase (PI3K) pathway mediates key signaling events downstream to B-cell receptor (BCR) for survival of mature B-cells, and overexpression or overactivation of PI3Kδ is crucial for B-cell malignancies such as diffuse large B-cell lymphoma (DLBCL). Small molecule PI3Kδγ inhibitors, with a known potential to reduce activated B-cell (ABC)-DLBCL transformation, form an important class of therapeutics approved for follicular lymphoma (FL), chronic lymphocytic leukemia (CLL), small lymphocytic lymphoma (SLL). In this study, we describe discovery of a potent, selective and efficacious dual PI3Kδγ inhibitor, LL-00084282, having a differentiated efficacy profile in human ABC- and germinal center B-cell (GCB)-DLBCL cell lines. LL-00084282 displayed high potency and superior PI3Kδγ engagement with excellent selectivity over other PI3K isoforms at both IC concentrations in biochemical and cell-based assays. In contrast to selective PI3Kδ inhibitors, LL-00084282 showed superior and potent anticancer activity in both ABC- and GCB-DLBCL cell lines. LL-00084282 demonstrated in-vivo efficacy in OCI-Ly10 and SU-DHL-6 xenografts with good tolerability. Furthermore, LL-00084282 inhibited pro-inflammatory cytokine secretion and reduced basophil activation in human PBMCs, showing potential implications in immunoinflammatory conditions. Good pharmacokinetic properties in higher species and desirable efficacy profile highlights potential of this novel PI3Kδγ inhibitor for further clinical evaluation in DLBCL patients.

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Source
http://dx.doi.org/10.1016/j.bbrc.2022.11.038DOI Listing

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