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1.
Bioorg Med Chem Lett ; 51: 128374, 2021 11 01.
Article in English | MEDLINE | ID: mdl-34555506

ABSTRACT

Alzheimers disease (AD) is the most common neurodegenerative disorder, characterized by neuronal loss and cognitive impairment. Currently, very few drugs are available for AD treatment, and a search for new therapeutics is urgently needed. Thus, in the current study, twenty-eight new derivatives of montanine-type Amaryllidaceae alkaloids were synthesized and evaluated for their ability to inhibit human recombinant acetylcholinesterase (hAChE) and butyrylcholinesterase (hBuChE). Three derivatives (1n, 1o, and 1p) with different substitution patterns demonstrated significant selective inhibitory potency for hAChE (IC50 < 5 µM), and one analog, 1v, showed selective hBuChE inhibition activity (IC50 = 1.73 ± 0.05 µM). The prediction of CNS availability, as disclosed by the BBB score, suggests that the active compounds in this survey should be able pass through the blood-brain barrier (BBB). Cytotoxicity screening and docking studies were carried out for the two most pronounced cholinesterase inhibitors, 1n and 1v.


Subject(s)
Alkaloids/pharmacology , Alzheimer Disease/drug therapy , Cholinesterase Inhibitors/pharmacology , Isoquinolines/pharmacology , Molecular Docking Simulation , Acetylcholinesterase/metabolism , Alkaloids/chemical synthesis , Alkaloids/chemistry , Alzheimer Disease/metabolism , Blood-Brain Barrier/drug effects , Blood-Brain Barrier/metabolism , Butyrylcholinesterase/metabolism , Cholinesterase Inhibitors/chemical synthesis , Cholinesterase Inhibitors/chemistry , Dose-Response Relationship, Drug , Humans , Isoquinolines/chemical synthesis , Isoquinolines/chemistry , Molecular Structure , Structure-Activity Relationship
2.
Molecules ; 26(5)2021 Feb 26.
Article in English | MEDLINE | ID: mdl-33652925

ABSTRACT

Two new minor Amaryllidaceae alkaloids were isolated from Hippeastrum × hybridum cv. Ferrari and Narcissus pseudonarcissus cv. Carlton. The chemical structures were identified by various spectroscopic (one- and two-dimensional (1D and 2D) NMR, circular dichroism (CD), high-resolution mass spectrometry (HRMS) and by comparison with literature data of similar compounds. Both isolated alkaloids were screened for their human acetylcholinesterase (hAChE) and butyrylcholinesterase (hBuChE) inhibition activity. One of the new compounds, a heterodimer alkaloid of narcikachnine-type, named narciabduliine (2), showed balanced inhibition potency for both studied enzymes, with IC50 values of 3.29 ± 0.73 µM for hAChE and 3.44 ± 0.02 µM for hBuChE. The accommodation of 2 into the active sites of respective enzymes was predicted using molecular modeling simulation.


Subject(s)
Alkaloids/chemistry , Amaryllidaceae Alkaloids/chemistry , Cholinesterase Inhibitors/chemistry , Cholinesterases/ultrastructure , Alkaloids/pharmacology , Alzheimer Disease , Amaryllidaceae Alkaloids/pharmacology , Butyrylcholinesterase/chemistry , Butyrylcholinesterase/ultrastructure , Catalytic Domain/drug effects , Cholinesterase Inhibitors/pharmacology , Cholinesterases/chemistry , Circular Dichroism , Humans , Molecular Docking Simulation , Molecular Structure , Structure-Activity Relationship
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