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科学通报  2015 

分子识别响应型智能膜的研究进展

DOI: 10.1360/N972014-01261, PP. 2621-2630

Keywords: 智能膜,分子识别,控制释放,刺激响应材料,主客体系统

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Abstract:

分子识别响应型智能膜兼备分子识别特性和膜过程能耗低效率高的优点,可以实现特定分子识别型控制释放、以及化学或生物物质的高精度分离等.本文主要综述了分子识别响应型智能膜的设计方法与应用,重点介绍了3类分子识别响应型智能膜及其应用基于主客体作用分子识别响应型智能膜、基于耦合作用分子识别响应型智能膜以及基于螯合作用分子识别响应型智能膜,为新型分子识别响应型智能膜材料的研制以及分子识别响应智能膜过程的强化与应用提供了有价值的参考.

References

[1]  1 Jiang Y X, Lee A, Chen J Y, et al. The open pore conformation of potassium channels. Nature, 2002, 417:523-526
[2]  2 Dutzler R, Campbell E B, Mackinnon R. Gating the selectivity filter in ClC chloride channels. Science, 2003, 300:108-112
[3]  3 Smart T, Peters J, Ashcroft F, et al. The state of ion channel research in 2004. Nat Rev Drug Discov, 2004, 3:239-278
[4]  4 Okahata Y, Ozaki K, Seki T. pH-sensitive permeability control of polymer-grafted nylon capsule membranes. J Chem Soc, 1984, 8:519-521
[5]  40 Yang M, Xie R, Wang J Y, et al. Gating characteristics of thermo-responsive and molecular-recognizable membranes based on poly(N-isopropylacrylamide) and β-cyclodextrin. J Membrane Sci, 2010, 355:142-150
[6]  41 Yang M, Chu L Y, Wang H D, et al. A thermoresponsive membrane for chiral resolution. Adv Funct Mater, 2008, 18:652-663
[7]  42 Klok H A, Eibeck P, M?ller M, et al. Synthesis and characterization of polysiloxane-bound receptor molecules for ion selective supported polymeric membranes. Macromolecules, 1997, 30:795-802
[8]  43 Yilmaz M. Synthesis of an oligomer-supported calix
[9]  arene and selective extraction of Li+. React Funct Polym, 1999, 40:129-133
[10]  44 Chu L Y, Li Y, Zhu J H, et al. Control of pore size and permeability of a glucose-responsive gating membrane for insulin deliery. J Control Release, 2004, 97:43-53
[11]  45 Chu L Y, Liang Y J, Chen W M, et al. Preparation of glucose-sensitive microcapsules with a porous membrane and functional gates. Colloid Surface B, 2004, 37:9-14
[12]  46 Ito Y, Casolaro M, Kono K, et al. An insulin-releasing system that is responsive to glucose. J Control Release, 1989, 10:195-203
[13]  47 Cartier S, Horbett T A, Ratner B D. Glucose-sensitive membrane coated porous filters for control of hydraulic permeability and insulin delivery from a pressurized reservoir. J Membrane Sci, 1995, 106:17-24
[14]  48 Gordijo C R, Shuhendler A J, Wu X Y. Glucose-responsive bioinorganic nanohybrid membrane for self-regulated insulin release. Adv Funct Mater, 2010, 20:1404-1412
[15]  49 Abdekhodaiea M J, Wu X Y. Modeling of a glucose sensitive composite membrane for closed-loop insulin delivery. J Membrane Sci, 2009, 335:21-31
[16]  50 Akamatsu K, Yamaguchi T. Molecular recognition gating membranes made by plasma-graft polymerization. J Photopolym Sci Tec, 2005, 18:229-232
[17]  51 Zhang M J, Wang W, Xie R, et al. Microfluidic fabrication of monodisperse microcapsules for glucose-response at physiological temperature. Soft Matter, 2013, 9:4150-4159
[18]  52 Kuroki H, Ito T, Ohashi H, et al. Biomolecule-recognition gating membrane using biomolecular cross-linking and polymer phase transition. Anal Chem, 2011, 83:9226-9229
[19]  5 Okahata Y, Lim J H, Genichi N, et al. A large nylon capsule coated with a synthetic bilayer membrane permeability control of sodium chloride by phase transition of the dialkylammonium bilayer coating. J Am Chem Soc, 1983, 15:4855-4859
[20]  6 Ito Y, Park Y S. Signal-responsive gating of porous membranes by polymer brushes. Polym Adv Technol, 2000, 11:136-144
[21]  7 Ulbricht M. Advanced functional polymer membranes. Polymer, 2006, 47:2217-2262
[22]  8 Bruening M L, Dotzauer D M, Jain P, et al. Creation of functional membranes using polyelectrolyte multilayers and polymer brushes. Langmuir, 2008, 24:7663-7673
[23]  9 Savariar E N, Krishnamoorthy K, Thayumanavan S. Molecular discrimination inside polymer nanotubules. Nat Nanotech, 2008, 3:112-117
[24]  10 Tokarev I, Minko S. Multiresponsive, hierarchically structured membranes:New, challenging, biomimetic materials for biosesors, controlled release, biochemical gates, and nanoreactors. Adv Mater, 2009, 21:241-247
[25]  11 Stuart M, Huck W, Genzer J, et al. Emerging applications of stimuli-responsive polymer materials. Nat Mater, 2010, 9:101-113
[26]  12 Tokarev I, Minko S. Stimuli-responsive porous hydrogels at interfaces for molecular filtration, separation, controlled release, and gating in capsules and membranes. Adv Mater, 2010, 22:3446-3462
[27]  13 Wandera D, Wickramasinghe S R, Husson S M. Stimuli-responsive membranes. J Membrane Sci, 2010, 357:6-35
[28]  14 Chu L Y. Smart Membrane Materials and Systems:From Flat Membranes to Microcapsule Membranes. Hangzhou, Berlin-Heidelberg:Zhejiang University Press, Springer-Verlag, 2011
[29]  15 Chu L Y, Xie R, Ju X J. Stimuli-responsive membranes:Smart tools for controllable mass-transfer and separation processes. Chin J Chem Eng, 2011, 19:891-903
[30]  16 Liu Y, You C C, Zhang H Y. Supramoecular Chemistry-Molecular Recognition and Assembly of Synthetic Receptors (in Chinese). Tianjin:Nankai University Press, 2001[刘育, 尤长城, 张衡益. 超分子化学-合成受体的分子识别与组装. 天津:南开大学出版社,
[31]  17 Wu C T. Crown Chemistry (in Chinese). Beijing:Science Press, 1992[吴成泰. 冠醚化学. 北京:科学出版社,
[32]  18 Ju X J, Chu L Y, Liu L, et al. A novel thermo-responsive hydrogel with ion-recognition property through supramolecular host-guest complexation. J Phys Chem B, 2008, 112:1112-1118
[33]  19 Mi P, Chu L Y, Ju X J, et al. A smart polymer with ion-induced negative shift of the lower critical solution temperature for phase-transition. Macromol Rapid Commun, 2008, 29:27-32
[34]  20 Wu H G, Ju X J, Xie R, et al. A novel ion-imprinted hydrogel for recognition of potassium ions with rapid response. Polym Adv Technol, 2011, 22:1389-1394
[35]  21 Zhang B, Ju X J, Xie R, et al. Comprehensive effects of metal ions on responsive characteristics of P(NIPAM-co-B18C6Am). J Phys Chem B, 2012, 116:5527-5536
[36]  22 Wang Y M, Ju X J, Liu Z, et al. Competitively molecular-/ion-recognition responsive characteristics of poly(N-isopropylacrylamideco-benzo-12-crown-4-acrylamide) copolymers with benzo-12-crown-4 as both guest and host units. Macromol Rapid Commun, 2014, 35:1280-1286
[37]  23 Yamaguchi T, Ito T, Sato T, et al. Development of a fast response molecular recognition ion gating membrane. J Am Chem Soc, 1999, 121:4078-4079
[38]  24 Ito T, Hioki T, Yamaguchi T, et al. Development of a molecular recognition ion gating membrane and estimation of its pore size control. J Am Chem Soc, 2002, 124:7840-7846
[39]  25 Ito T, Yamaguchi T. Osmotic pressure control in response to a specific ion signal at physiological temperature using a molecular recognition ion gating membrane. J Am Chem Soc, 2004, 126:6202-6203
[40]  26 Okajima S, Sakai Y, Yamaguchi T. Development of a regenerable cell culture system that senses and releases dead cells. Langmuir, 2005, 21:4043-4049
[41]  27 Okajima S, Yamaguchi T, Sakai Y, et al. Regulation of cell adhesion using a signal-responsive membrane substrate. Biotechnol Bioeng, 2005, 91:237-243
[42]  28 Ito T, Yamaguchi T. Nonlinear self-excited oscillation of a synthetic ion-channel-inspired membrane. Angew Chem Int Edit, 2006, 45:5630-5633
[43]  29 Ito T, Yamaguchi T. Controlled release of model drugs through a molecular recognition ion gating membrane in response to a specific ion signal. Langmuir, 2006, 22:3945-3949
[44]  30 Ito T, Oshiba Y, Ohashi H, et al. Reentrant phase transition behavior and sensitivity enhancement of a molecular recognition ion gating membrane in an aqueous ethanol solution. J Membrane Sci, 2010, 348:369-375
[45]  31 Ito T, Ohashi H, Tamaki T, et al. Mathematical modeling of molecular recognition by an ion-gating membrane oscillator. J Membrane Sci, 2013, 448:231-239
[46]  32 Liu Z, Luo F, Ju X J, et al. Positively K+-responsive membranes with functional gates driven by host-guest molecular recognition. Adv Funct Mater, 2012, 22:4742-4750
[47]  33 Morita K, Yamaguchi A, Teramae N. Electrochemical modification of benzo-15-crown-5 ether on a glassy carbon electrode for alkali metal cation recognition. J Electroanal Chem, 2004, 563:249-255
[48]  34 Yanagioka M, Kurita H, Yamaguchi T, et al. Development of a molecular recognition separation membrane using cyclodextrin complexation controlled by thermosensitive polymer chains. Ind Eng Chem Res, 2003, 42:380-385
[49]  35 Ohashi H, Hiraoka Y, Yamaguchi T. An autonomous phase transition-complexation/decomplexation polymer system with a molecular recognition property. Macromolecules, 2006, 39:2614-2620
[50]  36 Wang H D, Chu L Y, Yu X Q, et al. Thermosensitive affinity behavior of poly(N-isopropylacrylamide) hydrogels with β-cyclodextrin moieties. Ind Eng Chem Res, 2007, 46:1511-1518
[51]  37 Koopmans C, Ritter H. Color change of N-isopropylacrylamide copolymer bearing reichardts dye as optical sensor for lower critical solution temperature and for host-guest interaction with β-cyclodextrin. J Am Chem Soc, 2007, 129:3502-3503
[52]  38 Ohashi H, Abe T, Tamaki T, et al. Influence of spacer length between actuator and sensor on their mutual communications in Poly(N-isopropylacrylamide-co-β-Cyclodextrin), an autonomous coordinative shrinking/swelling polymer. Macromolecules, 2012, 45:9742-9750
[53]  39 Xie R, Zhang S B, Wang H D, et al. Temperature-dependent molecular-recognizable membranes based on poly(N-isopropylacrylamide) and β-cyclodextrin. J Membrane Sci, 2009, 326:618-626
[54]  53 Sugawara Y, Kuroki H, Tamaki T, et al. Conversion of a molecular signal into a visual color based on the permeation of nanoparticles through a biomolecule-recognition gating membrane. Anal Method, 2012, 4:2635-2637
[55]  54 Lewis S R, Datta S, Gui M, et al. Reactive nanostructured membranes for water purification. Proc Natl Acad Sci USA, 2011, 108:8577-8582
[56]  55 Gui M, Ormsbee L E, Bhattacharyya D. Reactive functionalized membranes for polychlorinated biphenyl degradation. Ind Eng Chem Res, 2013, 52:10430-10440
[57]  56 Hernandez S, Papp J K, Bhattacharyya D. Iron-based redox polymerization of acrylic acid for direct synthesis of hydrogel/membranes and metal nanoparticles for water treatment. Ind Eng Chem Res, 2014, 53:1130-1142
[58]  57 Liu Z, Luo F, Ju X J, et al. Gating membranes for water treatment:Detection and removal of trace Pb2+ ions based on molecular recognition and polymer phase transition. J Mater Chem A, 2013, 1:9659-9671

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