Author

Binbin Cheng

2 papers indexed here

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Open access Jul 2026

Rational design and biological validation of EZH2/PD-L1 bifunctional inhibitors for colorectal cancer immunotherapy

Objectives This study aims to identify novel small-molecule inhibitors that target both PD-L1 and EZH2 to enhance colorectal cancer immunotherapy. Methods A combination of computer-aided molecular simulation, homogeneous time-resolved fluorescence (HTRF) assays, biolayer interferometry (BLI) assays, microscale thermophoresis (MST), and MTase-Glo methyltransferase assays was used to identify compounds with dual-targeting potential. Results Compound PE-1 exhibited potent inhibitory activity against the PD-1/PD-L1 interaction (IC50 = 48.1 nM) and showed strong EZH2 methyltransferase inhibitory effects, with an IC50 of 101.2 nM. BLI and MST further confirmed that PE-1 can effectively bind to both PD-L1 and EZH2 at the molecular level, supporting its bifunctional targeting capability. Importantly, compound PE-1 demonstrated significant activity in a PD-1/PD-L1 NFAT reporter bioassay, dose-dependently enhancing luciferase activity (EC50 = 0.61 μM), indicating effective blockade of the PD-1/PD-L1 pathway and reactivation of T-cell NFAT signaling. Notably, PE-1 demonstrated favorable in vivo pharmacokinetic properties, including a satisfactory oral bioavailability of 58.4%. In syngeneic tumor models, oral administration of PE-1 elicited substantial anti-tumor efficacy, with tumor growth inhibition (TGI) reaching 69.9% in CT26 tumors. Conclusions PE-1 demonstrates dual-target inhibitory activity against the PD-1/PD-L1 immune checkpoint and EZH2, underscoring its potential as a lead compound for the development of next-generation bifunctional anticancer agents.

B. Guan, Binbin Cheng, Hongqiao Li · 0 citations
Open access Jul 2026

Dual-targeting CD73/PD-L1 bifunctional inhibitor: a promising cancer immunotherapy strategy

Objectives This work aims to design and characterize a novel bifunctional small molecule that simultaneously targets PD-L1 and CD73 to enhance the therapeutic efficacy of tumor immunotherapy. Methods Multiple methodologies were integrated for compound screening and biological characterization, including computer-aided molecular docking, homogeneous time-resolved fluorescence (HTRF) binding assay, surface plasmon resonance (SPR), and PD-1/PD-L1 NFAT reporter cell assay. Results The lead compound CP-1 exhibited potent dual-target inhibitory activities. It blocked the PD-1/PD-L1 interaction with an IC50 of 10.27 nM and suppressed CD73 activity with an IC50 of 300.2 nM. Molecular docking simulations revealed that CP-1 stably binds to the functional domains of PD-L1 and CD73 via specific non-covalent interactions. Cellular functional assays further demonstrated that CP-1 effectively restored T cell function in the PD-1/PD-L1 reporter system, with an EC50 of 0.9 μM. Conclusions CP-1 exhibits balanced, dual-nanomolar inhibitory activity against PD-L1 and CD73 and displays potent immunomodulatory effects at the cellular level. It serves as a promising lead candidate for developing novel bifunctional agents to advance tumor immunotherapy.

Jing-Jing Du, Sen Wu, Shiyun Cheng et al. · 0 citations