小鼠在发情期腹膜内给予kisspeptin-10可诱导假妊娠。

IF 1.3 4区 生物学 Q4 CELL BIOLOGY
Genes to Cells Pub Date : 2023-10-27 DOI:10.1111/gtc.13077
Daisuke Mashiko, Mikiko Tokoro, Tatsuma Yao, Kazuo Yamagata
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引用次数: 0

摘要

一种生产假妊娠小鼠的简单方法支持幼鼠的生产。在本研究中,通过给予小鼠Kisspeptin-10(mKp-10)并将胚泡转移到子宫,获得怀孕的ICR小鼠,而不与输精管切除的小鼠交配。将mKp-10给药后的胚泡转移到阴道有缺口和红粉色的小鼠身上,导致65.2%(15/23)的妊娠,39.1%(34/87)的移植胚泡显示出足月生长。观察阴道涂片以准确确定发情周期,随后在发情期和胚泡转移期间对小鼠施用mKp10可导致95.2%(20/21)的妊娠率和50.7%(104/205)的出生率。关于mKp-10给药后的2-细胞移植,100%(8/8)的小鼠怀孕,45.0%(36/80)的胚胎出生。在发情期给小鼠施用mKp-10是产生假妊娠小鼠的方便方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Intraperitoneal administration of mouse kisspeptin-10 to mice during estrus stage induces pseudopregnancy

Intraperitoneal administration of mouse kisspeptin-10 to mice during estrus stage induces pseudopregnancy

A simple method for producing pseudopregnant mice supports pup production. In this study, pregnant ICR were obtained mice without mating with vasectomized mice via administration of mouse Kisspeptin-10 (mKp-10) and transferring blastocysts to the uterus. Blastocyst transfer after mKp-10 administration to mice with gapping and reddish pink vagina resulted in 65.2% (15/23) pregnancies, and 39.1% (34/87) of the transferred blastocysts showed full-term growth. Vaginal smears were observed for accurate estrus cycle determination, and subsequent administration of mKp10 to mice during the estrus stage and blastocyst transfer resulted in 95.2% (20/21) pregnancies and 50.7% (104/205) birth rates. Regarding 2-cell transfer after administration of mKp-10, 100% (8/8) of the mice became pregnant, and 45.0% (36/80) of the embryos were born. Administration of mKp-10 to mice during the estrus stage is a convenient way to generate pseudopregnant mice.

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来源期刊
Genes to Cells
Genes to Cells 生物-细胞生物学
CiteScore
3.40
自引率
0.00%
发文量
71
审稿时长
3 months
期刊介绍: Genes to Cells provides an international forum for the publication of papers describing important aspects of molecular and cellular biology. The journal aims to present papers that provide conceptual advance in the relevant field. Particular emphasis will be placed on work aimed at understanding the basic mechanisms underlying biological events.
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