首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Amido surface-functionalized magnetic molecularly imprinted polymers for the efficient extraction of Sibiskoside from Sibiraea angustata
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Amido surface-functionalized magnetic molecularly imprinted polymers for the efficient extraction of Sibiskoside from Sibiraea angustata

机译:用于从Sibiraea angustata的有效提取Sibiskide的磁性分子印迹聚合物的磁性分子印迹聚合物

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摘要

A general method for efficient and selective extraction of a target compound from complex natural products remains elusive, despite decades of research. By introducing a functional amido group on the surface of dispersity-enhanced magnetic nanoparticles, a nanoparticle receptor to selectively recognize Sibiskoside (a monoterpene) from the aerial portion of Sibiraea angustata by hydrogen bond interaction was synthesized. The superparamagnetic Fe3O4 nanoparticles were successively modified with tetraethyl orthosilicate (TEOS), amino and amido functional groups, and 4-vinylbenzoic acid (VBZA) was used as the functional monomer. A thin layer of poly (VBZA) imprinted with Sibiskoside was immobilized on the surface of magnetic carriers. Attributing to the amido group introduced into the magnetic particles, the template could attract and bind to the surface and promote the formation of a hydrogen bond system between the carrier, template molecules and functional monomer. High-density molecular recognition sites grew on the surface of magnetic substrate. The adsorption reached equilibrium at approximately 150 min, while fast adsorption occurred during the first 60 min. The maximum adsorption capacity has been found to be 13.75 mg g(-1) according to calculation with the Langmuir isotherm. The selectivity coefficients of Molecular imprinting polypers (MIPs) for Sibiskoside with respect to Andrographolide, Loganin, Gastrodin, geraniol-1-O-[alpha-L-rhamnopyranosyl-(1 -> 6)-1-beta-D-glucopyranosidel (GRG), Sibiscolacton and Sibiraic acid were 2.26, 1.43, 1.701.56, 1.05, 0.73 and, respectively. The results indicated that the MIPs possessed good specific adsorption capacity and selectivity toward Sibiskoside and had the potential to be a candidate for the separation and purification of monoterpenes from Sibiraea angustata, which is of great significance to obesity management.
机译:尽管几十年来研究,但是从复杂的天然产物中有效和选择性提取目标化合物的一般方法仍然难以实现。通过在分散性 - 增强的磁性纳米颗粒表面上引入官能酰胺基团,合成了通过氢键相互作用选择性地从Sibiraea angustata的平静中选择性地识别Sibiskide(单萜)的纳米颗粒受体。通过四乙基外硅酸硅酸酯(TEOS),氨基和氨基官能团,使用4-乙烯基苯甲酸(VBZA)作为官能单体,依次改变超顺磁性Fe3O4纳米颗粒。将与酸丝松丝酯印记的薄的聚(VBZA)层固定在磁性载体的表面上。归因于引入磁性颗粒的Amido组,模板可以吸引和结合表面并促进载体,模板分子和功能性单体之间的氢键系统的形成。高密度分子识别位点在磁性基材表面上增长。吸附在大约150分钟内达到平衡,而在前60分钟期间发生快速吸附。根据使用Langmuir等温线的计算,已发现最大吸附容量为13.75mg g(-1)。 Sibiskinide关于Androghrapholide,Loganin,Gastrodin,Geraniol-1-O-α-L- rham吡喃糖基 - (1-> 6)-1-β-D-吡喃葡萄糖苷(GRG ),Sibiscolidon和西贝里酸分别为2.26,1.43,1.701.56,1.05,0.73和。结果表明,MIPS具有良好的特异性吸附能力和对SIBISKIDE的选择性,并且有可能成为Sibiraea angustata的单萜分离和纯化的候选物,这对肥胖管理具有重要意义。

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