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Highly Pure and Expandable PSA-NCAM-Positive Neural Precursors from Human ESC and iPSC-Derived Neural Rosettes

Homogeneous culture of neural precursor cells (NPCs) derived from human pluripotent stem cells (hPSCs) would provide a powerful tool for biomedical applications. However, previous efforts to expand mechanically dissected neural rosettes for cultivation of NPCs remain concerns regarding non-neural ce...

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Autores principales: Kim, Dae-Sung, Lee, Dongjin R., Kim, Han-Soo, Yoo, Jeong-Eun, Jung, Sung Jun, Lim, Bo Young, Jang, Jiho, Kang, Hoon-Chul, You, Seungkwon, Hwang, Dong-Youn, Leem, Joong Woo, Nam, Taick Sang, Cho, Sung-Rae, Kim, Dong-Wook
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3401209/
https://www.ncbi.nlm.nih.gov/pubmed/22911689
http://dx.doi.org/10.1371/journal.pone.0039715
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author Kim, Dae-Sung
Lee, Dongjin R.
Kim, Han-Soo
Yoo, Jeong-Eun
Jung, Sung Jun
Lim, Bo Young
Jang, Jiho
Kang, Hoon-Chul
You, Seungkwon
Hwang, Dong-Youn
Leem, Joong Woo
Nam, Taick Sang
Cho, Sung-Rae
Kim, Dong-Wook
author_facet Kim, Dae-Sung
Lee, Dongjin R.
Kim, Han-Soo
Yoo, Jeong-Eun
Jung, Sung Jun
Lim, Bo Young
Jang, Jiho
Kang, Hoon-Chul
You, Seungkwon
Hwang, Dong-Youn
Leem, Joong Woo
Nam, Taick Sang
Cho, Sung-Rae
Kim, Dong-Wook
author_sort Kim, Dae-Sung
collection PubMed
description Homogeneous culture of neural precursor cells (NPCs) derived from human pluripotent stem cells (hPSCs) would provide a powerful tool for biomedical applications. However, previous efforts to expand mechanically dissected neural rosettes for cultivation of NPCs remain concerns regarding non-neural cell contamination. In addition, several attempts to purify NPCs using cell surface markers have not demonstrated the expansion capability of the sorted cells. In the present study, we show that polysialic acid-neural cell adhesion molecule (PSA-NCAM) is detected in neural rosette cells derived from hPSCs, and employ PSA-NCAM as a marker for purifying expandable primitive NPCs from the neural rosettes. PSA-NCAM-positive NPCs (termed hNPC(PSA-NCAM+)) were isolated from the heterogeneous cell population of mechanically harvested neural rosettes using magnetic-based cell sorting. The hNPC(PSA-NCAM+) extensively expressed neural markers such as Sox1, Sox2, Nestin, and Musashi-1 (80∼98% of the total cells) and were propagated for multiple passages while retaining their primitive characteristics in our culture condition. Interestingly, PSA-NCAM-negative cells largely exhibited characteristics of neural crest cells. The hNPC(PSA-NCAM+) showed multipotency and responsiveness to instructive cues towards region-specific neuronal subtypes in vitro. When transplanted into the rat striatum, hNPC(PSA-NCAM+) differentiated into neurons, astrocytes, and oligodendrocytes without particular signs of tumorigenesis. Furthermore, Ki67-positive proliferating cells and non-neural lineage cells were rarely detected in the grafts of hNPC(PSA-NCAM+) compared to those of neural rosette cells. Our results suggest that PSA-NCAM-mediated cell isolation provides a highly expandable population of pure primitive NPCs from hPSCs that will lend themselves as a promising strategy for drug screening and cell therapy for neurodegenerative disorders.
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spelling pubmed-34012092012-07-30 Highly Pure and Expandable PSA-NCAM-Positive Neural Precursors from Human ESC and iPSC-Derived Neural Rosettes Kim, Dae-Sung Lee, Dongjin R. Kim, Han-Soo Yoo, Jeong-Eun Jung, Sung Jun Lim, Bo Young Jang, Jiho Kang, Hoon-Chul You, Seungkwon Hwang, Dong-Youn Leem, Joong Woo Nam, Taick Sang Cho, Sung-Rae Kim, Dong-Wook PLoS One Research Article Homogeneous culture of neural precursor cells (NPCs) derived from human pluripotent stem cells (hPSCs) would provide a powerful tool for biomedical applications. However, previous efforts to expand mechanically dissected neural rosettes for cultivation of NPCs remain concerns regarding non-neural cell contamination. In addition, several attempts to purify NPCs using cell surface markers have not demonstrated the expansion capability of the sorted cells. In the present study, we show that polysialic acid-neural cell adhesion molecule (PSA-NCAM) is detected in neural rosette cells derived from hPSCs, and employ PSA-NCAM as a marker for purifying expandable primitive NPCs from the neural rosettes. PSA-NCAM-positive NPCs (termed hNPC(PSA-NCAM+)) were isolated from the heterogeneous cell population of mechanically harvested neural rosettes using magnetic-based cell sorting. The hNPC(PSA-NCAM+) extensively expressed neural markers such as Sox1, Sox2, Nestin, and Musashi-1 (80∼98% of the total cells) and were propagated for multiple passages while retaining their primitive characteristics in our culture condition. Interestingly, PSA-NCAM-negative cells largely exhibited characteristics of neural crest cells. The hNPC(PSA-NCAM+) showed multipotency and responsiveness to instructive cues towards region-specific neuronal subtypes in vitro. When transplanted into the rat striatum, hNPC(PSA-NCAM+) differentiated into neurons, astrocytes, and oligodendrocytes without particular signs of tumorigenesis. Furthermore, Ki67-positive proliferating cells and non-neural lineage cells were rarely detected in the grafts of hNPC(PSA-NCAM+) compared to those of neural rosette cells. Our results suggest that PSA-NCAM-mediated cell isolation provides a highly expandable population of pure primitive NPCs from hPSCs that will lend themselves as a promising strategy for drug screening and cell therapy for neurodegenerative disorders. Public Library of Science 2012-07-20 /pmc/articles/PMC3401209/ /pubmed/22911689 http://dx.doi.org/10.1371/journal.pone.0039715 Text en Kim et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kim, Dae-Sung
Lee, Dongjin R.
Kim, Han-Soo
Yoo, Jeong-Eun
Jung, Sung Jun
Lim, Bo Young
Jang, Jiho
Kang, Hoon-Chul
You, Seungkwon
Hwang, Dong-Youn
Leem, Joong Woo
Nam, Taick Sang
Cho, Sung-Rae
Kim, Dong-Wook
Highly Pure and Expandable PSA-NCAM-Positive Neural Precursors from Human ESC and iPSC-Derived Neural Rosettes
title Highly Pure and Expandable PSA-NCAM-Positive Neural Precursors from Human ESC and iPSC-Derived Neural Rosettes
title_full Highly Pure and Expandable PSA-NCAM-Positive Neural Precursors from Human ESC and iPSC-Derived Neural Rosettes
title_fullStr Highly Pure and Expandable PSA-NCAM-Positive Neural Precursors from Human ESC and iPSC-Derived Neural Rosettes
title_full_unstemmed Highly Pure and Expandable PSA-NCAM-Positive Neural Precursors from Human ESC and iPSC-Derived Neural Rosettes
title_short Highly Pure and Expandable PSA-NCAM-Positive Neural Precursors from Human ESC and iPSC-Derived Neural Rosettes
title_sort highly pure and expandable psa-ncam-positive neural precursors from human esc and ipsc-derived neural rosettes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3401209/
https://www.ncbi.nlm.nih.gov/pubmed/22911689
http://dx.doi.org/10.1371/journal.pone.0039715
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