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蚕丝丝素蛋白材料交联方法的研究进展 被引量:4

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摘要 将丝素纤维溶解、提纯后所得到的丝素蛋白,可制成粉末、纤维、薄膜、多孔支架等形态的材料,用于生物、医药、日用化工等多个领域。但这些材料若不经交联处理,则往往易溶于水,难以实际应用。近年来,国内外对蚕丝丝素蛋白材料的交联技术进行了大量的研究,研究表明,通过物理或化学途径将材料中的丝素蛋白相互间交联可以降低丝素材料在水中的溶失率,从而满足丝素材料实际应用的基本条件。
出处 《现代丝绸科学与技术》 2011年第6期242-246,共5页 Modern Silk Science & Technology
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参考文献42

  • 1Fuchs J R, Nasseri B A, Vacanti J P. Tissue engineering: a 21^st century solution to surgical reconstruction[J]. The Socie ty of Thoracic Surgeons, 2001, 72(2) : 577 591.
  • 2Chen K, lura K, Aizawa R, et al. The digestion of silk fibroin byrat[J].J SericSciJpn, 1991, 60: 402-403.
  • 3Chen K, Umeda Y, Hirabayashi K. Enzymatic hydrolysis of silk fibroin[J]. J Seric Sci Jpn, 1996, 65: 131-133.
  • 4Chen K, Arai M, Hirabayashi K J. Isolation of tyrosine from silk fibroin by enzyme hydrolysis[J]. J Seric Sei Jpn, 1996, 65: 182-184.
  • 5Kim U J, Park J, Kim H J, Wada M, Kaplan D L. Three-di- mensional aqueous-derived biomaterial scaffolds from silk fibroin[J]. Biomaterials, 2005, 26(15): 2275.
  • 6Wang Y, Kim H J, Vunjak-novakovic G, Kaplan D L. Stem cell-based tissue engineering with silk biomaterials[J]. Biomaterials, 2006, 27(36): 6064.
  • 7Dietmar W, Hutmacher. Scaffolds in tissue engineering bone and cartilage[J].Biomaterials, 2000, 21(24): 2529-2543.
  • 8石川博,奈仓正宣.绢フィブロィソの构造と物性[J].纤维学会志,1983,39(10):353-363.
  • 9Oehi A, Hossain K S, Magoshi J, et al. Rheology and dynamic light scattering of silk fibroin solution extracted from the middle division of bombyx mori silkworm[J]. Biomacromolecules, 2002, 3(6)I 1187-1196.
  • 10Kaplan D L, Mello S M, Arcidiacono S, Fossey S, Senecal K W M. In: McGrath KKD, editor. Protein based materials. Boston: Birkhauser, 1998, 103-131.

二级参考文献73

  • 1闵思佳,陈芳芳,吴豪翔.环氧化合物与丝素蛋白化学交联凝胶的结构[J].高等学校化学学报,2005,26(5):964-967. 被引量:17
  • 2闵思佳,陈芳芳,田莉,朱良均.不同温度下环氧化合物与丝素蛋白作用形成的凝胶结构[J].蚕业科学,2005,31(2):161-165. 被引量:6
  • 3钱国坻.红外光谱在蚕丝纤维结构研究中的应用[J].苏州丝绸工学院学报,1983,3(4):26-30.
  • 4吴徵宇 田保中 等.丝素创面保护膜的性能和应用.第三届中国国际丝绸会议论文集[M].,1996.79.
  • 5[1]Wu C Y, Tian B Z, et al. Properties and applications of wound protective membrane made from fibroin, Third International Silk Conference, China, Suzhou, 1996.
  • 6[2]Minoura N, Aiba S I, Higuchi M. Biochemical and Biophysical Research Communications, 1995, 208(2): 511~516.
  • 7[3]Tsukada M, Gotoh Y, Nagura, M, et al. Journal of Polymer Science, Part B: Polymer Physics, 1994, 32(5): 961~968.
  • 8[4]Agarwal N, Hoagland D A, Farris R J. Journal of Applied Polymer Science, 1997, 63(3): 401~410.
  • 9[5]Wayne M S, Lynne S A, Stephen F A, et al. Langmuir, 1993, 9(7): 1857~1861.
  • 10[7]Handbook of Proton-NMR Spectra and Data, Volume 1, Asahi Research Center Co., Ltd. Japan: Academic Press,Inc. 1985.

共引文献154

同被引文献44

  • 1李贺敏,金华,朱红军.聚乙二醇缩水甘油醚的合成[J].精细化工中间体,2005,35(2):45-47. 被引量:9
  • 2Danielle N Rockwood, Rucsanda C Preda, Tuna Ytieel, et al. Materials fabrication from bombyx mori silk fibroin [J]. Nature,2011,6:1612- 1631.
  • 3Khan, M M R, H Morikawa, et al. Structural characteristics and properties of bomhyx mori silk fiber obtained by differ- ent artificial forcibly silking speeds [J]. International Jour- nal of Biological Macromolecules, 2008,42 (3) : 264 -270.
  • 4Wei Tao, I.i Mingzhong, Zhao Chunxia. Structure and prop erties of regenerated antheraea pernyi silk fibroin in aqueous solution [J]. International Journal of Biological Macromole cules,2007,40(5) : 472 -478.
  • 5He Jianxin, Wang Yan, Cui Shizhong, et al. Structure and properties of silk {ibroin/carboxymethyl chitosan blend films [J]. Polymer Bulletin, 2010,65 (4) : 395- 409.
  • 6Murphy, A R,P S John, et al. Modification of silk fibroin u- sing diazonium coupling chemistry and the effects on hMSC proliferation and differentiation[J]. Biomaterials, 2008,29 : 2829- 2838.
  • 7He Jianxin, Wang Yan, Cui Shizhong, et al. Structure and miscibility of tussah silk fibroin /carboxymethyl chitosan blend films [J]. Iranian Polymer Journal, 2010,19 (8):625 -633.
  • 8Lu Qiang, Hu Xiao, Wang Xiaoqin, et al. Water-insoluble silk films with silk I structure [J]. Acta Biomaterialia, 2010,6(4) :1380-1387.
  • 9CHERT K, UMEDA Y, HIRABAYASHI K. Enzymatic hydrolysis of silk fibroin[J]. J Seric Sci Jpn,1996,65(2):131-133.
  • 10KIM U J, PARK J, KIM H J, et al. Three-dimensional aqueous-derived biomaterial scaffolds from silk fibroin[ J ]. Biomaterials ,2005,26( 15 ) :2275-2785.

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