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适配体功能化 Fe3O4 磁性纳米粒子作为固相萃取吸附剂用于从黄柏中选择性萃取小檗碱。

Aptamer-functionalized Fe O magnetic nanoparticles as a solid-phase extraction adsorbent for the selective extraction of berberine from Cortex phellodendri.

机构信息

Guangxi Scientific Research Centre of Traditional Chinese Medicine, Guangxi University of Chinese Medicine, Nanning, PR China.

Guangxi Key Laboratory of Chinese Medicine Foundation Research, Guangxi University of Chinese Medicine, Nanning, PR China.

出版信息

J Sep Sci. 2017 Jul;40(14):2933-2940. doi: 10.1002/jssc.201700103. Epub 2017 Jun 22.

DOI:10.1002/jssc.201700103
PMID:28556490
Abstract

The extraction adsorbent was fabricated by immobilizing the highly specific recognition and binding of aptamer onto the surface of Fe O magnetic nanoparticles, which not only acted as recognition elements to recognize and capture the target molecule berberine from the extract of Cortex phellodendri, but also could favor the rapid separation and purification of the bound berberine by using an external magnet. The developed solid-phase extraction method in this work was useful for the selective extraction and determination of berberine in Cortex phellodendri extracts. Various conditions such as the amount of aptamer-functionalized Fe O magnetic nanoparticles, extraction time, temperature, pH value, Mg concentration, elution time and solvent were optimized for the solid-phase extraction of berberine. Under optimal conditions, the purity of berberine extracted from Cortex phellodendri was as high as 98.7% compared with that of 4.85% in the extract, indicating that aptamer-functionalized Fe O magnetic nanoparticles-based solid-phase extraction method was very effective for berberine enrichment and separation from a complex herb extract. The applicability and reliability of the developed solid-phase extraction method were demonstrated by separating berberine from nine different concentrations of one Cortex phellodendri extract. The relative recoveries of the spiked solutions of all the samples were between 95.4 and 111.3%, with relative standard deviations ranging between 0.57 and 1.85%.

摘要

该萃取吸附剂是通过将适配体的高特异性识别和结合固定在 Fe3O4 磁性纳米粒子表面来制备的,它不仅可以作为识别元件,从黄柏提取物中识别和捕获目标分子小檗碱,还可以通过外部磁场促进结合的小檗碱的快速分离和纯化。本工作中开发的固相萃取方法可用于黄柏提取物中小檗碱的选择性提取和测定。优化了各种条件,如适配体功能化 Fe3O4 磁性纳米粒子的量、萃取时间、温度、pH 值、Mg 浓度、洗脱时间和溶剂,以实现小檗碱的固相萃取。在最佳条件下,与提取物中 4.85%的纯度相比,从黄柏中提取的小檗碱的纯度高达 98.7%,表明基于适配体功能化 Fe3O4 磁性纳米粒子的固相萃取方法非常有效地用于从小檗碱从复杂的草药提取物中进行富集和分离。通过从 9 种不同浓度的黄柏提取物中分离小檗碱,证明了所开发的固相萃取方法的适用性和可靠性。所有样品的加标溶液的相对回收率在 95.4%至 111.3%之间,相对标准偏差在 0.57%至 1.85%之间。

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