期刊文献+

SYNTHESIS OF POLY(GLUTAMIC ACID-co-ASPARTIC ACID) VIA COMBINATION OF N-CARBOXYANHYDRIDE RING OPENING POLYMERIZATION WITH DEBENZYLATION 被引量:1

SYNTHESIS OF POLY(GLUTAMIC ACID-co-ASPARTIC ACID) VIA COMBINATION OF N-CARBOXYANHYDRIDE RING OPENING POLYMERIZATION WITH DEBENZYLATION
原文传递
导出
摘要 The random copolymers of glutamic acid (LG) and aspartic acid (ASP), poly(LG-co-ASP), with designed compositions could be successfully synthesized via combination of N-carboxyanhydride ring opening copolymerization with debenzylation. Ring opening copolymerizations of y:benzyl-L-glutamate N-carboxyanhydride (BLG-NCA) and β-benzyl-Laspartate N-carboxyanhydride (BLA-NCA) were carried out by using different amines including triethylamine (TEA), diethylamine, n-hexylamine (NHA), triphenylamine, diphenylamine or aniline as initiators. All the 6 amines were highly efficient to get well-defined poly(BLG-co-BLA) copolymers with designed compositions although the polymerizations proceeded via different mechanisms (normal amine mechanism or/and activated monomer mechanism), which are based on chemical structure of amines. The molecular weights of poly(BLG-co-BLA) copolymers could be mediated by both TEA concentration and polymerization time. Then, debenzylation ofpoly(BLG-co-BLA) copolymers was conducted to prepare the corresponding hydrophilic random eopolymers of poly(LG-co-ASP) with a-subunit structure in ASP structural units. The contents of LG structural units in poly(LG-co-ASP) copolymers matched with those of BLG-NCA in NCA-monomer feeds in ring opening copolymerizations initiated by NHA or TEA and were closed to the theoretical line. The diblock copolymer of poly(BLG-b-BLA) could also be synthesized via living NCA ring opening copolymerization by sequential addition of BLG- NCA and BLA-NCA. The random copolymers of glutamic acid (LG) and aspartic acid (ASP), poly(LG-co-ASP), with designed compositions could be successfully synthesized via combination of N-carboxyanhydride ring opening copolymerization with debenzylation. Ring opening copolymerizations of y:benzyl-L-glutamate N-carboxyanhydride (BLG-NCA) and β-benzyl-Laspartate N-carboxyanhydride (BLA-NCA) were carried out by using different amines including triethylamine (TEA), diethylamine, n-hexylamine (NHA), triphenylamine, diphenylamine or aniline as initiators. All the 6 amines were highly efficient to get well-defined poly(BLG-co-BLA) copolymers with designed compositions although the polymerizations proceeded via different mechanisms (normal amine mechanism or/and activated monomer mechanism), which are based on chemical structure of amines. The molecular weights of poly(BLG-co-BLA) copolymers could be mediated by both TEA concentration and polymerization time. Then, debenzylation ofpoly(BLG-co-BLA) copolymers was conducted to prepare the corresponding hydrophilic random eopolymers of poly(LG-co-ASP) with a-subunit structure in ASP structural units. The contents of LG structural units in poly(LG-co-ASP) copolymers matched with those of BLG-NCA in NCA-monomer feeds in ring opening copolymerizations initiated by NHA or TEA and were closed to the theoretical line. The diblock copolymer of poly(BLG-b-BLA) could also be synthesized via living NCA ring opening copolymerization by sequential addition of BLG- NCA and BLA-NCA.
出处 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2013年第12期1706-1716,共11页 高分子科学(英文版)
基金 National Natural Science Foundation of China(No.51173008)
关键词 PEPTIDE Ring opening polymerization COPOLYMER Glutamic acid Aspartic acid. Peptide Ring opening polymerization Copolymer Glutamic acid Aspartic acid.
  • 相关文献

参考文献20

  • 1Deming, T.J., J. Adv. Drug Delivery Rev., 2002, 54:1145.
  • 2Hoste, K., Sehacht, E. and Seymour, L., J. Controlled Release, 2000, 64:53.
  • 3Luts, J.E, Schutt, D. and Kubowicz, S., Macromol. Rapid Commun., 2005, 26:23.
  • 4Rong, G., Deng, M., Tang, Z., Piao, L., Chen, X. and Jing, X., Biomacromolecules, 2003, 4:1800.
  • 5Deng, C., Chen, X., Sun, J., Lu, T., Wang, W. and Jing, X., J. Polym. Sci. Part A: Polym. Chem., 2007, 45:3218.
  • 6Jiang, H.L., Tang, G.P. and Zhu, K., J. Macromol. Biosci., 2001, 1:266.
  • 7Wolk, S.K., Swift, G., Paik, Y.H., Yocom, K.M., Smith, R.L, and Simon, E.S., Macromolecules, 1994, 27:7613.
  • 8Woodward, R.B. and Schramn, C.H., J. Am. Chem. Soc., 1947, 69:1551.
  • 9Blout, E.R. and Karlson, R.H., J. Am. Chem. Soc., 1956, 78:941.
  • 10Idelson, R.H. and Blout, E.R., J. Am. Chem. Soc., 1957, 79:3948.

同被引文献3

引证文献1

二级引证文献1

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