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Separation and Purification of Aflatoxins by Centrifugal Partition Chromatography

机译:离心分配色谱法分离纯化黄曲霉毒素

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摘要

Aflatoxins are mycotoxins that are produced by several species of filamentous fungi. In the European Union, the concentration limits for this group of mycotoxins in food and feed products are very low (on the order of parts per billion). Thus, relatively high amounts of these substances in their pure forms are required as reference standards. Chromatographic techniques based on solid stationary phases are generally used to purify these molecules; however, liquid–liquid chromatographic separations may be a promising alternative. Therefore, this study proposes a liquid–liquid chromatographic method for the separation of four aflatoxins and impurities. To optimise the method, numerous biphasic solvent systems (chloroform-, acetone- and acetic acid-based systems) were tested and evaluated in terms of their effectiveness at partitioning aflatoxins; the toluene/acetic acid/water (30:24:50, v/v/v/%) system was found to be the most efficient for application in centrifugal partition chromatographic instrument. Using liquid–liquid instrumental separation, the four aflatoxins, namely B1 (400 mg), B2 (34 mg), G1 (817 mg) and G2 (100 mg), were successfully isolated with 96.3%–98.2% purity from 4.5 L of Aspergillus parasiticus fermented material in a 250 mL centrifugal partition chromatography column. The identities and purities of the purified components were confirmed, and the performance parameters of each separation step and the whole procedure was determined. The developed method could be effectively used to purify aflatoxins for analytical applications.
机译:黄曲霉毒素是霉菌毒素,由几种丝状真菌产生。在欧盟中,这类霉菌毒素在食品和饲料产品中的浓度限值非常低(大约十亿分之一)。因此,需要相对大量的其纯净形式的物质作为参考标准。通常使用基于固态固定相的色谱技术来纯化这些分子。但是,液相色谱分离可能是一个有前途的选择。因此,这项研究提出了一种液相色谱法,用于分离四种黄曲霉毒素和杂质。为了优化该方法,测试并评估了许多双相溶剂系统(基于氯仿,丙酮和乙酸的系统)在分配黄曲霉毒素方面的有效性;甲苯/乙酸/水(30:24:50,v / v / v /%)系统被发现是最有效的离心分离色谱仪器。使用液-液仪器分离技术,成功地从4.5升乙醇中分离出4种黄曲霉毒素,分别为B1(400 mg),B2(34 mg),G1(817 mg)和G2(100 mg),纯度为96.3%–98.2%。在250 mL离心分配色谱柱中对寄生曲霉进行发酵。确定纯化成分的身份和纯度,并确定每个分离步骤和整个程序的性能参数。所开发的方法可以有效地用于纯化黄​​曲霉毒素以用于分析应用。

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