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免疫亲和柱净化和薄层色谱法测定生咖啡中的赭曲霉毒素A

Immunoaffinity column clean-up and thin layer chromatography for determination of ochratoxin A in green coffee.

作者信息

Santos E A, Vargas E A

机构信息

Ministério da Agricultura e do Abastecimento, Laboratório de Controle de Qualidade e Segurança Alimentar/LAV-MG. Av. Raja Gabaglia, 245, BH, MG, Brazil, CEP 30380-090.

出版信息

Food Addit Contam. 2002 May;19(5):447-58. doi: 10.1080/02652030110213717.

Abstract

An immunoaffinity clean-up-based method for determining ochratoxin A (OTA) in green coffee aiming at one-dimensional thin layer chromatography (TLC) analysis was established. OTA was extracted with a mixture of methanol and aqueous sodium hydrogen carbonate solution, purified through an immunoaffinity column, separated on normal or reversed-phase (RP) TLC plates and detected and quantified by visual and densitometric analysis. The linear equation of the standard calibration curve by densitometric analysis gave R(2) > 0.999 (0.04-84 ng). The mean recovery (R) of OTA from spiked samples (1.8-109 microg kg(-1)) by densitometric and visual analyses were 98.4 and 103.8%, respectively. The relative standard deviations (RSD) for densitometric and visual analysis varied from 1.1 to 24.9% and from 0.0 to 18.8%, respectively. The RSD for naturally contaminated samples by densitometry (three levels of contamination, n = 3) varied from 11.1 to 18.1%. The correlation (R(2)) between high-performance liquid chromatography (HPLC) and densitometry, and between visual and densitometric analysis for spiked samples were > 0.99. The limit of detection (LOD) of the method was 0.5 microg kg(-1) for normal TLC. Toluene-ethyl acetate-88% formic acid (6:3:1 v/v/v) and acetonitrile-methanol-water-glacial acetic acid (35:35:29:10 v/v/v/v) were regarded as the suitable TLC solvents for eluting both standards and samples on normal and RP TLC plates, respectively. Toluene-acetic acid (99:1 v/v) was chosen as the spotting solvent among several others for giving the best sensitivity and resolution of OTA on TLC plates as well as the best recovery of OTA from standard and sample extract residues. Preliminary studies were carried out to investigate the reuse of the immunoaffinity column and the interference of caffeine in the OTA recovery.

摘要

建立了一种基于免疫亲和净化的方法,用于测定生咖啡豆中的赭曲霉毒素A(OTA),旨在进行一维薄层色谱(TLC)分析。OTA用甲醇和碳酸氢钠水溶液的混合物提取,通过免疫亲和柱纯化,在正相或反相(RP)TLC板上分离,并通过目视和光密度分析进行检测和定量。光密度分析得到的标准校准曲线线性方程的R(2)>0.999(0.04 - 84 ng)。通过光密度和目视分析,加标样品(1.8 - 109 μg kg(-1))中OTA的平均回收率(R)分别为98.4%和103.8%。光密度和目视分析的相对标准偏差(RSD)分别为1.1%至24.9%和0.0%至18.8%。光密度法测定天然污染样品(三个污染水平,n = 3)的RSD为11.1%至18.1%。加标样品的高效液相色谱(HPLC)与光密度法之间以及目视与光密度分析之间的相关性(R(2))>0.99。该方法对正常TLC的检测限(LOD)为0.5 μg kg(-1)。甲苯 - 乙酸乙酯 - 88%甲酸(6:3:1 v/v/v)和乙腈 - 甲醇 - 水 - 冰醋酸(35:35:29:10 v/v/v/v)分别被视为在正相和反相TLC板上洗脱标准品和样品的合适TLC溶剂。在几种点样溶剂中,甲苯 - 乙酸(99:1 v/v)被选为能在TLC板上提供OTA最佳灵敏度和分辨率以及从标准品和样品提取物残渣中获得OTA最佳回收率的溶剂。进行了初步研究以考察免疫亲和柱的重复使用以及咖啡因对OTA回收率的干扰。

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