Aug 2026· Journal of Medicinal Chemistry· 0 citations· 81 references
TL;DR
The quaternary ammonium strategy represents an effective approach to developing water-soluble PD-1/PD-L1 inhibitors with dual immunomodulatory and antiangiogenic functions.
Abstract
Programmed death protein 1 (PD-1)/programmed death ligand 1 (PD-L1) represents a critical immune checkpoint in cancer immunotherapy; however, most small-molecule PD-1/PD-L1 inhibitors suffer from poor aqueous solubility. Here, we designed a series of quaternary ammonium-based PD-1/PD-L1 inhibitors. Among them, QA9 exhibited potent PD-1/PD-L1 inhibition (IC50 = 18.7 nM), outperforming the lead compound NP19, and demonstrated a 600-fold improvement in water solubility (0.642 vs 0.001 mg/mL). X-ray crystallography revealed that QA9 stabilizes the PD-L1 dimer through multiple interactions, providing a structural basis for its high affinity. In MC38/Jurkat and HCT116/Jurkat coculture models, QA9 enhanced immune-mediated tumor cell death. Additionally, QA9 suppressed VEGF-A-induced tube formation and migration in HUVECs, which was associated with reduced FAK phosphorylation. Furthermore, in an MC38 mouse colon cancer model, QA9 showed robust antitumor activity without overt toxicity. Collectively, the quaternary ammonium strategy represents an effective approach to developing water-soluble PD-1/PD-L1 inhibitors with dual immunomodulatory and antiangiogenic functions.
Fragment-based diffusion modeling is an efficient and interpretable strategy for the discovery of computationally prioritized PD-L1 small-molecule candidate inhibitors and offers a promising framework for tackling challenging targets in cancer immunotherapy.
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Cell-based assays showed that SA13 can mediate the internalization of PD-L1 and strongly block hPD-1 and hPD-L1 interaction, demonstrating its effectiveness in biological events and indicating that SA13 is a promising and safe novel antitumor agent worthy of further development.
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Overall, these results identify amino-triazine-based scaffolds as a promising new class of potent and selective PDK inhibitors with significant anticancer potential in pancreatic cancer.
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A comparative, structure-driven analysis of PD-L1 complexes deposited in the Protein Data Bank is presented and it is demonstrated that distinct inhibitory modalities converge on the same functional CC′FG hotspot region while employing fundamentally different neutralization mechanisms.
Imma Capriello, T. Moreira Pereira, Gustavo Barbosa Reis et al.· Journal of Medicinal Chemist...· 0 citations
CP-1 exhibits balanced, dual-nanomolar inhibitory activity against PD-L1 and CD73 and displays potent immunomodulatory effects at the cellular level and serves as a promising lead candidate for developing novel bifunctional agents to advance tumor immunotherapy.
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Findings establish coumarin-derived scaffolds as promising starting points for the development of next-generation CDK4-targeted therapeutics and provide a strong computational foundation for future experimental validation in NSCLC.
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