利用声化学合成的分子印迹聚合物多用途、可靠地提取植物甾醇

Eleonora Oliva , Sara Palmieri , Francesco Della Valle , Fabiola Eugelio , Federico Fanti , Alessandro Ciccola , Manuel Sergi , Michele Del Carlo , Dario Compagnone
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引用次数: 0

摘要

植物甾醇(PSs)是甾醇家族中具有生物活性的化合物,以游离和共轭形式存在于多种复杂的食物和植物基质中。人们之所以对这些化合物感兴趣,是出于植物治疗的目的,特别是它们对胆固醇代谢的作用和对心血管疾病的影响。因此,需要开发能够选择性地提取目标分析物并对其进行高精度鉴定和量化的方法。这项工作提出用声波化学方法合成 PS 的分子印迹聚合物 (MIP),实现快速聚合步骤(5 分钟)。这种拟议的 MIP 能够从属于不同类别(十字花科、干果和豆科)的多种植物和食品基质中提取 8 种 PS(黄铜甾醇、豆甾醇、莰丝醇、莰丝醇、豆甾醇、β-谷甾醇、Δ5-芒甾醇、α-菠甾醇),并与超高效液相色谱-串联质谱(UHPLC-MS/MS)联用。事实证明,基于分散固相萃取(dSPE-MIP)和靶向分析的 MIP 在应对与植物提取基质的复杂性相关的挑战、最大限度地减少干扰方面特别有效。基质效应控制在±15%以内,确保了该方法的稳健性和可靠性。该方法成功实现了 8 种不同 PS 的鉴定和定量,回收率从 65% 到 100% 不等,令人满意。该方法可替代传统方法,灵敏度、选择性和整体性能均有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Versatile and reliable extraction of phytosterols employing sonochemical synthesized molecularly imprinted polymer

Versatile and reliable extraction of phytosterols employing sonochemical synthesized molecularly imprinted polymer

Phytosterols (PSs) are bioactive compounds in the sterol family, present in numerous complex food and plant matrices in free and conjugated forms. The interest in these compounds arises for phytotherapeutic purposes, particularly for their action on cholesterol metabolism and impact on cardiovascular diseases. There is a need to develop approaches that can selectively extract target analytes and accurately identify and quantify them with high precision. This work proposed the synthesis of molecularly imprinted polymers (MIPs) for PSs with a sonochemical approach, enabling a rapid polymerization step (5 min). This proposed MIP was able to extract 8 PSs (brassicasterol, stigmastanol, campesterol, campestanol, stigmasterol, β-sitosterol, Δ5-avenasterol, α-spinasterol) from a wide range of plant and food matrices belonging to different classes (Brassicaceae, dried fruits and Leguminosae) and was coupled to ultra-high liquid chromatography with tandem mass spectrometry (UHPLC-MS/MS). MIP based on dispersed solid phase extraction (dSPE-MIP) and targeted analysis has proven to be particularly effective in addressing the challenges associated with the complexity of plant-derived matrices, minimising interferences. This was demonstrated by the excellent control of the matrix effect, which was within ±15 %, ensuring the robustness and reliability of the method. The identification and quantification of 8 different PSs was successfully achieved with satisfactory recovery values ranging from 65 % to 100 %. The proposed strategy offers an affordable alternative to classical methods, providing enhanced sensitivity, selectivity and overall performance.

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来源期刊
Journal of chromatography open
Journal of chromatography open Analytical Chemistry
CiteScore
2.50
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