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Synthesis, Structure–Activity Relationships, and In Vivo Evaluation of Novel Tetrahydropyran-Based Thiodisaccharide Mimics as Galectin‑3 Inhibitors

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Figshare2021-05-14 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Synthesis_Structure_Activity_Relationships_and_In_Vivo_Evaluation_of_Novel_Tetrahydropyran-Based_Thiodisaccharide_Mimics_as_Galectin_3_Inhibitors/14597135
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Galectin-3 is a member of a family of β-galactoside-binding proteins. A substantial body of literature reports that galectin-3 plays important roles in cancer, inflammation, and fibrosis. Small-molecule galectin-3 inhibitors, which are generally lactose or galactose-based derivatives, have the potential to be valuable disease-modifying agents. In our efforts to identify novel galectin-3 disaccharide mimics to improve drug-like properties, we found that one of the monosaccharide subunits can be replaced with a suitably functionalized tetrahydropyran ring. Optimization of the structure–activity relationships around the tetrahydropyran-based scaffold led to the discovery of potent galectin-3 inhibitors. Compounds 36, 40, and 45 were selected for further in vivo evaluation. The synthesis, structure–activity relationships, and in vivo evaluation of novel tetrahydropyran-based galectin-3 inhibitors are described.
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2021-05-14
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