scholarly journals Graveoline Analogs Exhibiting Selective Acetylcholinesterase Inhibitory Activity as Potential Lead Compounds for the Treatment of Alzheimer’s Disease

Molecules ◽  
2016 ◽  
Vol 21 (2) ◽  
pp. 132 ◽  
Author(s):  
Zeng Li ◽  
Chaoyu Mu ◽  
Bin Wang ◽  
Juan Jin
2018 ◽  
Vol 8 (4) ◽  
pp. 7-12
Author(s):  
Huan Tran The ◽  
Dao Tran Thanh

Background: Inhibition of acetylcholinesterase are regarded as one of promising approach to treat Alzheimer’s disease. Hesperetin is a potential flavonoid for further development in this direction. Objectives: Semi-synthesized and assayed for hesperetin derivatives’s acetylcholinesterase inhibitory activity in vitro. Materials and methods: Ester and ether derivatives of hesperetin were semi-synthesized. The semi-synthesis compounds were tested for acetylcholinesterase inhibitory activity in vitro according to the Ellman’s method. Results: Hesperetin is obtained by hydrolysing hesperidin. Then, two ester and two ether derivatives were semi-synthesized from hesperetin. The results showed that some of the semi-synthesis hesperetin derivatives displayed stronger acetylcholinesterase inhibitory activity than hesperetin. Among them, derivative 1 has the best activity with an IC50 value of 43.50 μM. Conclusions: Four hesperetin derivatives were semi-synthesized and investigated their acetylcholinesterase inhibitory activity, some of which showed improvement in activity. Key words: Hesperetin, semi-synthesis, inhibit, enzyme, acetylcholinesterase


2021 ◽  
Vol 13 (26) ◽  
pp. 45-49
Author(s):  
Fernanda Granja da Silva Oliveira ◽  
Bruno de Oliveira Veras ◽  
Juliane Maria Dos Santos Silva ◽  
Deyzi Caroline da Silva Barbosa ◽  
Tayane de Cássia Dias Mendes Silva ◽  
...  

2017 ◽  
Vol 15 (1) ◽  
pp. 332-343 ◽  
Author(s):  
Karolina A. Wojtunik-Kulesza ◽  
Katarzyna Targowska-Duda ◽  
Katarzyna Klimek ◽  
Grażyna Ginalska ◽  
Krzysztof Jóźwiak ◽  
...  

AbstractAlzheimer’s disease (AD) is by far the most prevalent of all known forms of dementia. Despite wide-spread research, the main causes of emergence and development of AD have not been fully recognized. Natural, low-molecular, lipophilic terpenoids constitute an interesting group of secondary plant metabolites, that exert biological activities of possible use in the prevention and treatment of AD. In order to identify secondary metabolites possessing both antioxidant activity and the potential to increase the level of acetylcholine, selected terpenoids have been screened for possible acetylcholinesterase inhibitory activity by use of two methods, namely Marston (chromatographic assay) and Ellman (spectrophotometric assay). In order to describe the interaction between terpenes and AChE active gorge, molecular docking simulations were performed. Additionally, all analyzed terpenes were also evaluated for their cytotoxic properties against two normal cell lines using MTT assay. The obtained results show that: carvone (6), pulegone (8) and γ-terpinene (7) possess desirable AChE inhibitory activity. MTT assay revealed low or lack of cytotoxicity of these metabolites. Thus, among the investigated terpenes, carvone (6), pulegone (8) and y-terpinene (7) can be recognized as compounds with most promising activities in the development of multi-target directed ligands.


Molecules ◽  
2019 ◽  
Vol 24 (13) ◽  
pp. 2392 ◽  
Author(s):  
Derya Osmaniye ◽  
Begüm Nurpelin Sağlık ◽  
Ulviye Acar Çevik ◽  
Serkan Levent ◽  
Betül Kaya Çavuşoğlu ◽  
...  

Alzheimer’s disease (AD) is the most common of the degenerative brain diseases and is described together with the impairment of cognitive function. Patients with AD lose the capability to code new memories, and life conditions are extremely difficult. The development of new drugs in this area continues at a great pace. A novel series of thiazole-piperazine hybrids, aimed against Alzheimer’s disease (AD), have been synthesized. The structure identification of synthesized compounds was elucidated by 1HNMR, 13C-NMR, and LCMSMS spectroscopic methods. The inhibitory potential of the synthesized compounds on cholinesterase enzymes was investigated. The compounds 3a, 3c and 3i showed significant inhibitory activity on the acetylcholinesterase (AChE) enzyme. On the other hand, none of the compounds showed significant inhibitory activity on the butyrylcholinesterase (BChE) enzyme. In addition to enzyme inhibition studies, enzyme kinetic studies were performed to observe the effects of the most active inhibitor compounds on the substrate–enzyme relationship. In addition to in vitro tests, docking studies also indicated that compound 3c potentially acts as a dual binding site AChE inhibitor.


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