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Asymptomatic neurotoxicity of amyloid β-peptides (Aβ(1-42) and Aβ(25-35)) on mouse embryonic stem cell-derived neural cells

One of the strategies in the establishment of in vitro oxidative stress models for neurodegenerative diseases, such as Alzheimer’s disease (AD), is to induce neurotoxicity by amyloid beta (Aβ) peptides in suitable neural cells. Presently, data on the neurotoxicity of Aβ in neural cells differentiate...

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Autores principales: Mansor, Nur Izzati, Ntimi, Carolindah Makena, Abdul-Aziz, Noraishah Mydin, Ling, King-Hwa, Adam, Aishah, Rosli, Rozita, Hassan, Zurina, Nordin, Norshariza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Association of Basic Medical Sciences of Federation of Bosnia and Herzegovina 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7861624/
https://www.ncbi.nlm.nih.gov/pubmed/32156249
http://dx.doi.org/10.17305/bjbms.2020.4639
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author Mansor, Nur Izzati
Ntimi, Carolindah Makena
Abdul-Aziz, Noraishah Mydin
Ling, King-Hwa
Adam, Aishah
Rosli, Rozita
Hassan, Zurina
Nordin, Norshariza
author_facet Mansor, Nur Izzati
Ntimi, Carolindah Makena
Abdul-Aziz, Noraishah Mydin
Ling, King-Hwa
Adam, Aishah
Rosli, Rozita
Hassan, Zurina
Nordin, Norshariza
author_sort Mansor, Nur Izzati
collection PubMed
description One of the strategies in the establishment of in vitro oxidative stress models for neurodegenerative diseases, such as Alzheimer’s disease (AD), is to induce neurotoxicity by amyloid beta (Aβ) peptides in suitable neural cells. Presently, data on the neurotoxicity of Aβ in neural cells differentiated from stem cells are limited. In this study, we attempted to induce oxidative stress in transgenic 46C mouse embryonic stem cell-derived neurons via treatment with Aβ peptides (Aβ(1-42) and Aβ(25-35)). 46C neural cells were generated by promoting the formation of multicellular aggregates, embryoid bodies in the absence of leukemia inhibitory factor, followed by the addition of all-trans retinoic acid as the neural inducer. Mature neuronal cells were exposed to different concentrations of Aβ(1-42) and Aβ(25-35) for 24 h. Morphological changes, cell viability, and intracellular reactive oxygen species (ROS) production were assessed. We found that 100 μM Aβ(1-42) and 50 μM Aβ(25-35) only promoted 40% and 10%, respectively, of cell injury and death in the 46C-derived neuronal cells. Interestingly, treatment with each of the Aβ peptides resulted in a significant increase of intracellular ROS activity, as compared to untreated neurons. These findings indicate the potential of using neurons derived from stem cells and Aβ peptides in generating oxidative stress for the establishment of an in vitro AD model that could be useful for drug screening and natural product studies.
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spelling pubmed-78616242021-02-05 Asymptomatic neurotoxicity of amyloid β-peptides (Aβ(1-42) and Aβ(25-35)) on mouse embryonic stem cell-derived neural cells Mansor, Nur Izzati Ntimi, Carolindah Makena Abdul-Aziz, Noraishah Mydin Ling, King-Hwa Adam, Aishah Rosli, Rozita Hassan, Zurina Nordin, Norshariza Bosn J Basic Med Sci Research Article One of the strategies in the establishment of in vitro oxidative stress models for neurodegenerative diseases, such as Alzheimer’s disease (AD), is to induce neurotoxicity by amyloid beta (Aβ) peptides in suitable neural cells. Presently, data on the neurotoxicity of Aβ in neural cells differentiated from stem cells are limited. In this study, we attempted to induce oxidative stress in transgenic 46C mouse embryonic stem cell-derived neurons via treatment with Aβ peptides (Aβ(1-42) and Aβ(25-35)). 46C neural cells were generated by promoting the formation of multicellular aggregates, embryoid bodies in the absence of leukemia inhibitory factor, followed by the addition of all-trans retinoic acid as the neural inducer. Mature neuronal cells were exposed to different concentrations of Aβ(1-42) and Aβ(25-35) for 24 h. Morphological changes, cell viability, and intracellular reactive oxygen species (ROS) production were assessed. We found that 100 μM Aβ(1-42) and 50 μM Aβ(25-35) only promoted 40% and 10%, respectively, of cell injury and death in the 46C-derived neuronal cells. Interestingly, treatment with each of the Aβ peptides resulted in a significant increase of intracellular ROS activity, as compared to untreated neurons. These findings indicate the potential of using neurons derived from stem cells and Aβ peptides in generating oxidative stress for the establishment of an in vitro AD model that could be useful for drug screening and natural product studies. Association of Basic Medical Sciences of Federation of Bosnia and Herzegovina 2021-02 /pmc/articles/PMC7861624/ /pubmed/32156249 http://dx.doi.org/10.17305/bjbms.2020.4639 Text en Copyright: © The Author(s) (2021) http://creativecommons.org/licenses/by/4.0 This work is licensed under a Creative Commons Attribution 4.0 International License
spellingShingle Research Article
Mansor, Nur Izzati
Ntimi, Carolindah Makena
Abdul-Aziz, Noraishah Mydin
Ling, King-Hwa
Adam, Aishah
Rosli, Rozita
Hassan, Zurina
Nordin, Norshariza
Asymptomatic neurotoxicity of amyloid β-peptides (Aβ(1-42) and Aβ(25-35)) on mouse embryonic stem cell-derived neural cells
title Asymptomatic neurotoxicity of amyloid β-peptides (Aβ(1-42) and Aβ(25-35)) on mouse embryonic stem cell-derived neural cells
title_full Asymptomatic neurotoxicity of amyloid β-peptides (Aβ(1-42) and Aβ(25-35)) on mouse embryonic stem cell-derived neural cells
title_fullStr Asymptomatic neurotoxicity of amyloid β-peptides (Aβ(1-42) and Aβ(25-35)) on mouse embryonic stem cell-derived neural cells
title_full_unstemmed Asymptomatic neurotoxicity of amyloid β-peptides (Aβ(1-42) and Aβ(25-35)) on mouse embryonic stem cell-derived neural cells
title_short Asymptomatic neurotoxicity of amyloid β-peptides (Aβ(1-42) and Aβ(25-35)) on mouse embryonic stem cell-derived neural cells
title_sort asymptomatic neurotoxicity of amyloid β-peptides (aβ(1-42) and aβ(25-35)) on mouse embryonic stem cell-derived neural cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7861624/
https://www.ncbi.nlm.nih.gov/pubmed/32156249
http://dx.doi.org/10.17305/bjbms.2020.4639
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