Tarigh Ghazale Daneshvar, Shemirani Farzaneh
Department of Analytical Chemistry, University College of Science, University of Tehran, P.O. Box 14155-6455, Tehran, Iran.
Talanta. 2014 Jun;123:71-7. doi: 10.1016/j.talanta.2014.01.045. Epub 2014 Feb 14.
A simple and rapid method for the simultaneous in situ derivatizaion, preconcentration and extraction of thiamine (vitamin B1) as a model analyte was developed by a novel quantitative method, namely ultrasound-assisted dispersive magnetic solid phase extraction spectrofluorimetry (USA-DMSPE-FL) from different real samples. This method consists of sample preparation, in situ derivatization, exhaustive extraction and clean up by a single process. High extraction efficiency and in situ derivatization in a short period of time is the main advantages of this procedure. For this purpose, the reusable magnetic multi-wall carbon nanotube (MMWCNT) nanocomposite was used as an adsorbent for preconcentration and determination of thiamine. Thiamine was, simultaneously, in situ derivatized as thiochrome by potassium hexacyanoferrate (III) and adsorbed on MMWCNT in an ultrasonic water bath. The MMWCNTs were then collected using an external magnetic field. Subsequently, the extracted thiochrome was washed from the surface of the adsorbent and determined by spectrofluorimetry. The developed method, which has been analytically characterized under its optimal operating conditions, allows the detection of the analyte in the samples with method detection limits of 0.37 µg L(-1). The repeatability of the method, expressed as the relative standard deviation (RSD, n=6), varies between 2.0% and 4.8% in different real samples, while the enhancement factor is 197. The proposed procedure has been applied for the determination of thiamine in biological (serum and urine), pharmaceutical (multivitamin tablet and B complex syrup) and foodstuff samples (cereal, wheat flour, banana and honey) with the good recoveries in the range from 90% to 105%.
本文开发了一种简单快速的方法,通过一种新颖的定量方法,即超声辅助分散磁固相萃取荧光光谱法(USA-DMSPE-FL),从不同实际样品中同时对硫胺素(维生素B1)进行原位衍生化、预富集和萃取。该方法通过单一过程完成样品制备、原位衍生化、彻底萃取和净化。短时间内实现高萃取效率和原位衍生化是此方法的主要优点。为此,可重复使用的磁性多壁碳纳米管(MMWCNT)纳米复合材料被用作吸附剂,用于硫胺素 的预富集和测定。硫胺素同时被铁氰化钾(III)原位衍生化为硫色素,并在超声水浴中吸附到MMWCNT上。然后使用外部磁场收集MMWCNT。随后,从吸附剂表面洗脱出萃取的硫色素,并通过荧光光谱法进行测定。所开发的方法在最佳操作条件下进行了分析表征,其方法检测限为0.37 μg L(-1),可检测样品中的分析物。该方法的重复性以相对标准偏差(RSD,n = 6)表示,在不同实际样品中为2.0%至4.8%,富集因子为197。所提出的方法已应用于生物样品(血清和尿液)、药物样品(多种维生素片和复合维生素糖浆)和食品样品(谷物、小麦粉、香蕉和蜂蜜)中硫胺素的测定,回收率在90%至105%之间。