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Generation of Integration-Free Induced Neurons Using Graphene Oxide-Polyethylenimine

Cited 31 time in Web of Science Cited 30 time in Scopus
Authors

Baek, Soonbong; Oh, Jaesur; Song, Juhyun; Choi, Hwan; Yoo, Junsang; Park, Gui-Yeon; Han, Jin; Chang, Yujung; Park, Hanseul; Kim, Hongwon; Cho, Ssang-Goo; Kim, Byung-Soo; Kim, Jongpil

Issue Date
2017-02
Publisher
Wiley - V C H Verlag GmbbH & Co.
Citation
Small, Vol.13 No.5, p. 1601993
Abstract
Direct conversion of somatic cells into induced neurons (iNs) without inducing pluripotency has great therapeutic potential for treating central nervous system diseases. Reprogramming of somatic cells to iNs requires the introduction of several factors that drive cell-fate conversion, and viruses are commonly used to deliver these factors into somatic cells. However, novel gene-delivery systems that do not integrate transgenes into the genome are required to generate iNs for safe human clinical applications. In this study, it is investigated whether graphene oxide-polyethylenimine (GO-PEI) complexes are an efficient and safe system for messenger RNA delivery for direct reprogramming of iNs. The GO-PEI complexes show low cytotoxicity, high delivery efficiency, and directly converted fibroblasts into iNs without integrating factors into the genome. Moreover, in vivo transduction of reprogramming factors into the brain with GO-PEI complexes facilitates the production of iNs that alleviated Parkinson's disease symptoms in a mouse model. Thus, the GO-PEI delivery system may be used to safely obtain iNs and could be used to develop direct cell reprogramming-based therapies for neurodegenerative diseases.
ISSN
1613-6810
URI
https://hdl.handle.net/10371/204267
DOI
https://doi.org/10.1002/smll.201601993
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  • College of Engineering
  • School of Chemical and Biological Engineering
Research Area biomaterials, nanomedicine, regenerative medicine

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