TY - JOUR
T1 - Using mass spectrometry to highlight structures of degradation compounds obtained by photolysis of chloroacetamides
T2 - Case of acetochlor
AU - Souissi, Yasmine
AU - Bourcier, Sophie
AU - Ait-Aissa, Sélim
AU - Maillot-Maréchal, Emmanuelle
AU - Bouchonnet, Stéphane
AU - Genty, Christophe
AU - Sablier, Michel
PY - 2013/10/4
Y1 - 2013/10/4
N2 - The photooxidation of acetochlor (a pesticide belonging to the acetamides group) using a polychromatic UV irradiation in ultrapure water was studied. This study reports the efficiency of mass spectrometry for the characterization of photodegradation products of acetochlor. Decompositions of protonated ions MH+ are proposed in electrospray (ESI) mode for LC-MS, while electron ionization (EI) and chemical ionization modes (CI) are used for GC-MS. The knowledge of fragmentation and the use of a combination of experiments (MS/MS, high resolution) allow the characterization of photoproducts. Structural elucidation is assisted by the use of photolysed deuterated compounds. Fifteen major degradation products have been characterized, five by LC-QTOF, six photoproducts by GC-ITMS, and four are observed by both techniques. In vitro bioassays based on the quantification of receptor-mediated activity demonstrated that acetochlor photolysis engenders a moderate but significant estrogenic activity. Moreover, a quantitative structure-activity relationship (QSAR) approach was used to assess the potential toxicity effect of acetochlor and its by-products. The predictions were analyzed showing a variety of toxicity profiles of acetochlor photoproducts depending on the toxicological investigated endpoint.
AB - The photooxidation of acetochlor (a pesticide belonging to the acetamides group) using a polychromatic UV irradiation in ultrapure water was studied. This study reports the efficiency of mass spectrometry for the characterization of photodegradation products of acetochlor. Decompositions of protonated ions MH+ are proposed in electrospray (ESI) mode for LC-MS, while electron ionization (EI) and chemical ionization modes (CI) are used for GC-MS. The knowledge of fragmentation and the use of a combination of experiments (MS/MS, high resolution) allow the characterization of photoproducts. Structural elucidation is assisted by the use of photolysed deuterated compounds. Fifteen major degradation products have been characterized, five by LC-QTOF, six photoproducts by GC-ITMS, and four are observed by both techniques. In vitro bioassays based on the quantification of receptor-mediated activity demonstrated that acetochlor photolysis engenders a moderate but significant estrogenic activity. Moreover, a quantitative structure-activity relationship (QSAR) approach was used to assess the potential toxicity effect of acetochlor and its by-products. The predictions were analyzed showing a variety of toxicity profiles of acetochlor photoproducts depending on the toxicological investigated endpoint.
KW - Acetochlor
KW - Identification of photoproducts
KW - In vitro assay
KW - Mass spectrometry
KW - Potential toxicity
U2 - 10.1016/j.chroma.2013.07.091
DO - 10.1016/j.chroma.2013.07.091
M3 - Article
AN - SCOPUS:84883823671
SN - 0021-9673
VL - 1310
SP - 98
EP - 112
JO - Journal of Chromatography A
JF - Journal of Chromatography A
ER -