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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Synthesis of water-compatible imprinted polymers of in situ produced fructosazine and 2,5-deoxyfructosazine
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Synthesis of water-compatible imprinted polymers of in situ produced fructosazine and 2,5-deoxyfructosazine

机译:原位生产的果糖嗪和2,5-脱氧果糖嗪的水相容性印迹聚合物的合成

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摘要

Fructosazine and 2,5-deoxyfructosazine are two natural chemicals with various applications as flavoring agents in food and tobacco industry; the 2,5-deoxyfructosazine has also anti-diabetic and anti-inflammatory activities. In order to quantify these compounds in natural samples such as plant or food, we have developed a selective technique based on a water-compatible molecularly imprinted polymer (MIP). MIPs are prepared with a covalent approach from 2,5-deoxyfructosazine as template formed in situ by the self-condensation of glucosamine with vinylphenyl boronic acid, taken as catalyst and covalent monomer during the pre-complexation step. Acrylamide and polyethylene glycol diacrylate are used as supplementary non-covalent functional monomer and cross-linker, respectively. For the first time, a highly cross-linked but highly polar imprinted polymer of fructosazine and deoxyfructosazine is obtained as a solid material and not a gel. Amount of monomers is optimized to obtain high selectivity for both molecules. Results show that the MIPs prepared have a significant imprinting effect with a resulting imprinting factor of 3 for both templates. Molecularly imprinted solid-phase extraction is then performed and could be used in routine analysis to extract 2,5-deoxyfructosazine and fructosazine from soy sauce.
机译:果糖嗪和2,5-脱氧果糖嗪是两种天然化学品,在食品和烟草工业中作为调味剂有多种应用; 2,5-脱氧果糖嗪还具有抗糖尿病和抗炎作用。为了对天然样品(例如植物或食品)中的这些化合物进行定量,我们开发了一种基于水相容性分子印迹聚合物(MIP)的选择性技术。 MIPs是通过共价方法由2,5-脱氧果糖嗪作为模板通过葡糖胺与乙烯基苯基硼酸的自缩合原位形成的,并在预络合步骤中作为催化剂和共价单体而制备的。丙烯酰胺和聚乙二醇二丙烯酸酯分别用作补充的非共价功能单体和交联剂。首次获得了果糖嗪和脱氧果糖嗪的高度交联但极性高的印迹聚合物,它是固体材料而不是凝胶。优化单体的量以获得对两个分子的高选择性。结果表明,制备的MIP具有明显的印迹效果,两个模板的印迹因子均为3。然后进行分子印迹固相萃取,可用于常规分析中,从酱油中萃取2,5-脱氧果糖嗪和果糖嗪。

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