Fabrication of nanopatterned surfaces for tissue engineering

  • Jeong, Eun Ju
  • Lee, Jin Wook
  • Yeon, Soo-Jeong
  • Lee, Jae-Won
  • Kwark, Young-Je
  • ... Lee, Kuen Yong
  • 외 3명
Citations

SCOPUS

1

초록

The surface nanotopography of polymer substrates is a critical factor to regulate cellular behavior in tissue engineering approaches. In this study, nanopatterned surfaces were generated via self-assembly of polystyrene-b- poly(ethylene oxide)/dodecylbenzenesulfonic acid complex systems to control preosteoblast phenotype in vitro. Polystyrene domain sizes under 100 nm strongly affected the adhesion, proliferation, and differentiation of preosteoblasts cultured on the surfaces, irrespective of the same center-to-center distance between the domains. This approach may provide a useful means to design and develop novel polymer substrates for tissue engineering applications.

키워드

block copolymernanopatternnanotopographypolymer surfaceself-assemblytissue engineeringCellular behaviorsCritical factorsDomain sizeIn-vitroNano patternNanopatterned surfacesNanotopographiesNovel polymersPolymer substratePolymer surfacesPreosteoblastsSurface nanotopographyTissue engineering applicationsBiotechnologyBlock copolymersPolyethylene oxidesPolymersPolystyrenesSelf assemblyTissue engineering
제목
Fabrication of nanopatterned surfaces for tissue engineering
저자
Jeong, Eun JuLee, Jin WookYeon, Soo-JeongLee, Jae-WonKwark, Young-JeRhee, Sang-HoonPark, Won HoKim, Seung HyunLee, Kuen Yong
DOI
10.1109/iCBEB.2012.220
발행일
2012-07
유형
Conference Paper
저널명
Proceedings - 2012 International Conference on Biomedical Engineering and Biotechnology, iCBEB 2012
페이지
1030 ~ 1033