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Structure-based design and structure-activity relationships of 1,2,3,4-tetrahydroisoquinoline derivatives as potential PDE4 inhibitors
Authors:Yixian Liao  Yiming Guo  Sumei Li  Lei Wang  Yongmei Tang  Tianmiao Li  Weihao Chen  Guohua Zhong  Gaopeng Song
Affiliation:1. College of Materials and Energy, South China Agricultural University, Guangzhou 510642, China;2. Guangdong Province Key Laboratory of Microbial Signals and Disease Control, South China Agricultural University, Guangzhou 510642, China;3. Department of Human Anatomy, School of Medicine, Jinan University, Guangzhou 510632, China;4. Key Laboratory of Crop Integrated Pest Management in South China, Ministry of Agriculture, P. R. China, and Lab of Insect Toxicology, South China Agricultural University, Guangzhou 510642, China
Abstract:
This paper describes our medicinal chemistry efforts on 7-(cyclopentyloxy)-6-methoxy1,2,3,4-tetrahydroisoquinoline scaffold: design, synthesis and biological evaluation using conformational restriction approach and bioisosteric replacement strategy. Biological data revealed that the majority of the synthesized compounds of this series displayed moderate to potent inhibitory activity against PDE4B and strong inhibition of LPS-induced TNFα release. Among them, compound 19 exhibited the strongest inhibition against PDE4B with an IC50 of 0.88?µM and 21 times more potent selectivity toward PDE4B over PDE4D when compared to rolipram. A primary structure-activity relationship study showed that the attachment of CH3O group or CF3O group to the phenyl ring at the para-position was helpful to enhance the inhibitory activity against PDE4B. Moreover, sulfonamide group played a key role in improving the inhibitory activity against PDE4B and subtype selectivity. In addition, the attachment of the additional rigid substituents at the C-3 position of 1,2,3,4-tetrahydroisoquinoline ring was favored to subtype selectivity, which was consistent well with the observed docking simulation.
Keywords:Tetrahydroisoquinoline derivatives  PDE4 inhibitors  Synthesis  Structure-activity relationship
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