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超大孔聚丙烯酰胺晶胶微球的制备及其生物相容性和吸附性能 被引量:6

Preparation of polyacrylamide supermacropore cryogel beads and its bicompatibility and adsorption behavior
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摘要 利用反相悬浮结合溶剂结晶致孔法制备了具有超大孔隙、球形度良好的聚丙烯酰胺晶胶微球,晶胶微球平均粒径为234.1μm,孔径约为10~50μm。采用原位接枝法,将2-丙烯酰胺基-2-甲基-1-丙烷磺酸(AMPSA)接枝到晶胶微球孔隙表面上,得到了带有磺酸基团的阳离子交换晶胶微球。考察了晶胶微球的生物相容性和吸附蛋白质及重金属离子Cu2+的性能,结果表明:在大肠杆菌培养液中,添加晶胶微球,对大肠杆菌的生长影响不大。接枝了AMPSA的晶胶微球表现出更强的吸附Cu2+的能力,吸附容量达到1.14 mmol·g-1。同时,接枝后的晶胶微球也具有一定吸附蛋白质的能力,溶菌酶的吸附容量达到54.5 mg·g-1。因此,该大孔晶胶可望在微生物固定化、生物分离和重金属离子吸附中会发挥更大的作用。 Novel supermacropore cryogel beads were prepared by combining the inverse-suspension and cryo-polymerization methods under frozen condition. The mean diameter of the beads was 234.1μm, and the pore size was 10-50 μm. The cation-exchange cryogel beads were prepared by in-situ grafting of 2-acrylamido-2-methyl-1-propanesulfonic acid (AMPSA) onto the pore surface of the cryogel beads. The biocompatibility of the cryogel beads was measured. The adsorption of protein and Cu2+on the cryogel beads was also discussed. The growth of E.coli was little affected when cryogel beads existed in the cultivation. The cryogel beads had stronger adsorption ability after grafting AMPSA, and the adsorption capacity of Cu2+ could reach 1.14 mmol·g-1. Meanwhile, the cryogel beads grafted with AMPSA had the ability of protein adsorption, and the adsorption capacity for lysozyme reached 54.5 mg · g-1. Such cryogel beads could be used in immobilization of microorganisms, separation of biomass components and adsorption of heavy metal ions.
出处 《化工学报》 EI CAS CSCD 北大核心 2014年第6期2350-2356,共7页 CIESC Journal
关键词 多孔介质 聚合物 晶胶微球 离子交换 原位接枝 生物相容性 吸附 porous media polymers cryogel beads ion-exchange in-situ graft-polymerization biocompatibility adsorption
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参考文献23

  • 1Lozinsky V I,Plieva F M,Galaev I Y,Mattiasson B. The potential of polymeric cryogels in bioseparation[J].BIOSEPARATION,2001,(4/5):163-188.
  • 2Lozinsky V I,Galaev I Y,Plieva F M,Savina I N Jungvid H Mattiasson B. Polymeric cryogels as promising materials of biotechnological interest[J].Trends in Biotechnology,2003,(10):445-451.
  • 3Plieva F M,Galaev I Y,Noppe W,Mattiasson B. Cryogel applications in microbiology[J].Trends in Microbiology,2008,(11):543-551.
  • 4Plieva F M,De S E,Galaev I Y,Mattiasson B. Macroporous elastic polyacrylamide monolith columns:processing under compression and scale-up[J].Separation and purification technology,2009,(01):110-116.
  • 5Plieva F M,Galaev I Y,Mattiasson B. Macroporous gels prepared at subzero temperatures as novel materials for chromatography of particulate-containing fluids and cell culture applications[J].Journal of Separation Science,2007,(11):1657-1671.
  • 6Yun J,Shen S,Chen F,Yao K. One-step isolation of adenosine triphosphate from crude fermentation broth of Saccharomyces cerevisiae by anion-exchange chromatography using supermacroporous cryogel[J].Journal of Chromatography B,2007,(01):57-62.
  • 7Yao K,Yun J,Shen S,Wang L He X Yu X. Characterization of a novel continuous supermacroporous monolithic cryogel embedded with nanoparticles for protein chromatography[J].Journal of Chromatography A,2006,(01):103-110.
  • 8沈哲明,沈绍传,贠军贤,姚克俭.大尺寸弱阴离子交换晶胶层析一步法分离ATP的实验研究[J].高校化学工程学报,2009,23(5):768-773. 被引量:8
  • 9Arvidsson P,Plieva F M,Lozinsky V I,Galaev I Y Mattiasson B. Direct chromatographic capture of enzyme from crude homogenate using immobilized metal affinity chromatography on a continuous supermacroporous adsorbent[J].Journal of Chromatography A,2003,(02):275-290.
  • 10Erzengin M,ünlü N,Odaba. A novel adsorbent for protein chromatography:supermacroporous monolithic cryogel embedded with Cu2+-attached sporopollenin particles[J].Journal of Chromatography A,2011,(03):484-490.

二级参考文献42

  • 1李云龙,林松柏,吴宏,肖春妹.改性羧甲基纤维素/SiO_2杂化材料结构与性能[J].华侨大学学报(自然科学版),2004,25(3):266-269. 被引量:12
  • 2余娜,林松柏,欧阳娜.聚丙烯酰胺磺甲基化改性研究[J].化工新型材料,2005,33(6):49-51. 被引量:8
  • 3周利民,黄群武,刘峙嵘.改性生物凝胶对重金属离子的吸附性能研究[J].离子交换与吸附,2007,23(3):282-288. 被引量:3
  • 4谢建军,梁吉福,刘新容,刘赛.聚丙烯酸/丙烯酰胺高吸水性树脂吸附性能[J].化工学报,2007,58(7):1762-1767. 被引量:24
  • 5Arvidsson P, Plieva F M, Savina I N. Chromatography of microbial cells using continuous supermacroporous affinity and ion-exchange columns [J]. Journal of Chromatography A, 2002, 977(1): 27-38.
  • 6Aevidsson P, Plieva F M, Lozinsky V I et al. Direct chromatography capture of enzyme from crude homogenate using immobilized metal affinity chromatography on a continuous supermacroporous adsorbent [J]. Journal of Chromatography A, 2003, 986(2): 275-290.
  • 7Persson P, Baybak O, Plieva F Met al. Characterization of a continuous supermacroporous monolothic matrix for chromatographic separation of large bioparticles [J]. Bioteehnology and Bioengineering, 2004, 88(2): 224-236.
  • 8Dainiak M B, Kumara A, Pileva F Met al. Integrated isolation of antibody fragments from microbial cell culture fluids using supermacroporous cryogels [J]. Journal of Chromatography A, 2004, 1045(1-2): 93-98.
  • 9Plieva F M, Savina I N, Deraz S. Characterization of supermacroporous monolithic polyacrylamide based matrices designed for chromatography of bioparticles [J]. Journal of Chromatography B, 2004, 807(1): 129-137.
  • 10He X J, Yao K J, Shen S C et al. Freezing characteristics of acrylamide-based aqueous solution used for the preparation of supermacroporous eryogels via cryo-copolymerization [J]. Chemical Engineering Science, 2007, 62(5): 1334-1342.

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