Abstract
Inhibition of PDE5 results in elevation of cGMP leading to vascular relaxation and reduction in the systemic blood pressure. Therefore, PDE5 inhibitors are used as antihypertensive and antianginal agents in addition to their major use as male erectile dysfunction treatments. Previously, we developed a novel series of 34 pyridopyrazinone derivatives as anticancer agents (series A–H). Herein, a multi-step in silico approach was preliminary conducted to evaluate the predicted PDE5 inhibitory activity, followed by an in vitro biological evaluation over the enzymatic level and a detailed SAR study. The designed 2D-QSAR model which was carried out to predict the IC 50 of the tested compounds revealed series B, D, E and G with nanomolar range of IC 50 values (6.00–81.56 nM). A further docking simulation model was performed to investigate the binding modes within the active site of PDE5. Interestingly, most of the tested compounds showed almost the same binding modes of that of reported PDE5 inhibitors. To validate the in silico results, an in vitro enzymatic assay over PDE5 enzyme was performed for a number of the promising candidates with different substitutions. Both series E and G exhibited a potent inhibitory activity (IC 50 = 18.13–41.41 nM). Compound 11b (series G, oxadiazole-based derivatives with terminal 4-NO 2 substituted phenyl ring and rigid linker) was the most potent analogue with IC 50 value of 18.13 nM. Structure–activity relationship (SAR) data attained for various substitutions were rationalized. Furthermore, a molecular dynamic simulation gave insights into the inhibitory activity of the most active compound (11b). Accordingly, this report presents a successful scaffold repurposing approach that reveals compound 11b as a highly potent nanomolar PDE5 inhibitor worthy of further investigation.
| Original language | English |
|---|---|
| Article number | 1954 |
| Journal | Pharmaceutics |
| Volume | 14 |
| Issue number | 9 |
| DOIs | |
| Publication status | Published - 15 Sept 2022 |
Funding
This research was funded by the Deanship of scientific research at Umm Al-Qura University, Saudi Arabia (22UQU4290565DSR72). M.H.A. thanks Taif University Researchers Project number (TURSP-2020/91), Taif University, Taif, Saudi Arabia. This work was supported by Deanship of Scientific Research, King Khalid University, KSA [Research group project, Grant number: RGP.2/113/43]. The authors would like to thank the Deanship of Scientific Research at Shaqra University for supporting this work. The authors would like to thank the Deanship of scientific research at Umm Al-Qura University for supporting this work by grant code (22UQU4290565DSR72).
Keywords
- PDE5 inhibitors
- in vitro enzyme assay
- molecular docking
- pyridopyrazinone derivatives
- 2D-QSAR analysis
- scaffold repurposing
- molecular dynamic simulation
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