欢迎登录材料期刊网

材料期刊网

高级检索

采用热致相分离(TIPS)结合冷冻干燥技术制备了聚醚酯(聚对苯二甲酸丁二醇酯-co-聚对苯二甲酸环己烷二甲醇酯-b-聚乙二醇)(PTCG)多孔支架,研究了聚合物质量浓度、粗化温度和溶剂组成等相分离参数对多孔支架形貌结构的影响.结果表明,制备出的多孔支架孔间相互贯通,支架表面(与空气接触面)的孔径大于底面(与玻璃接触面)的孔径;随着聚合物质量浓度的增大,支架的孔径和孔隙率减小.由于分相过程中热力学推动力增大和相区融合阻力增加的相互作用,孔径随着粗化温度的降低呈现先升后降的趋势,并在0℃时出现最大值.在DO中加入不良溶剂H2O,溶液分相温度的升高导致多孔支架孔径的增大.通过控制相分离参数可以制备不同形貌结构的PTCG多孔支架.

参考文献

[1] C.M.Patist,M.B.Mulder,S.E.Gautier,Freeze-dried poly(d,l-lactic acid) macroporous guidance scaffolds impregnated with brain-derived neurotrophic factor in the transected adult rat thoracic spinal cord,Biomaterials,25,1569(2004)
[2] CHEN Guanwen,ZENG Yiming,Development of porous-membrane formation methods.Membrane Science and Technology,23(4),116(2003)(陈观文,曾一鸣,膜微孔形成方法的研究进展,膜科学与技术,23(4),116(2003))
[3] C.Schugens,V.Maquet,C.Grandfils,Biodegradable and macroporous polylactide implants for cell transplantation:1.Preparation of macroporous polylactide supports by solid-liquid phase separation,Polymer,37(6),1027(1996)
[4] GAO Changyou,HU Xiaohong,GUAN Jianjun,LI An,SHEN Jiacong,Factors controlling the preparation of porous polyurethane membranes via thermally induced phase separation,Acta Polymerica Sinica,3,351(2001)(高长有,胡小红,管建均,李安,沈家骢,热致相分离技术制备聚氨酯多孔膜的条件控制,高分子学报,3,351(2001))
[5] J.J.Guan,K.L.Fujimoto,M.S.Sacks,S.Michael,W.R.Wagner,Preparation and characterization of highly porous,biodegradable polyurethane scaffolds for soft tissue applications,Biomaterials,26,3961(2005)
[6] J.H.Feng,Tae Gwan Park,Doo Sung Lee,A facile preparation of highly interconnected macroporous poly(D,L-lacticacid-co-glycolic acid) (PLGA) scaffolds by liquidliquid phase separation of a PLGA-dioxane-water ternary system,Polymer,44,1911(2003)
[7] A.R.Boccaccini,J.J.Blaker,V.Maquet,R.M.Day,R.Jér(o)me,Preparation and characterisation of poly(lactide-co-glycolide) (PLGA) and PLGA/Bioglass composite tubular foam scaffolds for tissue engineering applications.Materials Science and Engineering:C,25,23(2005)
[8] Tanaka Takaaki,Lloyd Douglas R.,Formation of poly(l-lactic acid) microfiltration membranes via thermally induced phase separation.Journal of Membrane Science,238(1~2),65(2004)
[9] Rong Zhang,Wenjian Weng,Piyi Du,Gaoling Zhao,Ge Shen,Gaorong Han,Effect of pluronic F127 on the pore structure of macrocellular biodegradable polylactide foams,Polymers for Advanced Technologies,15(17),425(2004)
[10] Kyu Chul Shin,Bong Sup Kim,Ji Heung Kim,Tae Gwan Park,Jae Do Nam,Doo Sung Lee,A facile preparation of highly interconnected macroporous PLGA scaffolds by liquid-liquid phase separation Ⅱ,Polymer,46,3801(2005)
[11] D.W.Hutmacher,Scaffolds in tissue engineering bone and cartilage,Biomaterials,21(24),2529(2000)
[12] ZHAO Peng,WANG Liancai,CHEN Liang,XITingfei,FENG Zengguo,Cytocompatibility of poly(ether-esters)block-copolymers for use in tissue engineering.Journal of Dalian University,25(2),17(2004)(赵鹏,王连才,陈亮,奚廷斐,冯增国,用于组织工程中的多(醚-脂)阻断共聚物的细胞相容性,大连大学学报,25(2),17(2004))
[13] WANG Liancai,CHEN Zhuqiong,LIU Houli,FENG Zengguo,ZHOU Jianye,Novel aliphatic-aromatic copolyesters for tissue engineering,Journal of Dalian University,25(4),34(2004)(王连才,陈祝琼,刘厚利,冯增国,周建业,新的用于组织工程的脂肪族-芳香族的共聚脂纤维,大连大学学报,25(4),34(2004))
[14] WANG Liancai,CHEN Zhuqiong,LIU Houli,LIAO Zhongkai,ZHOU Jianye,FENG Zengguo,Synthesis of PTCG poly(ether-ester) elastomer and a preliminary biocompatible evaluation.Transactions of Beijing Institute of Technology,24(5),454(2004)(王连才,陈祝琼,刘厚利,廖中恺,周建业,冯增国,可降解聚醚酯弹性体PTCG的合成及初步生物学评价,北京理工大学学报,24(5),454(2004))
[15] Wang Liancai,Wu Yingfeng,Chen liang,Gu Yongquan,Xi Tingfei,Zhang Aiying,Feng Zengguo,Fabrication and evaluation of tissue engineering vascular scaffolds based on biodegradable aliphatic-aromatic copolyesters,Current Applied Physics,5(5),557(2005)
[16] ZHANG Yong,FENG Qingling,CUI Fuzhai,FENG Zengguo,Characterization and properties of PBT-co-PCT-b-PEG segmented block copolymers with varying soft segment length.Polymer Materials Science and Engineering,21(1),180(2005)(张勇,冯庆玲,崔福斋,冯增国,不同软段长度PBT-co-PCT-b-PEG嵌段共聚物的结构与性能,高分子材料科学与工程,21(1),180(2005))
[17] Yong Zhang,Zengguo Feng,Qingling Feng,Fuzhai Cui,Preparation and properties of poly(butylene terephthalate-co-cyclohexane dimethylene terephthalate)-b poly(ethylene glycol) segmented random copolymers,Polymer Degradation and Stability,85,559(2004)
[18] ZHANG Yong,WU Chunhong,FENG Zengguo,LIU Fengxiang,ZHANG Aiying,WANG Liancai,Synthesis and characterization of poly(butylene terephthalate-co-cyclohexylene dimethylene terephthalate)-b-poly(ethylene-glycol) block copolymers.Chem.J.Chinese Universities,25(2),376(2004)(张勇,吴春红,冯增国,刘凤香,张爱英,王连才,聚(对苯二甲酸丁二醇酯-co-对苯二甲酸环已烷二甲醇酯)-b-聚乙二醇嵌段共聚物的合成与表征,高等学校化学学报,25(2),376(2004))
[19] GAO Changyou,HU Xiaohong,GUAN Jianjun,SHEN Jiacong,Influence of quenching rate on the morphology of polyurethane porous membranes.Chinese J.of Materials Research,16(2),77(2002)(高长有,胡小红,管建均,沈家骢,淬冷速率对聚氨酯多孔膜形态结构的影响,材料研究学报,16(2),77(2002))
[20] ZHANG Jun,WANG Xiaolin,LUO Feng,LI Hongling,XU Zhongzi,Formation of low density polyethylene microporous membranes via thermally induced phase separation-(Ⅱ) LDPE-18D/DPE system,Polymer Materials Science and Engineering,20(1),174(2004)(张军,王晓琳,骆峰,李红领,许仲梓,热诱导相分离法制备低密度聚乙烯微孔膜-(Ⅱ)低密度聚乙烯(18D)/二苯醚体系,高分子材料科学与工程,20(1),174(2004))
[21] GU Zhenyu,LI Wenjun,A novel method of making high porosity chitosan membranes via cryogenic induced phase separation,Chinese Science Bulletin,44(9),933(1999)(顾震宇,李文俊,壳聚糖溶液冷冻诱导相分离-一种制备高孔隙率膜的新方法,科学通报,44(9),933(1999))
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%