Enhanced Self-Renewal and Accelerated Differentiation of Human Fetal Neural Stem Cells Using Graphene Oxide Nanoparticles

  • Kim, Jin
  • Yang, Kisuk
  • Lee, Jong Seung
  • Hwang, Yong Hwa
  • Park, Hyun-Ji
  • ... Lee, Dong Yun
  • 외 2명
Citations

WEB OF SCIENCE

30
Citations

SCOPUS

31

초록

Graphene oxide (GO) has received increasing attention in bioengineering fields due to its unique biophysical and electrical properties, along with excellent biocompatibility. The application of GO nanoparticles (GO-NPs) to engineer self-renewal and differentiation of human fetal neural stem cells (hfNSCs) is reported. GO-NPs added to hfNSC culture during neurosphere formation substantially promote cell-to-cell and cell-to-matrix interactions in neurospheres. Accordingly, GONP-treated hfNSCs show enhanced self-renewal ability and accelerated differentiation compared to untreated cells, indicating the utility of GO in developing stem cell therapies for neurogenesis.

키워드

differentiationgraphene oxide nanoparticleneural stem cellself-renewalOSTEOGENIC DIFFERENTIATIONOXIDATIVE STRESSTHERAPYSCAFFOLDSURVIVALCONTACTNEURONSCANCERNICHE
제목
Enhanced Self-Renewal and Accelerated Differentiation of Human Fetal Neural Stem Cells Using Graphene Oxide Nanoparticles
저자
Kim, JinYang, KisukLee, Jong SeungHwang, Yong HwaPark, Hyun-JiPark, Kook InLee, Dong YunCho, Seung-Woo
DOI
10.1002/mabi.201600540
발행일
2017-08
유형
Article
저널명
Macromolecular Bioscience
17
8