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健康小鼠阻塞输卵管中的胚胎休眠现象。

Embryonic dormancy phenomenon in obstructed healthy mouse fallopian tubes.

作者信息

Lee R K, Lin S P, Tsai Y J, Lin M H, Hwu Y M

机构信息

Division of Reproduction and Endocrinology, Department of Medical Research, Mackay Memorial Hospital, Tamshui, Taipei 25115, Taiwan.

出版信息

J Assist Reprod Genet. 2000 Oct;17(9):540-5. doi: 10.1023/a:1009402126770.

Abstract

PURPOSE

A mouse model of unilateral oviductal obstruction was designed to study whether healthy oviducts can support embryo development in an advanced stage toward blastocyst hatching and implantation when the embryos in the contralateral side normally move into the uterine cavity.

METHODS

The oviducts of 80 female ICR mice (aged 5-8 weeks) were ligated unilaterally 12-40 hr postcoitus. The ligated oviducts were isolated from day 4 to 19.5 postcoitus. Embryos within the ligated oviducts were then flushed out to record the developmental stage and compared with the conceptuses in the contralateral uterine horns with unligated oviducts. Embryos recovered from ligated oviducts were then cultured in vitro to observe their potential for further development.

RESULTS

In 33 mice, 53.4% (163/305) and 86.1% (241/280) of the morphologically normal blastocysts had hatched from the zona pellucida within the obstructed tube and contralateral uterine horns, respectively, on the 5th day postcoitus. The data demonstrated that the hatching process could take place within the obstructed fallopian tube, but the timing was delayed. From 5.5 to 19.5 days postcoitus, a total of 362 implanted embryos were obtained in unligated control uterine horns, but none of the 404 embryos in the artificially obstructed oviducts were implanted. The embryos within the ligated tubes were dormant in the hatched blastocyst stage as demonstrated by their ability to continue growing (98.2%) when removed from the oviduct to an in vitro environment.

CONCLUSIONS

In this study, we demonstrate that mouse embryos can hatch, although delayed, in obstructed healthy oviducts. Tubal pregnancy is not likely to happen in artificially obstructed healthy mouse fallopian tubes, since all the viable embryos were dormant at the hatched blastocyst stage.

摘要

目的

设计一种单侧输卵管阻塞的小鼠模型,以研究当对侧的胚胎正常移入子宫腔时,健康的输卵管是否能够支持胚胎发育至晚期,直至囊胚孵化和着床。

方法

对80只5-8周龄的雌性ICR小鼠在交配后12-40小时进行单侧输卵管结扎。在交配后第4天至19.5天分离结扎的输卵管。然后将结扎输卵管内的胚胎冲洗出来,记录其发育阶段,并与对侧输卵管未结扎的子宫角内的孕体进行比较。从结扎输卵管中回收的胚胎随后进行体外培养,以观察其进一步发育的潜力。

结果

在33只小鼠中,在交配后第5天,形态正常的囊胚分别有53.4%(163/305)和86.1%(241/280)从阻塞输卵管和对侧子宫角的透明带中孵化出来。数据表明,孵化过程可在阻塞的输卵管内发生,但时间延迟。在交配后5.5至19.5天,未结扎的对照子宫角中共获得362个着床胚胎,但人工阻塞的输卵管中的404个胚胎均未着床。结扎输卵管内的胚胎处于孵化囊胚阶段的休眠状态,这可从它们从输卵管取出到体外环境后仍能继续生长(98.2%)得到证明。

结论

在本研究中,我们证明小鼠胚胎能够在阻塞的健康输卵管中孵化,尽管时间延迟。人工阻塞的健康小鼠输卵管不太可能发生输卵管妊娠,因为所有存活的胚胎在孵化囊胚阶段均处于休眠状态。

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