Design, synthesis, and evaluation of hydrazones as dual inhibitors of ryanodine receptors and acetylcholinesterases for Alzheimer’s disease
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Molecular Biology,Biochemistry
Reference55 articles.
1. Design, synthesis, and biological activity of novel semicarbazones as potent Ryanodine receptor1 inhibitors of Alzheimer’s disease;Dai;Bioorg. Med. Chem.,2021
2. 2021 Alzheimer's disease facts and figures, Alzheimer's & Dementia 17(3) (2021) 327-406.
3. Impact of COVID-19 pandemic restrictions on community-dwelling caregivers and persons with dementia;Greenberg;Psychol. Trauma Theory Res. Pract. Policy,2020
4. Family Communication in Long-Term Care During a Pandemic: Lessons for Enhancing Emotional Experiences;Monin;Am. J. Geriatr. Psychiatry,2020
5. Promising heterocycle-based scaffolds in recent (2019–2021) anti-Alzheimer's drug design and discovery;Dorababu;Eur. J. Pharmacol.,2022
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