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Synthesis,Characterization,and DNA Adsorption Studies of Ampholytic Model Conetworks Based on Cross-Linked Star Copolymers

机译:基于交联星型共聚物的两性模型共网络的合成,表征和DNA吸附研究

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Five model conetworks based on cross-linked star ampholytic copolymers were synthesized by group transfer polymerization.The ampholytic copolymers were based on two hydrophilic monomers:the positively ionizable 2-(dimethylamino)ethyl methacrylate (DMAEMA) and the negatively ionizable methacrylic acid (MAA).Ethylene glycol dimethacrylate was used as the cross-linker.These five ampholytic model conetworks were isomers based on equimolar DMAEMA-MAA copolymer stars of different architectures:heteroarm (two),star block (two),and statistical.The two networks based on the homopolymer stars were also synthesized.The MAA units were introduced via the polymerization of tetrahydropyranyl methacrylate and the acid hydrolysis of the latter after network formation.All the precursors to the (co)networks were characterized in terms of their molecular weights using gel permeation chromatography (GPC).The mass of the extractables from the (co)networks was measured and characterized in terms of molecular weight and composition using GPC and proton nuclear magnetic resonance (~1H NMR) spectroscopy,respectively.The degrees of swelling (DS) of all the ampholytic conetworks were measured as a function of pH and were found to present a minimum at a pH value which was taken as the isoelectric point,pI.The DS and the p/ values did not present a dependence on conetwork architecture.Finally,DNA adsorption studies onto the ampholyte conetworks indicated that DNA binding was governed by electrostatics.
机译:通过基团转移聚合合成了五种基于交联星型两性共聚物的模型共网络。两性共聚物基于两种亲水性单体:可正电离的甲基丙烯酸2-(二甲氨基)乙酯(DMAEMA)和可负电化甲基丙烯酸(MAA)使用乙二醇二甲基丙烯酸酯作为交联剂。这五个两性模型共网络是基于等摩尔DMAEMA-MAA共聚物恒星的异构体,这些恒星具有不同的结构:杂种(两个),星形嵌段(两个)和统计结构。两个基于通过甲基丙烯酸四氢吡喃酯的聚合反应以及网络形成后后者的酸水解作用引入MAA单元。(co)网络的所有前体均采用凝胶渗透色谱法对其分子量进行了表征。 (GPC)。从(共)网络中提取的物质的质量经过测量并以分子形式表征分别使用GPC和质子核磁共振(〜1H NMR)光谱分析其重量和组成。测量所有两性共网络的溶胀度(DS)与pH的关系,发现在pH值最小的情况下DS和p /值不依赖于共网络结构。最后,对两性电解质共网络的DNA吸附研究表明DNA结合受静电控制。

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