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Zuogui Wan rescues the high-glucose-induced damaging effects on early embryo development

机译:左桂万挽救了高糖诱导的对早期胚胎发育的破坏作用

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Background High concentration of glucose in culture medium affects the developmental process and the quality of the pre-implantation embryo. This study examined the effects of Zuogui Wan (ZGW) supplementation on early embryo development cultured in high-glucose medium. Methods Embryos were cultured in high-glucose medium with or without ZGW supplementation. Developmental rate and competence was evaluated by cleavage rate, blastocyst rate, and blastocyst total cell number, reactive oxygen species (ROS) level, glutathione (GSH) concentration, and metabolome were also measured to determine the effect of ZGW on embryo development at the cellular level. Results Compared with the vehicle group, supplementation of 0.01?% (v/v) ZGW to high-glucose medium significantly increased cleavage rate (80.1?±?1.0?% vs 72.1?±?1.3?%), blastocyst rate (50.5?±?1.0?% vs 41.3?±?1.7?%), and blastocyst total cell number (63.2?±?2.2 vs 57.2?±?1.6). ROS level was lower and GSH concentration in blastocysts was higher in ZGW-treated group. Metabolomic analysis found that the ratio of glucose to succinic acid and glucose to fumaric acid were lower in the ZGW-treated group . Conclusions Developmental rates of zygotes in high-glucose culture medium were significantly lower than those in regular culture medium. ZGW supplementation significantly improved embryo development and quality in high-glucose medium. Supplementing ZGW in high-glucose medium also significantly increased total cell number and GSH concentration but decreased ROS level in blastocysts likely by modifying metabolic profile during embryo development. Together, these data suggest that supplementation of ZGW rescues high-glucose-induced detrimental effects on pre-implantation embryo development.
机译:背景技术培养基中高浓度的葡萄糖会影响发育过程和植入前胚胎的质量。这项研究检查了左桂丸(ZGW)补充对在高葡萄糖培养基中培养的早期胚胎发育的影响。方法在高糖培养基中添加或不添加ZGW的条件下培养胚胎。通过卵裂率,囊胚率和囊胚总细胞数评估了发育速度和能力,还测量了活性氧(ROS)水平,谷胱甘肽(GSH)浓度和代谢组,以确定ZGW对细胞胚胎发育的影响。水平。结果与赋形剂组相比,在高葡萄糖培养基中添加0.01%(v / v)ZGW显着提高了卵裂率(80.1%±1.0%)对72.1%±1.3%(50.5%)。 ±±1.0 %%对41.3%±1.7%)和囊胚总细胞数(63.2%±2.2对57.2%±1.6)。 ZGW治疗组的ROS水平较低,囊胚中GSH浓度较高。代谢组学分析发现,ZGW治疗组的葡萄糖与琥珀酸的比例和葡萄糖与富马酸的比例较低。结论高糖培养基中受精卵的发育率明显低于普通培养基。 ZGW补充剂可显着改善高糖培养基中的胚胎发育和质量。在高葡萄糖培养基中补充ZGW还可显着增加总细胞数量和GSH浓度,但可能通过改变胚胎发育过程中的代谢谱来降低胚泡中的ROS水平。总之,这些数据表明,补充ZGW可以挽救高葡萄糖诱导的对植入前胚胎发育的有害影响。

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