Beijing Advanced Innovation Centre for Food Nutrition and Human Health, Department of Applied Chemistry , China Agricultural University , No. 2 West Yuanmingyuan Road , Beijing 100193 , P. R. China.
Beijing Key Laboratory of Emerging Organic Contaminants Control, State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment , Tsinghua University , Beijing 100084 , P. R. China.
J Agric Food Chem. 2019 Dec 26;67(51):14019-14026. doi: 10.1021/acs.jafc.9b05083. Epub 2019 Nov 25.
Flufiprole is an insecticide used in the rice field and may pose a potential threat to aquatic organisms including loach. To investigate the transformation products of flufiprole in loach, the accumulation, elimination, and tissue distribution in vivo as well as the metabolism in vitro at the enantiomeric level were studied. Flufiprole enantiomers rapidly accumulated and were metabolized to flufiprole sulfone, fipronil, and flufiprole amide in the tissues. Enantiomeric fractions showed the preferential accumulation and degradation of -flufiprole. The residue of the chiral metabolite flufiprole amide was also enantioselective. The individual enantiomer treatment indicated that -flufiprole was preferentially metabolized to flufiprole sulfone and -flufiprole to fipronil. The metabolites were more persistent than flufiprole with longer half-lives. The metabolism in liver microsomes also reached consistent conclusions. The dietary risk assessment indicated that flufiprole would not cause unacceptable threats to human health. However, the metabolites of flufiprole should be considered in the risk evaluation.
氟吡呋喃酮是一种用于稻田的杀虫剂,可能对包括泥鳅在内的水生生物构成潜在威胁。为了研究氟吡呋喃酮在泥鳅体内的转化产物,本研究在体内进行了积累、消除和组织分布研究,以及在体外进行了对映体水平的代谢研究。氟吡呋喃酮对映体在组织中迅速积累,并代谢为氟吡呋喃砜、氟虫腈和氟吡呋喃酰胺。对映体分数表现出对 - 氟吡呋喃酮的优先积累和降解。手性代谢物氟吡呋喃酰胺的残留也具有对映体选择性。单一对映体处理表明,- 氟吡呋喃酮优先代谢为氟吡呋喃砜,而 - 氟吡呋喃酮优先代谢为氟虫腈。与氟吡呋喃酮相比,这些代谢物具有更高的持久性和更长的半衰期。肝微粒体代谢也得出了一致的结论。膳食风险评估表明,氟吡呋喃酮不会对人类健康造成不可接受的威胁。然而,应在风险评估中考虑氟吡呋喃酮的代谢物。