Hausburg Mellisa A, Dekrey Gregory K, Salmen James J, Palic Michelle R, Gardiner Catherine S
University of Colorado, Boulder, USA.
Reprod Toxicol. 2005 Jul-Aug;20(2):239-46. doi: 10.1016/j.reprotox.2005.03.006.
Paraquat can cause oxidative stress through redox cycling, and preimplantation embryos are sensitive to oxidative stress in vitro. In this study, the effects of paraquat on preimplantation embryo development were examined. Exposure of preimplantation embryos (collected on the day after ovulation) to paraquat in vitro for 24 h at concentrations as low as 8 microM caused a significant decrease in the percentage of 8-cell embryos and an increase in the percentage of compacted morulae, but the content of reduced glutathione (GSH) in embryos was not changed. Altered embryo development was most likely due to premature compaction because a 42% decrease in cell number per compacted morulae was observed in embryos exposed to paraquat at 1 mM. Exposure of preimplantation embryos to paraquat in vitro for 4 days at 200 microM or higher eliminated development beyond the blastocyst stage. Exposure of bred female mice to paraquat at 30 mg/kg on day 2 after ovulation led to a small but significant decrease in the percentage of 8-cell embryos on day 3 without a detectable increase in the percentage of compacted morulae. No detectable change in preimplantation embryo development was found following paraquat exposure on the day of ovulation (day 0), although a significant decrease in embryo GSH was found on day 1. These data indicate that paraquat can adversely impact the development of preimplantation embryos in vitro and in vivo without consistent modulation of GSH level.
百草枯可通过氧化还原循环导致氧化应激,而植入前胚胎在体外对氧化应激敏感。在本研究中,检测了百草枯对植入前胚胎发育的影响。将植入前胚胎(排卵后第二天收集)在体外暴露于低至8微摩尔浓度的百草枯中24小时,导致8细胞胚胎百分比显著降低,致密桑葚胚百分比增加,但胚胎中还原型谷胱甘肽(GSH)的含量未改变。胚胎发育改变最可能是由于过早致密化,因为在暴露于1毫摩尔百草枯的胚胎中,每个致密桑葚胚的细胞数量减少了42%。将植入前胚胎在体外暴露于200微摩尔或更高浓度的百草枯中4天,会消除囊胚期后的发育。在排卵后第2天,将经交配的雌性小鼠暴露于30毫克/千克的百草枯中,导致第3天8细胞胚胎百分比略有但显著下降,而致密桑葚胚百分比没有可检测到的增加。在排卵当天(第0天)暴露于百草枯后,未发现植入前胚胎发育有可检测到的变化,尽管在第1天发现胚胎GSH显著下降。这些数据表明,百草枯可在体外和体内对植入前胚胎的发育产生不利影响,而不会一致地调节GSH水平。