4.7 Article

Glucosylpolyphenols as Inhibitors of Aβ-Induced Fyn Kinase Activation and Tau Phosphorylation: Synthesis, Membrane Permeability, and Exploratory Target Assessment within the Scope of Type 2 Diabetes and Alzheimer's Disease

期刊

JOURNAL OF MEDICINAL CHEMISTRY
卷 63, 期 20, 页码 11663-11690

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jmedchem.0c00841

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资金

  1. European Union [GA 612347]
  2. Portuguese Foundation for Science and Technology (FCT) [SFRH/BD/93170/2013, SFRH/BD/116614/2016, PD/BD/142847/2018, SFRH/BD/145600/2019, CEECIND/03414/2018, CEECIND/02300/2017]
  3. FCT [UIDB/00100/2020, UIDB/04046/2020, UIDB/04378/2020, IF/00780/2015]
  4. FEDER through COMPETE 2020, POCI and PORL [22161]
  5. FCT through PIDDAC [22161]
  6. Direccion General de Investigacion of Spain [CTQ2016-78703-P]
  7. Junta de Andalucia [FQM134]
  8. FEDER [501100008530]
  9. Fundação para a Ciência e a Tecnologia [SFRH/BD/93170/2013, SFRH/BD/116614/2016, PD/BD/142847/2018, SFRH/BD/145600/2019] Funding Source: FCT

向作者/读者索取更多资源

Despite the rapidly increasing number of patients suffering from type 2 diabetes, Alzheimer's disease, and diabetes-induced dementia, there are no disease-modifying therapies that are able to prevent or block disease progress. In this work, we investigate the potential of nature-inspired glucosylpolyphenols against relevant targets, including islet amyloid polypeptide, glucosidases, and cholinesterases. Moreover, with the premise of Fyn kinase as a paradigm-shifting target in Alzheimer's drug discovery, we explore glucosylpolyphenols as blockers of A beta-induced Fyn kinase activation while looking into downstream effects leading to Tau hyperphosphorylation. Several compounds inhibit A beta-induced Fyn kinase activation and decrease pTau levels at 10 mu M concentration, particularly the per-O-methylated glucosylacetophloroglucinol and the 4-glucosylcatechol dibenzoate, the latter inhibiting also butyrylcholinesterase and beta-glucosidase. Both compounds are nontoxic with ideal pharmacokinetic properties for further development. This work ultimately highlights the multitarget nature, fine structural tuning capacity, and valuable therapeutic significance of glucosylpolyphenols in the context of these metabolic and neurodegenerative disorders.

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