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Effect of Caffeine and Other Methylxanthines on Aβ-Homeostasis in SH-SY5Y Cells

Methylxanthines (MTX) are alkaloids derived from the purine-base xanthine. Whereas especially caffeine, the most prominent known MTX, has been formerly assessed to be detrimental, this point of view has changed substantially. MTXs are discussed to have beneficial properties in neurodegenerative dise...

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Autores principales: Janitschke, Daniel, Nelke, Christopher, Lauer, Anna Andrea, Regner, Liesa, Winkler, Jakob, Thiel, Andrea, Grimm, Heike Sabine, Hartmann, Tobias, Grimm, Marcus Otto Walter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920871/
https://www.ncbi.nlm.nih.gov/pubmed/31684105
http://dx.doi.org/10.3390/biom9110689
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author Janitschke, Daniel
Nelke, Christopher
Lauer, Anna Andrea
Regner, Liesa
Winkler, Jakob
Thiel, Andrea
Grimm, Heike Sabine
Hartmann, Tobias
Grimm, Marcus Otto Walter
author_facet Janitschke, Daniel
Nelke, Christopher
Lauer, Anna Andrea
Regner, Liesa
Winkler, Jakob
Thiel, Andrea
Grimm, Heike Sabine
Hartmann, Tobias
Grimm, Marcus Otto Walter
author_sort Janitschke, Daniel
collection PubMed
description Methylxanthines (MTX) are alkaloids derived from the purine-base xanthine. Whereas especially caffeine, the most prominent known MTX, has been formerly assessed to be detrimental, this point of view has changed substantially. MTXs are discussed to have beneficial properties in neurodegenerative diseases, however, the mechanisms of action are not completely understood. Here we investigate the effect of the naturally occurring caffeine, theobromine and theophylline and the synthetic propentofylline and pentoxifylline on processes involved in Alzheimer’s disease (AD). All MTXs decreased amyloid-β (Aβ) level by shifting the amyloid precursor protein (APP) processing from the Aβ-producing amyloidogenic to the non-amyloidogenic pathway. The α-secretase activity was elevated whereas β-secretase activity was decreased. Breaking down the molecular mechanism, caffeine increased protein stability of the major α-secretase ADAM10, downregulated BACE1 expression and directly decreased β-secretase activity. Additionally, APP expression was reduced. In line with literature, MTXs reduced oxidative stress, decreased cholesterol and a decreased in Aβ1-42 aggregation. In conclusion, all MTXs act via the pleiotropic mechanism resulting in decreased Aβ and show beneficial properties with respect to AD in neuroblastoma cells. However, the observed effect strength was moderate, suggesting that MTXs should be integrated in a healthy diet rather than be used exclusively to treat or prevent AD.
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spelling pubmed-69208712019-12-24 Effect of Caffeine and Other Methylxanthines on Aβ-Homeostasis in SH-SY5Y Cells Janitschke, Daniel Nelke, Christopher Lauer, Anna Andrea Regner, Liesa Winkler, Jakob Thiel, Andrea Grimm, Heike Sabine Hartmann, Tobias Grimm, Marcus Otto Walter Biomolecules Article Methylxanthines (MTX) are alkaloids derived from the purine-base xanthine. Whereas especially caffeine, the most prominent known MTX, has been formerly assessed to be detrimental, this point of view has changed substantially. MTXs are discussed to have beneficial properties in neurodegenerative diseases, however, the mechanisms of action are not completely understood. Here we investigate the effect of the naturally occurring caffeine, theobromine and theophylline and the synthetic propentofylline and pentoxifylline on processes involved in Alzheimer’s disease (AD). All MTXs decreased amyloid-β (Aβ) level by shifting the amyloid precursor protein (APP) processing from the Aβ-producing amyloidogenic to the non-amyloidogenic pathway. The α-secretase activity was elevated whereas β-secretase activity was decreased. Breaking down the molecular mechanism, caffeine increased protein stability of the major α-secretase ADAM10, downregulated BACE1 expression and directly decreased β-secretase activity. Additionally, APP expression was reduced. In line with literature, MTXs reduced oxidative stress, decreased cholesterol and a decreased in Aβ1-42 aggregation. In conclusion, all MTXs act via the pleiotropic mechanism resulting in decreased Aβ and show beneficial properties with respect to AD in neuroblastoma cells. However, the observed effect strength was moderate, suggesting that MTXs should be integrated in a healthy diet rather than be used exclusively to treat or prevent AD. MDPI 2019-11-02 /pmc/articles/PMC6920871/ /pubmed/31684105 http://dx.doi.org/10.3390/biom9110689 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Janitschke, Daniel
Nelke, Christopher
Lauer, Anna Andrea
Regner, Liesa
Winkler, Jakob
Thiel, Andrea
Grimm, Heike Sabine
Hartmann, Tobias
Grimm, Marcus Otto Walter
Effect of Caffeine and Other Methylxanthines on Aβ-Homeostasis in SH-SY5Y Cells
title Effect of Caffeine and Other Methylxanthines on Aβ-Homeostasis in SH-SY5Y Cells
title_full Effect of Caffeine and Other Methylxanthines on Aβ-Homeostasis in SH-SY5Y Cells
title_fullStr Effect of Caffeine and Other Methylxanthines on Aβ-Homeostasis in SH-SY5Y Cells
title_full_unstemmed Effect of Caffeine and Other Methylxanthines on Aβ-Homeostasis in SH-SY5Y Cells
title_short Effect of Caffeine and Other Methylxanthines on Aβ-Homeostasis in SH-SY5Y Cells
title_sort effect of caffeine and other methylxanthines on aβ-homeostasis in sh-sy5y cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920871/
https://www.ncbi.nlm.nih.gov/pubmed/31684105
http://dx.doi.org/10.3390/biom9110689
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