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PMID: 18305158 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Highly efficient and large-scale generation of functional dopamine neurons from human embryonic stem cells.

Cho MS, Lee YE, Kim JY, Chung S, Cho YH, Kim DS, Kang SM, Lee H, Kim MH, Kim JH, Leem JW, Oh SK, Choi YM, Hwang DY, Chang JW, Kim DW

Abstract

We developed a method for the efficient generation of functional dopaminergic (DA) neurons from human embryonic stem cells (hESCs) on a large scale. The most unique feature of this method is the generation of homogeneous spherical neural masses (SNMs) from the hESC-derived neural precursors. These SNMs provide several advantages: (i) they can be passaged for a long time without losing their differentiation capability into DA neurons; (ii) they can be coaxed into DA neurons at much higher efficiency than that from previous reports (86% tyrosine hydroxylase-positive neurons/total neurons); (iii) the induction of DA neurons from SNMs only takes 14 days; and (iv) no feeder cells are required during differentiation. These advantages allowed us to obtain a large number of DA neurons within a short time period and minimized potential contamination of unwanted cells or pathogens coming from the feeder layer. The highly efficient differentiation may not only enhance the efficacy of the cell therapy but also reduce the potential tumor formation from the undifferentiated residual hESCs. In line with this effect, we have never observed any tumor formation from the transplanted animals used in our study. When grafted into a parkinsonian rat model, the hESC-derived DA neurons elicited clear behavioral recovery in three behavioral tests. In summary, our study paves the way for the large-scale generation of purer and functional DA neurons for future clinical applications.

MeSH Terms
Animals Cell Culture Techniques/methods Cell Differentiation Cell Transplantation Disease Models, Animal Dopamine Embryonic Stem Cells/cytology Humans Methods Neurons/cytology,transplantation Parkinson Disease/therapy Rats
Chemicals
Dopamine
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Cho Myung Soo
Research and Development Center, Jeil Pharmaceutical Co., Ltd., Yongin 449-861, Korea.
Lee Young-Eun
Kim Ji Young
Chung Seungsoo
Cho Yoon Hee
Kim Dae-Sung
Kang Sang-Moon
Lee Haksup
Kim Myung-Hwa
Kim Jeong-Hoon
Leem Joong Woo
Oh Sun Kyung
Choi Young Min
Hwang Dong-Youn
Chang Jin Woo
Kim Dong-Wook
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2008-03-04
Epub
2008-00-27
Pages
3392-7
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC2265201
Subset
IM
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