Cargando…

Sambucus williamsii induced embryonic stem cells differentiated into neurons

The pluripotent stem cells, including embryonic stem cells (ESCs), are capable of self-renewal and differentiation into any cell type, thus making them the focus of many clinical application studies. However, the efficiency of ESCs differentiated into neurons needs to improve. In this study, we trie...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Shih-Ping, Hsu, Chien-Yu, Fu, Ru-Huei, Huang, Yu-Chuen, Chen, Shih-Yin, Lin, Shinn-Zong, Shyu, Woei-Cherng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: China Medical University 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4331611/
https://www.ncbi.nlm.nih.gov/pubmed/25705583
http://dx.doi.org/10.7603/s40681-015-0003-z
_version_ 1782357748089880576
author Liu, Shih-Ping
Hsu, Chien-Yu
Fu, Ru-Huei
Huang, Yu-Chuen
Chen, Shih-Yin
Lin, Shinn-Zong
Shyu, Woei-Cherng
author_facet Liu, Shih-Ping
Hsu, Chien-Yu
Fu, Ru-Huei
Huang, Yu-Chuen
Chen, Shih-Yin
Lin, Shinn-Zong
Shyu, Woei-Cherng
author_sort Liu, Shih-Ping
collection PubMed
description The pluripotent stem cells, including embryonic stem cells (ESCs), are capable of self-renewal and differentiation into any cell type, thus making them the focus of many clinical application studies. However, the efficiency of ESCs differentiated into neurons needs to improve. In this study, we tried to increase efficiently to a neural fate in the presence of various transitional Chinese medicines through a three-step differentiation strategy. From extracts of 10 transitional Chinese medicine candidates, we determined that Sambucus williamsii (SW) extract triggers the up-regulation of Nestin and Tuj1 (neuron cells markers) gene expression levels. After determining the different concentrations of SW extract, the number of neurons in the 200 μg/ml SW extract group was higher than the control, 50, 100, and 400 μg/ml SW extract groups. In addition, the number of neurons in the 200 μg/ml SW extract group was higher and higher after each time passage (three times). We also detected the Oct4, Sox2 (stem cells markers), Tuj1, and Nestin genes expression levels by RT-PCR. In the differentiated process, Oct4 and Sox2 genes decreased while the Tuj1 and Nestin genes expression levels increased. In summary, we demonstrated that SW could induce pluripotent stem cells differentiated into neurons. Thus, SW might become a powerful material for neurons–differentiating strategies.
format Online
Article
Text
id pubmed-4331611
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher China Medical University
record_format MEDLINE/PubMed
spelling pubmed-43316112015-02-20 Sambucus williamsii induced embryonic stem cells differentiated into neurons Liu, Shih-Ping Hsu, Chien-Yu Fu, Ru-Huei Huang, Yu-Chuen Chen, Shih-Yin Lin, Shinn-Zong Shyu, Woei-Cherng Biomedicine (Taipei) Original Article The pluripotent stem cells, including embryonic stem cells (ESCs), are capable of self-renewal and differentiation into any cell type, thus making them the focus of many clinical application studies. However, the efficiency of ESCs differentiated into neurons needs to improve. In this study, we tried to increase efficiently to a neural fate in the presence of various transitional Chinese medicines through a three-step differentiation strategy. From extracts of 10 transitional Chinese medicine candidates, we determined that Sambucus williamsii (SW) extract triggers the up-regulation of Nestin and Tuj1 (neuron cells markers) gene expression levels. After determining the different concentrations of SW extract, the number of neurons in the 200 μg/ml SW extract group was higher than the control, 50, 100, and 400 μg/ml SW extract groups. In addition, the number of neurons in the 200 μg/ml SW extract group was higher and higher after each time passage (three times). We also detected the Oct4, Sox2 (stem cells markers), Tuj1, and Nestin genes expression levels by RT-PCR. In the differentiated process, Oct4 and Sox2 genes decreased while the Tuj1 and Nestin genes expression levels increased. In summary, we demonstrated that SW could induce pluripotent stem cells differentiated into neurons. Thus, SW might become a powerful material for neurons–differentiating strategies. China Medical University 2015-02-02 /pmc/articles/PMC4331611/ /pubmed/25705583 http://dx.doi.org/10.7603/s40681-015-0003-z Text en © China Medical University 2015 https://creativecommons.org/licenses/by/4.0/ Open Access This article is distributed under terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided original author(s) and source are credited.
spellingShingle Original Article
Liu, Shih-Ping
Hsu, Chien-Yu
Fu, Ru-Huei
Huang, Yu-Chuen
Chen, Shih-Yin
Lin, Shinn-Zong
Shyu, Woei-Cherng
Sambucus williamsii induced embryonic stem cells differentiated into neurons
title Sambucus williamsii induced embryonic stem cells differentiated into neurons
title_full Sambucus williamsii induced embryonic stem cells differentiated into neurons
title_fullStr Sambucus williamsii induced embryonic stem cells differentiated into neurons
title_full_unstemmed Sambucus williamsii induced embryonic stem cells differentiated into neurons
title_short Sambucus williamsii induced embryonic stem cells differentiated into neurons
title_sort sambucus williamsii induced embryonic stem cells differentiated into neurons
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4331611/
https://www.ncbi.nlm.nih.gov/pubmed/25705583
http://dx.doi.org/10.7603/s40681-015-0003-z
work_keys_str_mv AT liushihping sambucuswilliamsiiinducedembryonicstemcellsdifferentiatedintoneurons
AT hsuchienyu sambucuswilliamsiiinducedembryonicstemcellsdifferentiatedintoneurons
AT furuhuei sambucuswilliamsiiinducedembryonicstemcellsdifferentiatedintoneurons
AT huangyuchuen sambucuswilliamsiiinducedembryonicstemcellsdifferentiatedintoneurons
AT chenshihyin sambucuswilliamsiiinducedembryonicstemcellsdifferentiatedintoneurons
AT linshinnzong sambucuswilliamsiiinducedembryonicstemcellsdifferentiatedintoneurons
AT shyuwoeicherng sambucuswilliamsiiinducedembryonicstemcellsdifferentiatedintoneurons