期刊文献+

Preparation and Activity of a Nanometer Anti-microbial Polyurethane

Preparation and Activity of a Nanometer Anti-microbial Polyurethane
下载PDF
导出
摘要 A novel way for photo-immobilization with interferon- α(IFN- α) on the surface of polyurethane (PU) material, which makes PU condom more effective function in the future, was investigated. A kind of photoactive arylazide-4-azidobenzoic acid was modified to IFN- α with the confirmation of IR and Raman spectrum. Micro morphology of the photo-immobilized cell factors was observed by FESEM as well as CSLM at the level of nanometer. Finally, the product with elementary test of anti-microbial was also evaluated. A novel way for photo-immobilization with interferon- α(IFN- α) on the surface of polyurethane (PU) material, which makes PU condom more effective function in the future, was investigated. A kind of photoactive arylazide-4-azidobenzoic acid was modified to IFN- α with the confirmation of IR and Raman spectrum. Micro morphology of the photo-immobilized cell factors was observed by FESEM as well as CSLM at the level of nanometer. Finally, the product with elementary test of anti-microbial was also evaluated.
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2009年第4期540-545,共6页 武汉理工大学学报(材料科学英文版)
基金 Funded by the Guangdong Technology Projects (No.2006B35802003) the Natural Science Foundation of Guangdong Province (No.8451063101000345) the Opening Project of MOE Key laboratory of Laser Life Science, South China Normal University, Guangzhou 510631, China
关键词 polyurethane (PU) interferon-α (IFN- α) photo-immobilization ANTI-MICROBIAL polyurethane (PU) interferon-α (IFN- α) photo-immobilization anti-microbial
  • 相关文献

参考文献2

二级参考文献27

  • 1黎荣松,生物化学与生物物理进展,1990年,17卷,188页
  • 2Dalby M J,Giannaras D,Riehle MO,et al.Rapid fibroblast adhesion to 27nm high polymer demixed nano-topography[J].Biomaterials,2004,25(1):77.
  • 3Gallagher JO,Gallagher JO,Mcghee KF,et al.Interaction of animal cells with ordered nano-topography[J].IEEE Trans Nanobioscience,2002,3(1):24.
  • 4Curtis AS,Gadegaard N,Dalby M J,et al.Cells react to nanoscale order and symmetry in their surroundings[J].IEEE Trans Nanobioscience,2004,3(1):61.
  • 5Shin M,Yoshimoto H,Vacanti JP.In vivo bone tissue engineering using mesenchymal stem cells on a novel electrospun nanofibrous scaffold[J].Tissue Eng,2004,10(1-2):33.
  • 6Min BM,Lee G,Kim SH,et al.Electrospinning of silk fibroin nanofibers and its effect on the adhesion and spreading of normal human keratinocytes and fibroblasts in vitro.Biomaterials[J].2004,25(7-8):1289.
  • 7Xu CY,Inai R,Kotaki M,et al.Aligned biodegradable nanofibrous structure:a potential scaffold for blood vessel engineering[J].Biomaterials,2004,25(5):877.
  • 8Mo XM,Xu CY,Kotaki M,et al.Electrospun P(LLA-CL)nanofiber a biomimetic extracellular matrix for smooth muscle cell and endothelial cell proliferation.Biomaterials[J].2004,25(10):1883.
  • 9Silva GA,Czeisler C,Niece KL,et al.Selective differentiation of neural progenitor cells by high-epitope density nanofibers[J].Science,2004,303(5662):1352.
  • 10Price RL,Waid MC,Haberstroh KM,et al.Selective bone cell adhesion on formulations containing carbon nanofibers[J].Biomaterials,2003,24(11):1877.

共引文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部