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井中井系统:一种改善胚胎发育的有效方法。

The Well-of-the-Well system: an efficient approach to improve embryo development.

作者信息

Vajta Gábor, Korösi Tamás, Du Yutao, Nakata Kumiko, Ieda Shoko, Kuwayama Masashige, Nagy Zsolt Peter

机构信息

Pivet Medical Centre, 166-168 Cambridge St, Leederville, Perth, WA 6007, Australia.

出版信息

Reprod Biomed Online. 2008 Jul;17(1):73-81. doi: 10.1016/s1472-6483(10)60296-9.

Abstract

Transfer of human embryos at the blastocyst stage may offer considerable benefits including an increased implantation rate and a decreased risk of multiple pregnancies; however, blastocyst culture requires an efficient and reliable in-vitro embryo culture system. In this study, the effect of the Well-of-the-Well (WOW) system consisting of microwells formed on the bottom of the culture dish was tested in three mammalian species, including humans. The WOW system resulted in significant improvement when comparing the drops for culture of in-vitro-matured and parthenogenetically activated porcine oocytes, and in-vivo-derived mouse zygotes. In human embryos, using a sibling oocyte design, embryos cultured in WOW developed to the blastocyst stage in a significantly higher proportion than did embryos cultured traditionally (55% in WOW and 37% in conventional culture; P < 0.05). In a separate study, also in human, a total of 48 patients with a cumulative 214 unsuccessful previous IVF cycles were selected for the trials. In subsequent intracytoplasmic sperm injection cycles, oocytes/embryos were cultured individually in the WOW system or in microdrops. Transferable quality blastocyst development (48.9% of cultured zygotes) was observed in the WOW system. Ninety-four blastocysts transferred to 45 patients resulted in clinical pregnancy rates of 48.9%, including nine twin pregnancies, seven single pregnancies, five miscarriages and one ectopic pregnancy. The results indicate that the WOW system provides a promising alternative for microdrop culture of mammalian embryos, including human embryos.

摘要

囊胚期人类胚胎移植可能带来诸多益处,包括提高着床率和降低多胎妊娠风险;然而,囊胚培养需要高效可靠的体外胚胎培养系统。在本研究中,对由培养皿底部形成的微孔组成的“孔中孔”(WOW)系统在包括人类在内的三种哺乳动物物种中进行了测试。与用于体外成熟和孤雌激活猪卵母细胞以及体内来源的小鼠受精卵培养的液滴相比,WOW系统带来了显著改善。在人类胚胎中,采用同胞卵母细胞设计,在WOW中培养的胚胎发育到囊胚期的比例显著高于传统培养的胚胎(WOW中为55%,传统培养中为37%;P<0.05)。在另一项同样针对人类的研究中,共选择了48例先前IVF周期累计214次失败的患者进行试验。在随后的卵胞浆内单精子注射周期中,卵母细胞/胚胎分别在WOW系统或微滴中培养。在WOW系统中观察到了可移植质量囊胚的发育(培养受精卵的48.9%)。94个囊胚移植给45例患者,临床妊娠率为48.9%,包括9例双胎妊娠、7例单胎妊娠、5例流产和1例异位妊娠。结果表明,WOW系统为包括人类胚胎在内的哺乳动物胚胎微滴培养提供了一种有前景的替代方法。

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