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一种双多巴胺/血清素选择性分子印迹聚合物的识别特性及竞争性分析

Recognition properties and competitive assays of a dual dopamine/serotonin selective molecularly imprinted polymer.

作者信息

Suedee Roongnapa, Seechamnanturakit Vatcharee, Suksuwan Acharee, Canyuk Bhutorn

机构信息

Molecular Recognition Materials Research Unit, Department of Pharmaceutical Chemistry, Faculty of Pharmaceutical Sciences, Prince of Songkla University, Hatyai, Songkla 90112, Thailand.

出版信息

Int J Mol Sci. 2008 Dec;9(12):2333-2356. doi: 10.3390/ijms9122333. Epub 2008 Nov 26.

Abstract

A molecularly imprinted polymer (MIP) with dual dopamine/serotonin-like binding sites (DS-MIP) was synthesized for use as a receptor model of study the drug-interaction of biological mixed receptors at a molecular level. The polymer material was produced using methacrylic acid (MAA) and acrylamide (ACM) as functional monomers, N,N'-methylene bisacrylamide (MBAA) as cross-linker, methanol/water mixture (4:1, v/v) as porogen and a mixture of dopamine (D) and serotonin (S) as templates. The prepared DS-MIP exhibited the greatest rebinding of the template(s) in aqueous methanol solution with decreased recognition in acetonitrile, water and methanol solvent. The binding affinity and binding capacity of DS-MIP with S were found to be higher than those of DS-MIP with D. The selectivity profiles of DS-MIP suggest that the D binding site of DS-MIP has sufficient integrity to discriminate between species of non-optimal functional group orientation, whilst the S binding site of DS-MIP is less selective toward species having structural features and functional group orientations different from S. The ligand binding activities of a series of ergot derivatives (ergocryptine, ergocornine, ergocristine, ergonovine, agroclavine, pergolide and terguride) have been studied with the DS-MIP using a competitive ligand binding assay protocol. The binding affinities of DS-MIP were demonstrated in the micro- or submicro-molar range for a series of ergot derivatives, whereas the binding affinities were considerably greater to natural receptors derived from the rat hypothalamus. The DS-MIP afforded the same pattern of differentiation as the natural receptors, i.e. affinity for the clavines > lysergic acid derivatives > ergopeptines. The results suggest that the discrimination for the ergot derivatives by the dopamine and serotonin sites of DS-MIP is due to the structural features and functional orientation of the phenylethylamine and indolylethylamine entities at the binding sites, and the fidelity of the dopamine and serotonin imprinted cavities.

摘要

合成了一种具有双多巴胺/血清素样结合位点的分子印迹聚合物(DS-MIP),用作在分子水平上研究生物混合受体药物相互作用的受体模型。该聚合物材料以甲基丙烯酸(MAA)和丙烯酰胺(ACM)作为功能单体,N,N'-亚甲基双丙烯酰胺(MBAA)作为交联剂,甲醇/水混合物(4:1,v/v)作为致孔剂,多巴胺(D)和血清素(S)的混合物作为模板制备而成。制备的DS-MIP在甲醇水溶液中对模板表现出最大的再结合能力,而在乙腈、水和甲醇溶剂中的识别能力降低。发现DS-MIP与S的结合亲和力和结合容量高于与D的结合亲和力和结合容量。DS-MIP的选择性谱表明,DS-MIP的D结合位点具有足够的完整性,能够区分非最佳官能团取向的物种,而DS-MIP的S结合位点对具有与S不同的结构特征和官能团取向的物种选择性较低。使用竞争性配体结合测定方案,研究了一系列麦角衍生物(麦角隐亭、麦角柯宁碱、麦角克里司亭、麦角新碱、麦角clavine、培高利特和特古瑞得)与DS-MIP的配体结合活性。DS-MIP对一系列麦角衍生物的结合亲和力在微摩尔或亚微摩尔范围内,而对源自大鼠下丘脑的天然受体的结合亲和力则大得多。DS-MIP提供了与天然受体相同的区分模式,即对麦角clavine类 > 麦角酸衍生物 > 麦角肽类的亲和力。结果表明,DS-MIP的多巴胺和血清素位点对麦角衍生物的区分是由于结合位点处苯乙胺和吲哚乙胺实体的结构特征和官能团取向,以及多巴胺和血清素印迹腔的保真度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4b9/2635646/12db45924f26/ijms-09-02333f1.jpg

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