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1.
Talanta ; 166: 375-382, 2017 May 01.
Article in English | MEDLINE | ID: mdl-28213249

ABSTRACT

New analytical strategies tend to automation of sample pre-treatment and flow analysis techniques provided a number of enhanced analytical methods allowing high throughput. Flow techniques are usually faster, more robust and more flexible than their batch equivalents. In addition, flow methods use less sample and reagent amounts and reduce analytical costs and waste. A flow injection solid-phase extraction pre-concentration system using a molecularly imprinted polymer (MIP) packed micro-column was developed for the determination of 1-hydroxypyrene in human urine with fluorescence detection. The pre-concentration of 1-hydroxypyrene on the MIP was carried out based on the specific retention of analyte by on-line introducing the sample into the micro-column system. Methanol and dichloromethane mixture was used to elute the retained analyte for fluorometric analysis. Important influencing factors were studied in detail, in batch and in flow (MISPE procedure optimisation, sample and eluent volumes, flow rate, dimensions of MIP micro-column and amounts of packing material, etc). To the best of our knowledge, this is the first on-line flow injection molecularly imprinted solid phase extraction for the pre-concentration and determination of hydroxylate PAH metabolite in urine samples. The optimised method was successfully applied to the determination of 1-Hydroxypyrene in spiked urine samples, with recoveries in the range of 74-85% and RSD<4.6%. Under optimum experimental conditions, the linearity concentration range used was 10-400µgL-1, R2>0.996. We obtained limit of detection and quantification of 3.1µgL-1 and 10.5µgL-1, respectively.


Subject(s)
Flow Injection Analysis , Molecular Imprinting/methods , Pyrenes/isolation & purification , Pyrenes/urine , Solid Phase Extraction/methods , Humans , Infant, Newborn , Polymers/chemical synthesis , Solvents/chemistry
2.
Talanta ; 126: 157-62, 2014 Aug.
Article in English | MEDLINE | ID: mdl-24881547

ABSTRACT

A molecularly imprinted polymer-matrix solid-phase dispersion methodology for simultaneous determination of five steroids in goat milk samples was proposed. Factors affecting the extraction recovery such as sample/dispersant ratio and washing and elution solvents were investigated. The molecularly imprinted polymer used as dispersant in the matrix solid-phase dispersion procedure showed high affinity to steroids, and the obtained extracts were sufficiently cleaned to be directly analyzed. Analytical separation was performed by micellar electrokinetic chromatography using a capillary electrophoresis system equipped with a diode array detector. A background electrolyte composed of borate buffer (25mM, pH 9.3), sodium dodecyl sulfate (10mM) and acetonitrile (20%) was used. The developed MIP-MSPD methodology was applied for direct determination of testosterone (T), estrone (E1), 17ß-estradiol (17ß-E2), 17α-ethinylestradiol (EE2) and progesterone (P) in different goat milk samples. Mean recoveries obtained ranged from 81% to 110%, with relative standard deviations (RSD)≤12%. The molecularly imprinted polymer-matrix solid-phase dispersion method is fast, selective, cost-effective and environment-friendly compared with other pretreatment methods used for extraction of steroids in milk.


Subject(s)
Milk/chemistry , Molecular Imprinting/methods , Polymers/chemistry , Solid Phase Extraction/methods , Steroids/analysis , Acetonitriles/chemistry , Animals , Borates/chemistry , Buffers , Chromatography, Micellar Electrokinetic Capillary , Estradiol/analysis , Estradiol/chemistry , Estradiol/isolation & purification , Estrone/analysis , Estrone/chemistry , Estrone/isolation & purification , Ethinyl Estradiol/analysis , Ethinyl Estradiol/chemistry , Ethinyl Estradiol/isolation & purification , Female , Goats , Molecular Structure , Pregnancy , Progesterone/analysis , Progesterone/chemistry , Progesterone/isolation & purification , Reproducibility of Results , Sodium Dodecyl Sulfate/chemistry , Steroids/chemistry , Steroids/isolation & purification , Testosterone/analysis , Testosterone/chemistry , Testosterone/isolation & purification
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