制备异氰酸酯基封端的一系列生物降解型交联剂,研究了反应条件对产物的影响.进一步使用此生物降解交联剂制备了交联壳聚糖多孔材料,研究了所得材料的性能.结果表明,当反应温度为70℃,反应时间为3h,投料比为2.2:1时,交联剂中NCO的质量分数为4.64%,浓度为50%的THF溶液粘度为500MPa·s,其性能适宜交联壳聚糖.随着-NCO/-NH2摩尔比的增加,交联壳聚糖多孔材料表面形貌呈现出从开孔结构逐渐过渡为闭孔结构的状态,保水率基本为未交联材料的3倍,其最大拉伸强度和弹性模量均有较大提高,最大为0.17 GPa和1.4 GPa.新型交联剂由于具有可降解的PEG-b-PLA链段,不仅保证了交联壳聚糖的降解性能,改善其亲水性,也提高了材料的力学性能.
参考文献
[1] | J.A Hubbell,R.Langer,Special report:Tissue EnginBeering,C&EN,March 13,42(1995) |
[2] | N.A.Peppas,R.Langer,New challenges in biomaterials,Science,263(5154),1715(1994) |
[3] | F.W.Cooke,J.E.Lemons,B.D.Ratner,Properties of Materials in Biomaterials Science:An Introduction to Materials in Medicine(Academic Press,New York,1996) |
[4] | O.A.Monteiro,C.Airoldi,Some studies of crosslinking chitosan-glutaraldehyde interaction in a homogeneons system,International Journal of Biological Macromolecules,26(2~3),119(1999) |
[5] | C.G.Liu,G.Kashappa,H.Desai,Preparation and characterization of nanoparticles containing trypsin based on bydrophobically modified chitosan,J.Agric.Food Chem.,53(5),1728(2005) |
[6] | K.C.Gupta,F.H.Jabrail,Glutaraldehyde and glyoxal cross-linked chitosan microspheres for controlled delivery of centchroman,Carbohydrate Research,341(6),744(2006) |
[7] | R.P.Vijag,M.A.Mansoor,Preparation and characterization of freeze-dried chitoean-poly(ethylene oxide)bydrogels for site-specific antibiotic delivery in the stomach,Pharm.Res.,13,588(1996) |
[8] | Z.K.Yang,Y.Yang,Studies on the synthesis and properties of hydroxyl azacrown ether-grafted chitosan J.Appl.Polym.Sci.,82,1838(2001) |
[9] | H.S.Bae,S.M.Hudson,The cooperative binding behavior of sodium dodecyl sulfate to crosslinked chitosan films,J.Polym.Sci.A:Polym.Chem.,35,3755(1997) |
[10] | R.W.Eric,R.P.Ronald,Chitosan cross-linking with a water soluble,blocked diisocyanate.2.solvates and hydrogel-lls,Biomacromolecules,4,1357(2003) |
[11] | B.D.Ratner,A.S.Hoffman,F.J.Shoen,J.E.Lemons(eds.),Biomaterials Science:An Introduciton to Materials in Medicine(Academic Press,San Diego,1996) |
[12] | D.W.Jenkins,S.M.Hudson,Review of vinyl graft copolymerization featuring recent advances toward controlled radical-based reactions and illustrated with chitin/chitosan trunk polymers,Chem.Rev.,101(11),3245(2001) |
[13] | H.Sashiwa,N.Kawasaki,S.Aiba,Chemical modification of chitosan.Part 15:Synthesis of novel chitosan derivatives by substitution of hydrophilic amine using Nearboxyethylchitosan ethyl ester as an intermediate,Carbohydrate Res.,338(6),557(2003) |
[14] | M.Alexandra,V.Christophe,D.Alain,Rheometric study of the gelation of chitosan in aqueous solution without cross-linking agent,Biomacromolecules,6(2),653(2005) |
[15] | A.T.Metters,K.S.Anseth,C.N.Bowman,Fundamental studies of a novel,biodegradable PEG-b-PLA hydrogel,Polymer,41(11),3993(2000) |
[16] | A.T.Metters,C.N.Bowman,K.S.Anseth,Materials,interfaces.and electrochemical phenomenon:verification of scaling laws for degrading PLA-b-PEG-b-PLA hydrogels,Journal of AIChE,47(6),1432(2001) |
[17] | A.S.Sawhney,P.P.Chandrashekhar,J.A.Hubbell,Bioerodible hydrogels based on photopolymerized poly(ethylene glycol)-co-poly(a-hydroxy acid)diacrylate macromers,Macromolecules,26(4),581(1993) |
[18] | J.L.West,J.A.Hubbell,Photopolymerized hydrogel materials for drug delivery applications.Reactive Polym.,25(2~3),139(1995) |
[19] | JIANG Xin,CHEN Lianxi,HE Jianhua,Study on synthesis and purification of lactide,J.Wuhan University of Technology,24(4),42(2002)(江昕,陈连喜,贺建华等,丙交酯的合成与纯化研究,武汉理工大学学报,24(4),42(2002)) |
[20] | D.K.Han,J.A.Hubbell,Synthesis of polymer network scaffolds from 1-lactide and poly(ethylene glycol)and their interaction with cells,Macromolecules,30(20),6077(1997) |
[21] | R.L.Dunn,J.P.English,D.F.Vanderbilt,Biodegradeble tissue adhesives,Polym.Prepr.,30(1),501(1989) |
[22] | D.J.Gravet,K.D.Janda,Organie synthesis on soluble polymer supports:liquid-phase methodologies,Chem.Rev.,97(2),489(1997) |
[23] | R.W.Eric,L.S.Caroline,B.Q.Syed,Chitosan cross-linking with a water soluble,blocked diisocyanate.2.solid state,Biomacromolecules,3,1370(2002) |
[24] | WEI Hongliang,YU Huaiqing,QIAN Lijun,One-pot synthesis of macromer of PLA-PEG-PLA terminated with methacryloyl moiety,Journal of Functional Polymers,18(1),72(2005)(魏宏亮,于怀清,钱立军,一锅法合成甲基丙烯酰基封端的PLA-PEG-PLA大分子单体,功能高分子学报,18(1),72(2005)) |
[25] | J.Blanchette,N.Kavimandan,N.A.Peppas,Principles of transmucosal delivery of therapeutic agents,Biomedicine &Pharmacotherapy,58,142(2004) |
[26] | A.Ozkan.M.Yekeler.A new microcolumn flotation cell for determining the wettability and floatability of minerals,Journal of Colloid and Interface Science,261(2),476(2003) |
[27] | J.Kohn,R.Langer,Bioresortable and Bioerodible Materials(Academic Press,San Diego,1996) |
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