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Molecularly Imprinted Polymers-Curcuminoids and Its Application for Solid Phase Extraction

机译:分子印迹聚合物 - 姜黄素及其用于固相萃取的施用

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Molecularly Imprinted Polymers (MIPs) for the selective recognition properties of curcumin (CUR), a cancer chemopreventive agent were obtained by a non-covalent imprinting approach with bisdemetoxycurcumin (BDMC) as the template molecule. The double bond of BDMC has been reduced in order not to be involved in polymerization and make the template molecules easy to be eluted. Several functional monomers have been evaluated to maximize the interactions with the template molecule during polymerization. MIPs prepared by bulk of N-(2-aminoethyl) metacrylamid hydrochlorideas functional monomer, ethylene glycol dimethacrylate as crosslinker, 2,2'-azobis (2'4-dimethyl valeronitril) as initiator and acetonitrile as porogen. Non-imprinted polymer (NIP) have been also synthesized for reference purposes. UV-vis spectroscopy has been used to predict the template to functional monomer ratio which indicates the formation of 2:1 complexes between monomer and curcumin and the association constants (K_(11) = 2529 μM and K_(12) = 1960.75 μM in acetonitrile). The capacity and imprinting factor have been evaluated as stationary phases in high-pressure liquid chromatography to CUR and BDMC. The binding properties and the homogeneity of the binding sites of the different polymers have been studied by Freundlich isotherm modeling and weight average affinity and number of binding sites. One of the foremost applications of molecular imprinting has been in molecularly imprinted solid phase extraction and it has the ability to separate and preconcentrate between closely related compounds in curcuminoids.
机译:用于选择性识别性质的姜黄素(Cur)的选择性识别性质,通过与双羟甲酸氧基氟菌(BDMC)作为模板分子的非共价印刷方法获得癌症化学预防剂的聚合物(MIPS)。 BDMC的双键已经减少,以便不参与聚合并使模板分子易于洗脱。已经评估了几种功能性单体以在聚合期间最大化与模板分子的相互作用。由大量的N-(2-氨基乙基)羟丙基丙烯酸氢丙烯醛官能单体,乙二醇二甲基丙烯酸酯作为交联剂,2,2'-偶氮基(2'4-二甲基缬氨酸)作为引发剂和乙腈作为孔剂。也已合成非印记聚合物(NIP)以供参考。已经使用UV-Vis光谱从而预测模板至功能性单体比,其表示单体和姜黄素之间的2:1络合物和乙腈中的关联常数(K_(11)=2529μm和K_(12)=1960.75μm之间的形成)。容量和印迹因子已被评估为高压液相色谱中的固定相对于Cur和BDMC。已经通过Freundlich等温模型和重量平均亲和力和结合位点进行了不同聚合物的结合位点的结合特性和均匀性。分子印迹的最重要应用是分子印迹固相萃取,并且它具有在姜黄素中密切相关的化合物之间分离和预先浓缩的能力。

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