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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Thermo-Responsive glycopolymer chains grafted onto honeycomb structured porous films via RAFT Polymerization as a thermo-dependent switcher for lectin concanavalin a conjugation
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Thermo-Responsive glycopolymer chains grafted onto honeycomb structured porous films via RAFT Polymerization as a thermo-dependent switcher for lectin concanavalin a conjugation

机译:通过RAFT聚合将热响应性糖聚合物链接枝到蜂窝结构多孔膜上,作为凝集素伴刀豆球蛋白结合物的热依赖性切换剂

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摘要

Stable and surface-modified films with regular porous arrays were created by crosslinking honeycomb structured porous films prepared via breath figures from poly(styrene-co-maleic anhydride). The formation of open or closed pores of the films was controlled by the addition of a polyion complex. Subsequent crosslinking of the films with 1,8-diaminooctane led to films, which maintain their structure in solvents. In addition, excess amino functionality after crosslinking allowed the attachment of RAFT agent, 3-benzylsulfanyl thiocarbonyl sulfanylpropionic acid, for the controlled surface polymerization of N-isopropyl acrylamide (NIPAAm) and N-acryloyl glucosamine (AGA). The attachment of thermo-responsive glycopolymers onto the honeycomb structured porous films was confirmed using contact angle measurements and confocal fluorescence microscopy. Cleavage of surface anchored polymers via aminolysis revealed that the molecular weights of the surface grafted chains are significantly larger than the molecular weight of the chains generated in solution. The honeycomb structured porous films with their grafted PNIPAAm-ran-PAGA polymer chains showed selective recognition of Concanavalin A (ConA). Below the lower critical solution temperature (LCST) of the surface, the conjugation is switched off, while above the LCST the surface grafted glucose moieties bind strongly to ConA.
机译:通过交联蜂窝结构的多孔膜来制备具有规则的多孔阵列的稳定和表面改性的膜,所述蜂窝结构的多孔膜通过呼吸图由聚(苯乙烯-马来酸酐)制成。膜的开孔或闭孔的形成通过添加聚离子络合物来控制。随后将膜与1,8-二氨基辛烷交联形成膜,该膜在溶剂中保持其结构。另外,交联后过量的氨基官能团允许RAFT试剂3-苄基硫烷基硫代羰基硫烷基丙酸的附着,以控制N-异丙基丙烯酰胺(NIPAAm)和N-丙烯酰基葡糖胺(AGA)的表面聚合。使用接触角测量和共聚焦荧光显微镜证实了热响应性糖聚合物在蜂窝结构多孔膜上的附着。通过氨解裂解表面锚定的聚合物显示,表面接枝链的分子量显着大于溶液中产生的链的分子量。具有接枝的PNIPAAm-ran-PAGA聚合物链的蜂窝结构多孔膜显示出对伴刀豆球蛋白A(ConA)的选择性识别。在表面的较低临界溶液温度(LCST)以下,结合被关闭,而在LCST上方,表面嫁接的葡萄糖部分与ConA牢固结合。

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