A modular click approach to glycosylated polymeric beads:: Design, synthesis and preliminary lectin, recognition studies

被引:83
作者
Chen, Gaojian
Tao, Lei
Mantovani, Giuseppe
Geng, J.
Nystrom, Daniel
Haddleton, David M. [1 ]
机构
[1] Univ Warwick, Dept Chem, Coventry CV4 7AL, W Midlands, England
[2] Royal Inst Technol Fibre & Polymer Technol, S-10044 Stockholm, Sweden
关键词
D O I
10.1021/ma071362v
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Covalent immobilization of a range of carbohydrate derivatives onto polymeric resin beads is described. Copper-catalyzed Huisgen [2 + 3] cycloaddition (often termed click chemistry) was used to graft mannose-containing azides to complementarily functionalized alkyne surfaces, namely (a) Wang resin or (b) Rasta particles consisting of a clickable alkyne polymer loose outer shell and a Wang resin inner core. For the second approach, Wang resin beads were first converted into immobilized living radical polymerization initiators with subsequent polymerization of trimethylsilanyl-protected propargyl methacrylate followed by deprotection with TBAF to yield the desired polyalkyne clickable scaffold. The appropriate (x-mannopyranoside azide was then clicked onto the bead to give a mannose functionalized Rasta resin. IR, gel-phase H-1 NMR, and elemental analysis have been used to characterize the modified resins. The binding abilities of these D-mannose-modified particles were subsequently tested using fluorescein-labeled Concanavalin A (Con A), a lectin that binds certain mannose-containing molecules. Preliminary results indicated that the novel glyco-hybrid materials presented in this work are able to efficiently recognize mannose-binding model lectins such as Con A, opening the way for their potential application in affinity chromatography, sensors, and other protein recognition/separation fields.
引用
收藏
页码:7513 / 7520
页数:8
相关论文
共 88 条
[1]   Lectins: tools for the molecular understanding of the glycocode [J].
Ambrosi, M ;
Cameron, NR ;
Davis, BG .
ORGANIC & BIOMOLECULAR CHEMISTRY, 2005, 3 (09) :1593-1608
[2]   Living radical polymerization immobilized on wang resins: Synthesis and harvest of narrow polydispersity poly(methacrylate)s [J].
Angot, S ;
Ayres, N ;
Bon, SAF ;
Haddleton, DM .
MACROMOLECULES, 2001, 34 (04) :768-774
[3]  
[Anonymous], 2002, METH TOOLS BIOSCI ME
[4]   THE BEHAVIOR OF SOME MODEL PROTEINS AT SOLID LIQUID INTERFACES .1. ADSORPTION FROM SINGLE PROTEIN SOLUTIONS [J].
ARAI, T ;
NORDE, W .
COLLOIDS AND SURFACES, 1990, 51 :1-15
[5]   Synthesis of hydrophilic polar supports based on poly(dimethylacrylamide) via copper-mediated radical polymerization from a cross-linked polystyrene surface: Potential resins for oligopeptide solid-phase synthesis [J].
Ayres, N ;
Haddleton, DM ;
Shooter, AJ ;
Pears, DA .
MACROMOLECULES, 2002, 35 (10) :3849-3855
[6]   Horner-Emmons synthesis with minimal purification using ROMPGEL: A novel high-loading matrix for supported reagents [J].
Barrett, AGM ;
Cramp, SM ;
Roberts, RS ;
Zecri, FJ .
ORGANIC LETTERS, 1999, 1 (04) :579-582
[7]   Functionalized micellar assemblies prepared via block copolymers synthesized by living free radical polymerization upon peptide-loaded resins [J].
Becker, ML ;
Liu, JQ ;
Wooley, KL .
BIOMACROMOLECULES, 2005, 6 (01) :220-228
[8]   'Click' chemistry in polymer and materials science [J].
Binder, Wolfgang H. ;
Sachsenhofer, Robert .
MACROMOLECULAR RAPID COMMUNICATIONS, 2007, 28 (01) :15-54
[9]  
Bittiger H., 1976, Concanavalin A as a Tool
[10]   Surface engineering and surface analysis of a biodegradable polymer with biotinylated end groups [J].
Black, FE ;
Hartshorne, M ;
Davies, MC ;
Roberts, CJ ;
Tendler, SJB ;
Williams, PM ;
Shakesheff, KM .
LANGMUIR, 1999, 15 (09) :3157-3161