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Exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in Alzheimer’s disease cell and mouse models

Microtubule‐associated protein Tau, abundant in the central nervous system (CNS), plays crucial roles in microtubule assembly and stabilization. Abnormal Tau phosphorylation and aggregation are a common pathogenic hallmark in Alzheimer's disease (AD). Hyperphosphorylation of Tau could change it...

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Autores principales: Lin, Te‐Hsien, Chiu, Ya‐Jen, Lin, Chih‐Hsin, Lin, Chung‐Yin, Chao, Chih‐Ying, Chen, Yu‐Chieh, Yang, Shu‐Mei, Lin, Wenwei, Mei Hsieh‐Li, Hsiu, Wu, Yih‐Ru, Chang, Kuo‐Hsuan, Lee‐Chen, Guey‐Jen, Chen, Chiung‐Mei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7433010/
https://www.ncbi.nlm.nih.gov/pubmed/32496635
http://dx.doi.org/10.1111/acel.13169
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author Lin, Te‐Hsien
Chiu, Ya‐Jen
Lin, Chih‐Hsin
Lin, Chung‐Yin
Chao, Chih‐Ying
Chen, Yu‐Chieh
Yang, Shu‐Mei
Lin, Wenwei
Mei Hsieh‐Li, Hsiu
Wu, Yih‐Ru
Chang, Kuo‐Hsuan
Lee‐Chen, Guey‐Jen
Chen, Chiung‐Mei
author_facet Lin, Te‐Hsien
Chiu, Ya‐Jen
Lin, Chih‐Hsin
Lin, Chung‐Yin
Chao, Chih‐Ying
Chen, Yu‐Chieh
Yang, Shu‐Mei
Lin, Wenwei
Mei Hsieh‐Li, Hsiu
Wu, Yih‐Ru
Chang, Kuo‐Hsuan
Lee‐Chen, Guey‐Jen
Chen, Chiung‐Mei
author_sort Lin, Te‐Hsien
collection PubMed
description Microtubule‐associated protein Tau, abundant in the central nervous system (CNS), plays crucial roles in microtubule assembly and stabilization. Abnormal Tau phosphorylation and aggregation are a common pathogenic hallmark in Alzheimer's disease (AD). Hyperphosphorylation of Tau could change its conformation and result in self‐aggregation, increased oxidative stress, and neuronal death. In this study, we examined the potential of licochalcone A (a natural chalcone) and five synthetic derivatives (LM compounds) for inhibiting Tau misfolding, scavenging reactive oxygen species (ROS) and providing neuroprotection in human cells expressing proaggregant ΔK280 Tau(RD)‐DsRed. All test compounds were soluble up to 100 μM in cell culture media and predicted to be orally bioavailable and CNS‐active. Among them, licochalcone A and LM‐031 markedly reduced Tau misfolding and associated ROS, promoted neurite outgrowth, and inhibited caspase 3 activity in ΔK280 Tau(RD)‐DsRed 293 and SH‐SY5Y cells. Mechanistic studies showed that LM‐031 upregulates HSPB1 chaperone, NRF2/NQO1/GCLC pathway, and CREB‐dependent BDNF/AKT/ERK/BCL2 pathway in ΔK280 Tau(RD)‐DsRed SH‐SY5Y cells. Decreased neurite outgrowth upon induction of ΔK280 Tau(RD)‐DsRed was rescued by LM‐031, which was counteracted by knockdown of NRF2 or CREB. LM‐031 further rescued the downregulated NRF2 and pCREB, reduced Aβ and Tau levels in hippocampus and cortex, and ameliorated cognitive deficits in streptozocin‐induced hyperglycemic 3 × Tg‐AD mice. Our findings strongly indicate the potential of LM‐031 for modifying AD progression by targeting HSPB1 to reduce Tau misfolding and activating NRF2 and CREB pathways to suppress apoptosis and promote neuron survival, thereby offering a new drug development avenue for AD treatment.
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spelling pubmed-74330102020-08-20 Exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in Alzheimer’s disease cell and mouse models Lin, Te‐Hsien Chiu, Ya‐Jen Lin, Chih‐Hsin Lin, Chung‐Yin Chao, Chih‐Ying Chen, Yu‐Chieh Yang, Shu‐Mei Lin, Wenwei Mei Hsieh‐Li, Hsiu Wu, Yih‐Ru Chang, Kuo‐Hsuan Lee‐Chen, Guey‐Jen Chen, Chiung‐Mei Aging Cell Original Articles Microtubule‐associated protein Tau, abundant in the central nervous system (CNS), plays crucial roles in microtubule assembly and stabilization. Abnormal Tau phosphorylation and aggregation are a common pathogenic hallmark in Alzheimer's disease (AD). Hyperphosphorylation of Tau could change its conformation and result in self‐aggregation, increased oxidative stress, and neuronal death. In this study, we examined the potential of licochalcone A (a natural chalcone) and five synthetic derivatives (LM compounds) for inhibiting Tau misfolding, scavenging reactive oxygen species (ROS) and providing neuroprotection in human cells expressing proaggregant ΔK280 Tau(RD)‐DsRed. All test compounds were soluble up to 100 μM in cell culture media and predicted to be orally bioavailable and CNS‐active. Among them, licochalcone A and LM‐031 markedly reduced Tau misfolding and associated ROS, promoted neurite outgrowth, and inhibited caspase 3 activity in ΔK280 Tau(RD)‐DsRed 293 and SH‐SY5Y cells. Mechanistic studies showed that LM‐031 upregulates HSPB1 chaperone, NRF2/NQO1/GCLC pathway, and CREB‐dependent BDNF/AKT/ERK/BCL2 pathway in ΔK280 Tau(RD)‐DsRed SH‐SY5Y cells. Decreased neurite outgrowth upon induction of ΔK280 Tau(RD)‐DsRed was rescued by LM‐031, which was counteracted by knockdown of NRF2 or CREB. LM‐031 further rescued the downregulated NRF2 and pCREB, reduced Aβ and Tau levels in hippocampus and cortex, and ameliorated cognitive deficits in streptozocin‐induced hyperglycemic 3 × Tg‐AD mice. Our findings strongly indicate the potential of LM‐031 for modifying AD progression by targeting HSPB1 to reduce Tau misfolding and activating NRF2 and CREB pathways to suppress apoptosis and promote neuron survival, thereby offering a new drug development avenue for AD treatment. John Wiley and Sons Inc. 2020-06-04 2020-07 /pmc/articles/PMC7433010/ /pubmed/32496635 http://dx.doi.org/10.1111/acel.13169 Text en © 2020 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Lin, Te‐Hsien
Chiu, Ya‐Jen
Lin, Chih‐Hsin
Lin, Chung‐Yin
Chao, Chih‐Ying
Chen, Yu‐Chieh
Yang, Shu‐Mei
Lin, Wenwei
Mei Hsieh‐Li, Hsiu
Wu, Yih‐Ru
Chang, Kuo‐Hsuan
Lee‐Chen, Guey‐Jen
Chen, Chiung‐Mei
Exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in Alzheimer’s disease cell and mouse models
title Exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in Alzheimer’s disease cell and mouse models
title_full Exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in Alzheimer’s disease cell and mouse models
title_fullStr Exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in Alzheimer’s disease cell and mouse models
title_full_unstemmed Exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in Alzheimer’s disease cell and mouse models
title_short Exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in Alzheimer’s disease cell and mouse models
title_sort exploration of multi‐target effects of 3‐benzoyl‐5‐hydroxychromen‐2‐one in alzheimer’s disease cell and mouse models
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7433010/
https://www.ncbi.nlm.nih.gov/pubmed/32496635
http://dx.doi.org/10.1111/acel.13169
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