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◆ Molecular diversity2026-08-22

Design, synthesis and biological evaluation of quinazoline-carbazole derivatives as dual TXNIP/DYRK1A inhibitors for the treatment of type 2 diabetes mellitus.

Li Guan, Wanzhen Su, Zhu Mi, Jing Wang, Yanan Li, Pengfei Song, Wenxia Han, Tongxuan Bai, Wenling Fei, Kejing Lao, Xiaocheng Li, Aiyun Li, Weize Li

原始摘要(英文原文)· Original abstract
TXNIP and DYRK1A are two novel drug targets for the treatment of type 2 diabetes (T2DM), and their respective inhibitors have been shown to suppress islet β-cell apoptosis and promote islet β-cell proliferation. The quinazoline scaffold constitutes the core pharmacophore of TXNIP inhibitors. Harmine, a prototypical DYRK1A inhibitor bearing a β-carboline scaffold, has demonstrated robust β-cell proliferative activity. Carbazole serves as a structurally simplified bioisostere of β-carboline. Guided by the principles of multi-target drug design and combinatorial chemistry, we designed and synthesized a series of quinazoline-carbazole hybrids as dual TXNIP/DYRK1A inhibitors. Compounds PF-5 and PF-6 markedly attenuated palmitic acid (PA)-induced β‑cell injury by suppressing the TXNIP-NLRP3-IL-1β signaling axis. Meanwhile, compounds PF-6 and PF-8 enhanced β-cell proliferation via DYRK1A inhibition. Molecular docking confirmed PF-6 bound with high affinity to both targets, and ADMET predictions supported its drug-like properties. Thus, PF-6 emerges as a potential dual-target therapeutics for T2DM. In conclusion, PF-6 can be used as a potential new chemical entity against T2DM.
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Design, synthesis and biological evaluation of quinazoline-carbazole derivatives as dual TXNIP/DYRK1A inhibitors for the treatment of type 2 diabetes mellitus. — 科研速览 Science Skim