4.6 Article

Multifunctional Isosteric Pyridine Analogs-Based 2-Aminothiazole: Design, Synthesis, and Potential Phosphodiesterase-5 Inhibitory Activity

期刊

MOLECULES
卷 26, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/molecules26040902

关键词

2-aminothiazoles; phosphodiesterase 5; sildenafil; erectile dysfunction; docking; OpenEye

资金

  1. King Saud University, Riyadh, Saudi Arabia [RSP-2020/64]

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Research on new small molecules targeting PDEs, particularly PDE5, is a current and interesting topic. The designed aminothiazole compounds showed potential PDE5 inhibitory activity, with in vivo testing demonstrating similar effects to sildenafil without its known drawbacks, indicating they may be beneficial drug candidates for the treatment of erectile dysfunction.
The elaboration of new small molecules that target phosphodiesterase enzymes (PDEs), especially those of type 5 (PDE5), is an interesting and emerging topic nowadays. A new series of heterocycle-based aminothiazoles were designed and synthesized from the key intermediate, 3-oxo-N-(thiazol-2-yl)butanamide (a PDE5 inhibitor that retains its amidic function), as an essential pharmacophoric moiety. The PDE5 inhibitors prevent the degradation of cyclic guanosine monophosphate, thereby causing severe hypotension as a marked side effect. Hence, an in vivo testing of the target compounds was conducted to verify its relation with arterial blood pressure. Utilizing sildenafil as the reference drug, Compounds 5, 10a, and 11b achieved 100% inhibitions of PDE5 without significantly lowering the mean arterial blood pressures (115.95 +/- 2.91, 110.3 +/- 2.84, and 78.3 +/- 2.57, respectively). The molecular docking study revealed that the tested compounds exhibited docking poses that were similar to that of sildenafil (exploiting the amide functionality that interacted with GLN:817:A). The molecular shape and electrostatic similarity revealed a comparable physically achievable electrostatic potential with the reference drug, sildenafil. Therefore, these concomitant results revealed that the tested compounds exerted sildenafil-like inhibitory effects (although without its known drawbacks) on blood circulation, thus suggesting that the tested compounds might represent a cornerstone of beneficial drug candidates for the safe treatment for erectile dysfunction.

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