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  4. Novel pyrazolo[4, 3-c]quinolin-3-one derivatives as PDE5A inhibitors
 
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Novel pyrazolo[4, 3-c]quinolin-3-one derivatives as PDE5A inhibitors

Source
Current Topics in Medicinal Chemistry
Author(s)
A., Shaik, Althaf
H.K., Agarwal, Harshit K.
R., Bhakuni, Rashmi
S., Kirubakaran, Sivapriya  
DOI
10.2174/1568026619666190208164402
Volume
19
Issue
4
Start Page
31-10-1900
End Page
315
Abstract
Background: PDE5A is a phosphodiesterase which specifically hydrolyzes the cGMP to GMP. It takes part in several physiological and pathological pathways and is considered an important drug target. Currently, PDE5 inhibitors (ex; Sildenafil, Tadalafil) available in the market are not only being used for the treatment of erectile dysfunction but at the same time, they are also in clinical trials being investigated as anticancer agents. Materials & Methods: In this work, we have examined pyrazolo [4,3-c]quinolin-3-ones as PDE5A inhibitors. Pyrazolo [4,3-c]quinolin-3-ones are the class of tricyclic heterocyclic derivatives having a variety of therapeutically interesting drug candidates known for their anti-inflammatory, anti-viral, anti-anxiety and anti-cancer activity. Therefore, synthetic methods providing access to pyrazolo [4, 3-c] quinolin-3-ones are immensely valuable. Here, we are reporting a simple but efficient route for the synthesis of novel 8�morpholino-2-aryl � 2, 5-dihydro-3H-pyrazolo [4, 3-c] quinolin-3-one derivatives. Results: Further, molecular docking studies of synthesized compounds with human PDE5A protein showed that all the compounds exhibited good docking score in comparison with known inhibitors. In addition, all the synthesized molecules were evaluated against HCT116 cell lines for their antitumor activity. Conclusion: Among all the synthesized compounds, compound 5a, 5d, and 6e showed better cytotoxicity. Thus, these derivatives can be studied as potential inhibitors of PDE5A. � 2019 Elsevier B.V., All rights reserved.
Unpaywall
Sherpa Url
https://v2.sherpa.ac.uk/id/publication/3941
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85065115760&doi=10.2174%2F1568026619666190208164402&partnerID=40&md5=a1c8b9a730a02ef3b09406dd464715a5
https://d8.irins.org/handle/IITG2025/29383
Keywords
2 (2 bromophenyl) 8 morpholino 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
2 (3 bromophenyl) 8 morpholino 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
2 (4 bromophenyl) 8 morpholino 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
2 (4 chloro 3 methylphenyl) 8 morpholino 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
2 (4 chlorophenyl) 8 morpholino 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
2 benzyl 8 morpholino 2 phenyl 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 bromo 2 (3 bromophenyl) 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 bromo 2 (4 bromophenyl) 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 bromo 2 (4 chlorophenyl) 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 bromo 2 (4 tolyl) 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 bromo 2 phenyl 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 bromo 2 [3 (trifluoromethyl)phenyl] 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 bromo 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 morpholino 2 (2 tolyl) 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 morpholino 2 (3 tolyl) 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 morpholino 2 (4 tolyl) 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 morpholino 2 phenyl 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
8 morpholino 2,5 dihydro 3h pyrazolo[4,3 c]quinolin 3 one
phosphodiesterase
phosphodiesterase 5A
phosphodiesterase V inhibitor
pyrazolo[4,3 c]quinolin 3 one derivative
quinoline derivative
sildenafil
tadalafil
unclassified drug
antineoplastic agent
PDE5A protein, human
phosphodiesterase V
pyrazole derivative
quinolone derivative
antineoplastic activity
Article
binding affinity
cell proliferation
controlled study
drug cytotoxicity
drug protein binding
drug structure
drug synthesis
GI50
HCT 116 cell line
molecular docking
cell survival
chemical structure
chemistry
drug effect
drug screening
human
metabolism
molecular model
structure activity relation
synthesis
X ray crystallography
Antineoplastic Agents
Cell Proliferation
Cell Survival
Crystallography, X-Ray
Cyclic Nucleotide Phosphodiesterases, Type 5
Drug Screening Assays, Antitumor
HCT116 Cells
Humans
Models, Molecular
Molecular Structure
Phosphodiesterase 5 Inhibitors
Pyrazoles
Quinolones
Structure-Activity Relationship
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