| Literature DB >> 33342413 |
Maja Przybyłowska1, Krystyna Dzierzbicka1, Szymon Kowalski2, Klaudia Chmielewska1, Iwona Inkielewicz-Stepniak2.
Abstract
The aim of this work is to review tacrine analogues from the last three years, which were not included in the latest review work, donepezil and galantamine hybrids from 2015 and rivastigmine derivatives from 2014. In this account, we summarize the efforts toward the development and characterization of non-toxic inhibitors of cholinesterases based on mentioned drugs with various interesting additional properties such as antioxidant, decreasing β-amyloid plaque aggregation, nitric oxide production, pro-inflammatory cytokines release, monoamine oxidase-B activity, cytotoxicity and oxidative stress in vitro and in animal model that classify these hybrids as potential multifunctional therapeutic agents for Alzheimer's disease. Moreover, herein, we have described the cholinergic hypothesis, mechanisms of neurodegeneration and current pharmacotherapy of Alzheimer's disease based on the restoration of cholinergic function through blocking enzymes that break down acetylcholine. Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.net.Entities:
Keywords: Tacrine; alzheimer's disease.; donepezil; galantamine; multifunctional cholinesterase inhibitors; rivastigmine
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Year: 2021 PMID: 33342413 PMCID: PMC8719290 DOI: 10.2174/1570159X19666201218103434
Source DB: PubMed Journal: Curr Neuropharmacol ISSN: 1570-159X Impact factor: 7.363
Structures of tacrine, donepezil and rivastigmine derivatives and their biological activities.
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| Antioxidant activity, protective properties against the injury caused by H2O2 | [ |
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| Promising | [ |
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| Inhibitory potency against PAS and AChE-induced Aβ aggregation, ability to induce S-phase post-treatment | [ |
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| Inhibitory potency against Aβ self-aggregation at the level of 47% at 20 µM, antioxidant properties towards PC12 cells from CoCl2-damage | [ |
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| Neuroprotective activity towards SH-SY5Y cells against rotenone plus oligomycin-A or okadaic acid | [ |
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| Antioxidant properties, inhibition of Aβ1-42 aggregation, neuroprotection of SH-SY5Y in the presence of H2O2 | [ |
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| Inhibition of self-/Cu-induced Aβ aggregation, radical scavenging capacity and metal chelating properties (Fe, Cu, Zn), neuroprotection in SH-SY5Y cells treated with Aβ1-42 ascorbate/iron stressors | [ |
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| Inhibition of Aβ self-aggregation amelioration, the impairment of memory in mice models treated with scopolamine in the Morris water maze test | [ |
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| Inhibition of Aβ aggregation | [ |
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| Antioxidant activity and neuroprotection against Aβ1-40 in SH-SY5Y cells | [ |
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| Improvement of cognitive and locomotor activity in a mouse model with AD in the step-through test and open field test, an increase of the amount of H2S in hippocampus, decrease mRNA expression of the proinflammatory cytokines, TNF-α, IL-6, and IL-1β and increase synapse-associated in the hippocampus of tested mice | [ |
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| Inhibition of Aβ42 self-aggregation, neuroprotection in rats neurons in a serum and K+ deprivation model | [ |
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| Ability to cross the BBB | [ |
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| Inhibition of hMAO A, and MAO-B, | [ |
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| Strong antioxidant effect with the oxygen radical absorbance capacity | [ |
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| Inhibition of MAO-B and | [ |
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| Inhibitory activity against hMAO-B, self-induced and hAChE-induced Aβ aggregation, antioxidant properties, the neuroprotective effects on PC12 cells treated with H2O2 and against LPS-stimulated inflammation on BV-2 cells, ability to cross the BBB | [ |
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| Anti-inflammatory properties | [ |
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| ADME profile | [ |
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| Inhibitory activity against BACE1 and Aβ1−42 aggregation, | [ |
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| Inhibitory activity against Aβ self-aggregation and Cu2+-induced Aβ aggregation, ability to protect SH-SY5Y cells from the Aβ-induced toxicity | [ |
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| Inhibitory potency against MAO-B, ability to cross the BBB | [ |
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| Selective Cu2+ chelator in a 1:1 ratio, ability to cross the BBB | [ |
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| Inhibition of PDE9A | [ |
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| Ability to inhibit self-induced and Cu2+-induced Aβ1-42 aggregation, inhibitory activity against MAO-B, antioxidative properties, ability to chelate metals and to cross the BBB | [ |
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| Prevention from ROS in SH-SY5Y cell line | [ |
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| Anti-inflammatory and antioxidant activity in BV-2 cells, the induction of proteins expression ( | [ |
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| Antioxidative activity, selective metal chelator and neuroprotector against H2O2-induced PC12 cell injury, ability to pass the BBB | [ |
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| Prevention of Aβ self-aggregation in TEM observation, ABTS+ scavenging, and ability to chelat Cu2+ ions | [ |
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| Prevention of Aβ self-aggregation, protection of HT22 cells from glutamate and H2O2 induced cell death, scavenging free radicals and Cu2 ions chelation | [ |
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| Antioxidant activity, neuroprotection of H2O2- induced PC12 cells and Aβ1-42- induced SH-SY5Y cells, hepatoprotection of H2O2- induced LO2 cells, selective metal chelator, activity against Cu2+/hAChE/self-induced Aβ1-42 aggregation, disaggregation of Cu2+-induced Aβ1-42 aggregation, ability to pass the BBB | [ |