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使用源自腰果壳液的槚如酸单体制备分子印迹聚合物。

Preparation of molecularly imprinted polymers using anacardic acid monomers derived from cashew nut shell liquid.

作者信息

Philip Joseph Y N, Buchweishaija Joseph, Mkayula Lupituko L, Ye Lei

机构信息

Pure and Applied Biochemistry, Chemical Center, Lund University, Box 124, S-221 00 Lund, Sweden.

出版信息

J Agric Food Chem. 2007 Oct 31;55(22):8870-6. doi: 10.1021/jf0718289. Epub 2007 Oct 10.

Abstract

The objective of this work was to use monomers from cashew ( Anacardium occidentale L.) nut shells to develop molecularly imprinted polymers. Cashew nut shell liquid (CNSL) is a cheap and renewable agro byproduct consisting of versatile monomers. Solvent-extracted CNSL contains over 80% anacardic acid (AnAc) with more than 90% degree of unsaturation in its C 15 side chain. From AnAc monomer, anacardanyl acrylate (AnAcr) and anacardanyl methacrylate (AnMcr) monomers were synthesized and their chemical structures were characterized by Fourier transform IR and NMR. Different imprinted bulk polymers based on AnAc, AnAcr, and AnMcr functional monomers have been prepared. In the present study, each functional monomer was separately copolymerized in toluene with ethylene glycol dimethacrylate and divinylbenzene as cross-linkers, using racemic propranolol as a model template. While the AnAc based polymer revealed a meager rebinding ability, the imprinted polymers made from AnAcr and AnMcr displayed highly specific propranolol binding. At a polymer concentration of 2 mg/mL, AnAcr and AnMcr based imprinted polymers were able to bind over 50% of trace propranolol (initial concentration 1.2 nM). Under the same condition propranolol uptake by the two nonimprinted control polymers was less than 20%. Chiral recognition properties of these polymers were further confirmed using tritium-labeled (S)-propranolol as a tracer in displacement experiments, suggesting that the apparent affinity of the imprinted chiral sites for the correct enantiomer is at least 10 times that of the mismatched (R)-propranolol. Moreover, cross reactivity studies of these polymers showed that the (S)-imprinted sites have higher cross-reactivity toward (R, S)-metoprolol than (R)-propranolol and (R)-timolol.

摘要

这项工作的目的是利用腰果(Anacardium occidentale L.)坚果壳中的单体来制备分子印迹聚合物。腰果壳液(CNSL)是一种廉价且可再生的农业副产品,由多种单体组成。溶剂萃取的CNSL含有超过80%的漆树酸(AnAc),其C15侧链的不饱和度超过90%。从AnAc单体合成了丙烯酸腰果酚酯(AnAcr)和甲基丙烯酸腰果酚酯(AnMcr)单体,并通过傅里叶变换红外光谱和核磁共振对其化学结构进行了表征。制备了基于AnAc、AnAcr和AnMcr功能单体的不同印迹块状聚合物。在本研究中,每种功能单体分别在甲苯中与乙二醇二甲基丙烯酸酯和二乙烯基苯作为交联剂进行共聚,使用外消旋普萘洛尔作为模型模板。虽然基于AnAc的聚合物显示出微弱的再结合能力,但由AnAcr和AnMcr制成的印迹聚合物表现出高度特异性的普萘洛尔结合。在聚合物浓度为2 mg/mL时,基于AnAcr和AnMcr的印迹聚合物能够结合超过50%的痕量普萘洛尔(初始浓度1.2 nM)。在相同条件下,两种非印迹对照聚合物对普萘洛尔的摄取量小于20%。在置换实验中,使用氚标记的(S)-普萘洛尔作为示踪剂进一步证实了这些聚合物的手性识别特性,这表明印迹手性位点对正确对映体的表观亲和力至少是不匹配的(R)-普萘洛尔的10倍。此外,这些聚合物的交叉反应性研究表明,(S)-印迹位点对(R,S)-美托洛尔的交叉反应性高于(R)-普萘洛尔和(R)-噻吗洛尔。

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