首页> 外文期刊>Analytical methods >Synthesis and characterization of molecularly imprinted silica mediated by Al for solid phase extraction of quercetin in Ginkgo biloba L.
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Synthesis and characterization of molecularly imprinted silica mediated by Al for solid phase extraction of quercetin in Ginkgo biloba L.

机译:Al固相萃取银杏槲皮素中铝介导分子印迹二氧化硅的合成与表征。

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摘要

A bi-functionalized molecularly imprinted silica (MIS) was prepared for solid phase extraction of quercetin. To ensure the specificity of molecular recognition, aluminum ions were inserted in the silica matrix to form Lewis and Bransted acid sites and allow the interaction with quercetin, as well as with 3-aminopropyltriethoxysilane as a functional monomer. A sol-gel process was used to prepare MIS-Al with tetraethoxysilane as the crosslinker reagent. The efficiency of imprinted silica was evaluated by comparing the amount of quercetin adsorbed by MIS-Al with those by non-imprinted silica (NIS-Al) and control polymers without Al. The adsorption capacity and extraction efficiency were studied using different solvents and a mixture of ethanol-water (60 : 40, v/v) was found to be most effective for the binding of quercetin with MIS-Al while pure ethanol was most effective for extraction. The selectivity was evaluated by HPLC using a mixture of quercetin and rutin, a molecule which was considered to have an analogous structure. Characterization of the imprinted silica and adsorption capacity tests suggested that the MIS-Al had a higher adsorption capacity and reproducibility than MIS without Al (248.5 ± 3.5 against 159.7 ± 35.0), proving that the presence of aluminum ions improved the selectivity and efficiency for quercetin extraction. Herbal medicine samples of Ginkgo biloba L capsules (40 and 80 mg) were analysed by passing the extract through an SPE-MIS-Al cartridge and the fractions collected were analysed by HPLC-PDA. The MIS-Al was shown to be selective and resulted in cleaner chromatograms with better resolution of the quercetin peak, proving this to be an effective clean-up step before chromatographic analysis. By the proposed method, it was found that 40 and 80 mg capsules contained 0.25 ± 0.01 mg and 0.24 ± 0.01 mg quercetin per capsule of Ginkgo biloba L, corresponding to 2.6% and 1.3% (w/w), respectively. These results are in agreement with scientific studies in the literature that reports a range of 0.5 to 4.7% mg of quercetin per capsule.
机译:制备用于槲皮素的固相萃取的双功能分子印迹硅胶(MIS)。为了确保分子识别的特异性,将铝离子插入二氧化硅基质中形成路易斯酸和布朗斯台德酸位,并允许与槲皮素以及作为功能单体的3-氨丙基三乙氧基硅烷相互作用。使用溶胶-凝胶法以四乙氧基硅烷为交联剂制备MIS-Al。通过比较MIS-Al与非印迹二氧化硅(NIS-Al)和不含Al的对照聚合物的槲皮素吸附量来评估印迹二氧化硅的效率。使用不同的溶剂研究了吸附能力和萃取效率,发现乙醇-水(60:40,v / v)的混合物对槲皮素与MIS-Al的结合最有效,而纯乙醇对萃取最有效。使用槲皮素和芦丁的混合物通过HPLC评估选择性,该分子被认为具有类似的结构。压印二氧化硅的表征和吸附能力测试表明,MIS-Al比不含Al的MIS具有更高的吸附能力和重现性(248.5±3.5对159.7±35.0),证明铝离子的存在提高了槲皮素的选择性和效率。萃取。通过将提取物通过SPE-MIS-Al药筒分析银杏L胶囊的草药样品(40和80 mg),并通过HPLC-PDA分析收集的级分。 MIS-A1具有选择性,色谱图更清晰,槲皮素峰的分辨率更高,证明这是色谱分析之前有效的净化步骤。通过提出的方法,发现每粒银杏L胶囊40和80 mg胶囊含有0.25±0.01 mg和0.24±0.01 mg槲皮素,分别相当于2.6%和1.3%(w / w)。这些结果与文献中的科学研究相一致,文献报道每个胶囊中槲皮素的含量为0.5至4.7%mg。

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