Haji_2022_Molecules_27_

Reference

Title : Design, Synthesis, and Evaluation of Novel 2H-Benzo[b][1,4]thiazin-3(4H)-one Derivatives as New Acetylcholinesterase Inhibitors - Haji_2022_Molecules_27_
Author(s) : Haji Ali S , Osmaniye D , Saglik BN , Levent S , Ozkay Y , Kaplancikli ZA
Ref : Molecules , 27 : , 2022
Abstract :

Alzheimer's disease (AD) is a slowly progressive neurodegenerative disease that causes dementia in people aged 65 and over. In the present study, a series of thiadiazole hybrid compounds with benzothiazine derivatives as acetylcholinesterase inhibitors were developed and evaluated for their biological activity. The AChE and BChE inhibition potentials of all compounds were evaluated by using the in vitro Ellman method. The biological evaluation showed that compounds 3i and 3j displayed significant inhibitory activity against AChE. Compounds 3i and 3j showed IC(50) values of 0.027 microM and 0.025 microM against AChE, respectively. The reference drug donepezil (IC(50) = 0.021 microM) also showed significant inhibition against AChE. Further docking simulation also revealed that these compounds (3i and 3j) interacted with the active site of the enzyme similarly to donepezil. The antioxidant study revealed that compounds 3i and 3j exhibited greater antioxidant effects. An in vitro blood-brain barrier permeability study showed that compounds 3i and 3j are promising compounds against AD. The cytotoxicity study of compounds 3i and 3j showed non-cytotoxic with an IC(50) value of 98.29 +/- 3.98 microM and 159.68 +/- 5.53 microM against NIH/3T3 cells, respectively.

PubMedSearch : Haji_2022_Molecules_27_
PubMedID: 35408519

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Citations formats

Haji Ali S, Osmaniye D, Saglik BN, Levent S, Ozkay Y, Kaplancikli ZA (2022)
Design, Synthesis, and Evaluation of Novel 2H-Benzo[b][1,4]thiazin-3(4H)-one Derivatives as New Acetylcholinesterase Inhibitors
Molecules 27 :

Haji Ali S, Osmaniye D, Saglik BN, Levent S, Ozkay Y, Kaplancikli ZA (2022)
Molecules 27 :