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Uptake, Deposition, and Metabolism of Triphenyl Phosphate in Embryonated Eggs and Chicks of Japanese Quail (Coturnix japonica)

机译:鹌鹑蛋和雏鸡的卵,小鸡中磷酸三苯酯的吸收,沉积和代谢

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The toxicokinetics of triphenyl phosphate (TPHP) in vivo including the uptake, deposition, and biotransformation into the metabolite diphenyl phosphate (DPHP) is presently reported in embryonated eggs and chicks of Japanese quail. Quail were dosed with TPHP at 3 concentrations by air cell egg injection on embryonic day 0, followed by daily oral dosing after chicks hatched (5 d). Vehicle-only exposed controls were also used. In dosed eggs, only 33% of the TPHP remained 2 d after injection (no hepatic development); after 10 d (post-hepatogenesis), only 2% remained. The estimated TPHP half-lives in the eggs ranged from 1.1 to 1.8 d for the 3 dosed groups. In all exposed eggs and chicks, DPHP significantly increased with dose (0.001 < p < 0.044). It appears that DPHP is an important metabolite in quail, making up 41 to 74% of all metabolites formed in embryonated eggs. In chicks, at medium and high doses, DPHP concentrations significantly exceeded those of TPHP (p <= 0.007), making up 67 and 76% of the total burden, respectively. Our findings suggest that rapid TPHP metabolism occurred in chicks and embryonated quail eggs but that this may vary with the age of the embryonated egg and the stage of embryo development, which should be considered when evaluating concentrations of TPHP and DPHP measured in eggs of wild birds. Environ Toxicol Chem 2020;00:1-9. (c) 2019 Her Majesty the Queen in Right of Canada. Environmental Toxicology and Chemistry (c) 2019 SETAC
机译:目前在日本鹌鹑的胚卵和雏鸡中报道了磷酸三苯酯(TPHP)在体内的毒代动力学,包括其吸收,沉积和向代谢性磷酸二苯酯(DPHP)的生物转化。在胚胎的第0天,通过空气鸡蛋注射给鹌鹑以3种浓度的TPHP给药,然后在雏鸡孵化后每天口服给药(5天)。还使用了仅用于车辆的暴露控制。在注射后的卵中,注射后2 d仅剩下33%的TPHP(无肝发育)。 10天后(肝发生后),仅剩下2%。对于三个剂量组,估计的卵中TPHP半衰期为1.1至1.8 d。在所有暴露的鸡蛋和雏鸡中,DPHP随剂量显着增加(0.001 <0.044)。看来DPHP是鹌鹑的重要代谢产物,占胚卵中所有代谢产物的41%至74%。在中等剂量和高剂量的雏鸡中,DPHP的浓度明显超过TPHP的浓度(p <= 0.007),分别占总负担的67%和76%。我们的发现表明,TPHP代谢在雏鸡和鹌鹑蛋中快速发生,但是这可能会随着胚蛋的年龄和胚胎发育阶段的变化而变化,在评估野禽蛋中TPHP和DPHP的浓度时应予以考虑。环境毒性化学2020; 00:1-9。 (c)2019年加拿大女王女王Ma下。环境毒理学与化学(c)2019 SETAC

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