Biomedical Engineering Reference
In-Depth Information
[23] Shi, H; Tsai, W-B; Garrison, MD; Ferrari, S; Ratner, BD. Template-imprinted
nanostructured surfaces for protein recognition. Nature , 1999, 398, 593-597.
[24] Rachkov, A; Minoura, N. Recognition of oxytocin and oxytocin-related peptides in
aqueous media using a molecularly imprinted polymer synthesized by the epitope
approach. Journal of Chromatography A , 2000, 889, 111-118.
[25] Nicholls, IA; Ramström, O; Mosbach, K. Insights into the role of the hydrogen bond and
hydrophobic effect on recognition in molecularly imprinted polymer synthetic peptide
receptor mimics. Journal of Chromatography A , 1995, 691, 349-353.
[26] Daniel, S; Kofinas, JP.r Molecular imprinting of peptides and proteins in aqueous
media. Analytical and Bioanalytical Chemistry , 2007, 389, 399-404.
[27] Marx, S; Zaltsman, A. Molecular Imprinting of Sol Gel Polymers for the Detection of
Paraoxon in Water. International Journal of Environmental Analytical Chemistry , 2003,
83, 671-680.
[28] Araki, K; Goto, M; Furusaki, S. Enantioselective polymer prepared by surface
imprinting technique using a bifunctional molecule. Analytica Chimica Acta , 2002, 469,
173-181.
[29] Rachkov, A; Hu, M; Bulgarevich, E; Matsumoto, T; Minoura, N. Molecularly imprinted
polymers prepared in aqueous solution selective for [Sar1,Ala8]angiotensin II. Analytica
Chimica Acta , 2004, 504, 191-197.
[30] Xia, YQ; Guo, TY; Song, MD; Zhang, BH; Zhang, BL; Hemoglobin Recognition by
Imprinting in Semi-Interpenetrating Polymer Network Hydrogel Based on
Polyacrylamide and Chitosan. Biomacromolecules, 2005, 6, 2601-2606.
[31] Xia, YQ; Guo, TY; Song, MD; Zhang, BH; Zhang, BL. Adsorption dynamics and
thermodynamics of Hb on the Hb-imprinted polymer beads. Reactive and Functional
Polymers, 2008, 68, 63-69.
[32] Guo, TY; Xia, YQ; Hao, GJ; Song, MD; Zhang, BH. Adsorptive separation of
hemoglobin by molecularly imprinted chitosan beads. Biomaterials , 2004,25, 5905-
5912.
[33] Guo, TY; Xia, YQ; Wang, J; Song, MD; Zhang, BH. Chitosan beads as molecularly
imprinted polymer matrix for selective separation of proteins. Biomaterials , 2005,
26,5737-5745.
[34] Guo, TY; Xia, YQ; Hao, GJ; Zhang, BH; Fu, GQ; Yuan, Z; He, BL; Kennedy, JF.
Chemically modified chitosan beads as matrices for adsorptive separation of proteins by
molecularly imprinted polymer. Carbohydrate Polymers , 2005, 62, 214-221.
[35] Fu, G; Zhao, J; Yu, H; Liu, L; He, B. Bovine serum albumin-imprinted polymer gels
prepared by graft copolymerization of acrylamide on chitosan. Reactive and Functional
Polymers , 2007, 67, 442-450.
[36] Zhao, Z; Wang, C; Guo, M; Shi, L; Fan, Y; Long, Y; Mi, H. Molecular imprinted
polymer with cloned bacterial protein template enriches authentic target in cell extract.
FEBS Letters , 2006, 580, 2750-2754.
[37] Piletsky, SA; Andersson, HS; Nicholls, IA. Combined Hydrophobic and Electrostatic
Interaction-Based Recognition in Molecularly Imprinted Polymers. Macromolecules ,
1999, 32, 633-636.
[38] Piletsky, SA; Andersson, HS; Nicholls, IA. The rational use of hydrophobic effect-based
recognition in molecularly imprinted polymers. Journal of Molecular Recognition , 1998,
11, 94-97.
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