| Title : Synthesis, Antiacetylcholinesterase Activity, and Molecular Dynamics Simulation of Aporphine-benzylpyridinium Conjugates - Khunnawutmanotham_2024_ACS.Med.Chem.Lett_15_132 |
| Author(s) : Khunnawutmanotham N , Sooknual P , Batsomboon P , Ploypradith P , Chimnoi N , Patigo A , Saparpakorn P , Techasakul S |
| Ref : ACS Med Chem Lett , 15 :132 , 2024 |
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Abstract :
A series of aporphines conjugated with an N-benzylpyridinium moiety through an amide-bond linkage were synthesized and evaluated for their acetylcholinesterase (AChE) inhibitory activity. The conjugation of the N-benzylpyridinium group significantly enhanced the AChE inhibitory activity of the core aporphine. The halogen substituents on the benzyl group affected the activity of the conjugates. Both (S)- and (R)-enantiomers of three conjugates with low IC(50) values were synthesized and evaluated for their activities. All (S)-enantiomers exhibited higher activity than the corresponding (R)-enantiomers. The (S)-enantiomer of 2-chlorobenzylpyridinium-containing aporphine was the most potent inhibitor in this study with an IC(50) value of 0.06 +/- 0.003 microM. Molecular dynamics simulation analysis revealed that both enantiomers can interact with the AChE binding site, whereas the (S)-enantiomer possessed slightly stronger interaction than the (R)-enantiomer, presumably because of their different orientations, as evidenced by molecular docking. The N-benzylpyridinium dehydroaporphine conjugates were also synthesized but were less active than the corresponding aporphine conjugates. |
| PubMedSearch : Khunnawutmanotham_2024_ACS.Med.Chem.Lett_15_132 |
| PubMedID: 38229749 |
| Inhibitor | (S)Aporphine-N-benzylpyridinium |
Khunnawutmanotham N, Sooknual P, Batsomboon P, Ploypradith P, Chimnoi N, Patigo A, Saparpakorn P, Techasakul S (2024)
Synthesis, Antiacetylcholinesterase Activity, and Molecular Dynamics Simulation of Aporphine-benzylpyridinium Conjugates
ACS Med Chem Lett
15 :132
Khunnawutmanotham N, Sooknual P, Batsomboon P, Ploypradith P, Chimnoi N, Patigo A, Saparpakorn P, Techasakul S (2024)
ACS Med Chem Lett
15 :132