Structural analysis of halogenated bicyclo[4.2.0] inositols, biological activities and molecular docking studies

2021 ◽  
pp. 131357
Author(s):  
Ebrar Nur Şahin ◽  
Abdullah Karanfil ◽  
Melek Çol Ayvaz ◽  
Ertan Şahin ◽  
Latif Kelebekli
Author(s):  
Punabaka Jyothi ◽  
Kuna Yellamma

Objective: Alzheimer’s disease (AD), a progressive neurodegenerative disorder with many cognitive and neuropsychiatric symptoms, is biochemically characterized by a significant decrease in the brain neurotransmitter Acetylcholine (ACh).Methods: In the present insilico study, six plant bioactive compounds namely Harmol, Vasicine, Harmaline, Harmine, Harmane and Harmalol (from P. Nigellastrum Bunge) were analyzed for their inhibitory role on AChE (Acetylcholinesterase) and BChE (Butyrylcholinesterase) activity by applying the molecular docking studies. Other parameters viz. determination of molecular interaction-based binding affinity values, protein-ligand interactions, Lipinski rule of five, functional properties and biological activities for the above compounds were also calculated by employing the appropriate bioinformatics tools.Results: The results of docking analysis clearly showed that Harmalol has highest binding affinity with AChE (-8.6 kcal/mole) and BChE (-8.0 kcal/mole) but it does not qualified the enzyme inhibitory activity, since it was exerted, and also has least percentage activity on AD and neurodegenerative disease. Whereas, the Harmine has been second qualified binding affinity (-8.4 kcal/mol) and first in other parameters when compared with Harmalol.Conclusion: Based on docking results and other parameters conducted, we are concluding that Harmine is the best compound for further studies to treat AD.Keywords: Alzheimer's disease (AD), Acetylcholinesterase, Butyrylcholinesterase, Lead Molecules


2016 ◽  
Vol 40 (8) ◽  
pp. 7084-7094 ◽  
Author(s):  
Kishwar Sultana ◽  
Sumera Zaib ◽  
Najm ul Hassan Khan ◽  
Imtiaz Khan ◽  
Khadija Shahid ◽  
...  

This study reports an unprecedented series of aryl acetamide derived Zn(ii) complexes as frontline enzyme inhibitors as well as anticancer and anti-parasitic agents.


2021 ◽  
Vol 62 (11) ◽  
pp. 1783-1794
Author(s):  
G. A. Akverdieva ◽  
N. M. Godjayev ◽  
S. D. Demukhamedova

2021 ◽  
Vol 33 (7) ◽  
pp. 1551-1556
Author(s):  
P.V. Sandhya ◽  
K.V. Muhammad Niyas ◽  
K.R. Haridas

Herein, the novel pyrazole derivatives with imino moiety were synthsized, characterized using IR, NMR, mass spectroscopy, elemental analysis and screened their biological activities. Molecular docking studies were also carried out by the software Arguslab 4.0.1. The synthesized compounds showed moderate to good biological activities both experimentally and theoretically.


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