2009CHINESE JOURNAL OF ANALYTICAL CHEMISTRY (CHINESE VERSION)Requires access

Hydroxyl Group Derivatization of Steroid Environmental Endocrine Disrupting Chemicals

Xue Pan

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Abstract

The derivatization towards the hydroxyl groups of steroid environmental endocrine disrupting chemi-cals,such as estrone( E1) ,17β-estradiol( E2) ,estriol( E3) and 17α-ethynylestradoil( EE2) ,with N,O-bis ( trimethylsilyl) trifluoroacetamide( BSTFA) as derivatization reagent followed by gas chromatography-mass spectrometry( GC-MS) was studied. The effects of the amount of BSTFA,derivatization temperature and time on the derivatization of target compounds,as well as the stability of steroid derivatives,calibration curves,instrumental quantification limits were investigated. The cleavage mechanism of steroid derivatives characteris-tic fragment ions was also interpreted. The results showed that better derivatization results were obtained when the amount of BSTFA was 25 μL for 100 μL steroids standard mix solution at 0. 01 g/L; it is unnecessary to heating in the derivatization,better results were obtained when the steroids were derivatized with BSTFA at room temperature( 20 ℃) for 10 min. The derivatives of target compounds were stable because their relative response factors( RRFs) had no observable change when deposited at -20 ℃ for 48 h. Under the optimal conditions,good linear correlation was obtained and the instrumental quantification limit was 0. 3 μg/L for E1 and E2,while it was 5 μg/L for EE2 and E3.

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What this paper is about

The derivatization towards the hydroxyl groups of steroid environmental endocrine disrupting chemi-cals,such as estrone( E1) ,17β-estradiol( E2) ,estriol( E3) and 17α-ethynylestradoil( EE2) ,with N,O-bis ( trimethylsilyl) trifluoroacetamide( BSTFA) as derivatization reagent followed by gas chromatography-mass spectrometry( GC-MS) was studied. The effects of the amount of BSTFA,derivatization temperature and time on the derivatization of target compounds,as well as the stability of steroid derivatives,calibration curves,instrumental quantification limits were investigated. The cleavage mechanism of steroid derivatives characteris-tic fragment ions was also interpreted. The results showed that better derivatization results were obtained when the amount of BSTFA was 25 μL for 100 μL steroids standard mix solution at 0. 01 g/L; it is unnecessary to heating in the derivatization,better results were obtained when the steroids were derivatized with BSTFA at room temperature( 20 ℃) for 10 min. The derivatives of target compounds were stable because their relative response factors( RRFs) had no observable change when deposited at -20 ℃ for 48 h. Under the optimal conditions,good linear correlation was obtained and the instrumental quantification limit was 0. 3 μg/L for E1 and E2,while it was 5 μg/L for EE2 and E3.

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Available abstract

The derivatization towards the hydroxyl groups of steroid environmental endocrine disrupting chemi-cals,such as estrone( E1) ,17β-estradiol( E2) ,estriol( E3) and 17α-ethynylestradoil( EE2) ,with N,O-bis ( trimethylsilyl) trifluoroacetamide( BSTFA) as derivatization reagent followed by gas chromatography-mass spectrometry( GC-MS) was studied. The effects of the amount of BSTFA,derivatization temperature and time on the derivatization of target compounds,as well as the stability of steroid derivatives,calibration curves,instrumental quantification limits were investigated. The cleavage mechanism of steroid derivatives characteris-tic fragment ions was also interpreted. The results showed that better derivatization results were obtained when the amount of BSTFA was 25 μL for 100 μL steroids standard mix solution at 0. 01 g/L; it is unnecessary to heating in the derivatization,better results were obtained when the steroids were derivatized with BSTFA at room temperature( 20 ℃) for 10 min. The derivatives of target compounds were stable because their relative response factors( RRFs) had no observable change when deposited at -20 ℃ for 48 h. Under the optimal conditions,good linear correlation was obtained and the instrumental quantification limit was 0. 3 μg/L for E1 and E2,while it was 5 μg/L for EE2 and E3.

Key concepts: BSTFA, Derivatization, Chemistry, Estrone, Trimethylsilyl, Chromatography, Steroid, Gas chromatography–mass spectrometry

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