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RGD 改性聚醚氨酯及其内皮细胞相容性的研究

Translated title of the contribution: Surface Modification of Poly(ether urethane) Membrane with RGD and Its Cytocompatibility of Human Endothelial Cell
  • 余贯华
  • , 计剑*
  • , 王东安
  • , 沈家骢
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

"X-PEO-MDI-PEO-X"-type pentablock coupling copolymers were specially designed as the surface additives for poly(ether urethane) (PEU). When the pentablock coupling polymers were blended with PEU, ATR-FTIR indicates that the middle blocks (diphenylmethane diisocyanate (MDI) of the pentablock copolymers could incorporate with the hard blocks of PEU chains through hydrogen binding, which improved the stability of the "X-PEO-MDI-PEO-X". Based on the special hydrogen binding stabilization and self-migration of "X-PEO-MDI-PEO-X", RGD presenting surfaces were developed via two different methods. The first approach involved directly blending of RGD-tethered poly(ethylene oxide)-MDI-poly(ethylene oxide)-RGD in PEU. In the second approach, the mesyl-PEO-MDI-PEO-mesyl were non-covalently introduced onto the PEU surfaces by dip coating, upon which the RGD was covalently immobilized in situ by cleavage of the original mesyl end groups. The human endothelial cell tests indicate that the RGD presenting films modified by both method could promote endothelial cells attachment and growth significantly. And the cytocompatibility of PEU modified by the first method was better than that by the second method. The two simple methods of surface treatment may have a potential for tissue engineering and other biomedical applications.
Translated title of the contributionSurface Modification of Poly(ether urethane) Membrane with RGD and Its Cytocompatibility of Human Endothelial Cell
Original languageChinese (Simplified)
Pages (from-to)1156-1161
Journal高等学校化学学报
Volume26
Issue number6
Publication statusPublished - Jun 2005
Externally publishedYes

Research Keywords

  • 氢键
  • RGD
  • 聚醚氨酯
  • 表面改性
  • 细胞相容性
  • Hydrogen binding
  • Poly(ether urethane)
  • Surface modification
  • Cytocompatibility

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