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Induced Neural Stem Cells Protect Neuronal Cells against Apoptosis

BACKGROUND: Neuronal cells are vulnerable to many stresses that can cause apoptosis. Reprogramming of fibroblasts into induced neural stem cells (iNSCs) is a potentially unlimited source of neurons. Discovering agents that can provide neuronal protection against these apoptotic stimuli is important...

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Autores principales: Kim, Jin Hee, Lee, Jangbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Scientific Literature, Inc. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4280057/
https://www.ncbi.nlm.nih.gov/pubmed/25554259
http://dx.doi.org/10.12659/MSM.891343
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author Kim, Jin Hee
Lee, Jangbo
author_facet Kim, Jin Hee
Lee, Jangbo
author_sort Kim, Jin Hee
collection PubMed
description BACKGROUND: Neuronal cells are vulnerable to many stresses that can cause apoptosis. Reprogramming of fibroblasts into induced neural stem cells (iNSCs) is a potentially unlimited source of neurons. Discovering agents that can provide neuronal protection against these apoptotic stimuli is important for developing therapeutic strategies for various brain diseases. MATERIAL/METHODS: We investigated the therapeutic effects of iNSCs against apoptosis activator II (AAII)-induced apoptosis of cortical neuronal cells. Apoptosis was confirmed by double immunocytochemistry with NeuN and 4′,6-diamidino-2-phenylindole using terminal deoxynucleotidyl transferase-mediated digoxigenin-dUTP-biotin nick-end labeling. We performed Western blot analyses for activated caspase-3, Bcl-2, phosphorylated Akt, and phosphorylated extracellular signal-regulated protein kinase (ERK). The level of vascular endothelial growth factor (VEGF) was analyzed using enzyme-linked immunosorbent assays (P<0.05). RESULTS: Cortical neuronal cells cultured with iNSCs had fewer apoptotic cells than those cultured without iNSCs. We found that cells cultured with iNSCs had a significantly lower caspase-3 level and a significantly higher Bcl-2 level than cells cultured without iNSCs. Cells cultured with iNSCs had higher VEGF levels than cells cultured without iNSCs. The levels of phosphorylated Akt and phosphorylated ERK were significantly higher in cells cultured with iNSCs than in cells cultured without iNSCs. CONCLUSIONS: Our findings suggest that iNSCs activate Akt and ERK, which are associated with the inhibition of neuronal apoptosis. Thus, treatment with iNSCs may help reduce neuronal loss in brain disease. Further studies aimed at proving this hypothesis might help establish therapeutic agents that can prevent neuronal cell death and help cure neurodegenerative diseases.
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spelling pubmed-42800572015-01-06 Induced Neural Stem Cells Protect Neuronal Cells against Apoptosis Kim, Jin Hee Lee, Jangbo Med Sci Monit Molecular Biology BACKGROUND: Neuronal cells are vulnerable to many stresses that can cause apoptosis. Reprogramming of fibroblasts into induced neural stem cells (iNSCs) is a potentially unlimited source of neurons. Discovering agents that can provide neuronal protection against these apoptotic stimuli is important for developing therapeutic strategies for various brain diseases. MATERIAL/METHODS: We investigated the therapeutic effects of iNSCs against apoptosis activator II (AAII)-induced apoptosis of cortical neuronal cells. Apoptosis was confirmed by double immunocytochemistry with NeuN and 4′,6-diamidino-2-phenylindole using terminal deoxynucleotidyl transferase-mediated digoxigenin-dUTP-biotin nick-end labeling. We performed Western blot analyses for activated caspase-3, Bcl-2, phosphorylated Akt, and phosphorylated extracellular signal-regulated protein kinase (ERK). The level of vascular endothelial growth factor (VEGF) was analyzed using enzyme-linked immunosorbent assays (P<0.05). RESULTS: Cortical neuronal cells cultured with iNSCs had fewer apoptotic cells than those cultured without iNSCs. We found that cells cultured with iNSCs had a significantly lower caspase-3 level and a significantly higher Bcl-2 level than cells cultured without iNSCs. Cells cultured with iNSCs had higher VEGF levels than cells cultured without iNSCs. The levels of phosphorylated Akt and phosphorylated ERK were significantly higher in cells cultured with iNSCs than in cells cultured without iNSCs. CONCLUSIONS: Our findings suggest that iNSCs activate Akt and ERK, which are associated with the inhibition of neuronal apoptosis. Thus, treatment with iNSCs may help reduce neuronal loss in brain disease. Further studies aimed at proving this hypothesis might help establish therapeutic agents that can prevent neuronal cell death and help cure neurodegenerative diseases. International Scientific Literature, Inc. 2014-12-22 /pmc/articles/PMC4280057/ /pubmed/25554259 http://dx.doi.org/10.12659/MSM.891343 Text en © Med Sci Monit, 2014 This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License
spellingShingle Molecular Biology
Kim, Jin Hee
Lee, Jangbo
Induced Neural Stem Cells Protect Neuronal Cells against Apoptosis
title Induced Neural Stem Cells Protect Neuronal Cells against Apoptosis
title_full Induced Neural Stem Cells Protect Neuronal Cells against Apoptosis
title_fullStr Induced Neural Stem Cells Protect Neuronal Cells against Apoptosis
title_full_unstemmed Induced Neural Stem Cells Protect Neuronal Cells against Apoptosis
title_short Induced Neural Stem Cells Protect Neuronal Cells against Apoptosis
title_sort induced neural stem cells protect neuronal cells against apoptosis
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4280057/
https://www.ncbi.nlm.nih.gov/pubmed/25554259
http://dx.doi.org/10.12659/MSM.891343
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