4.6 Article

The beneficial effects of cumulus cells and oocyte-cumulus cell gap junctions depends on oocyte maturation and fertilization methods in mice

期刊

PEERJ
卷 4, 期 -, 页码 -

出版社

PEERJ INC
DOI: 10.7717/peerj.1761

关键词

Oocyte; Cumulus cells; Gap junction; Maturation; Fertilization; Early embryo development

资金

  1. National Natural Science Foundation of China [31160243, 31371454]
  2. Natural Science Foundation of Inner Mongolia Autonomous Region of China [2015JQ02]
  3. Program of Science and Technology Supporting for Homecoming People in Inner Mongolia
  4. Program of Graduate Student Education and Innovation Plan in Inner Mongolia [B20151012615]

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Cumulus cells are a group of closely associated granulosa cells that surround and nourish oocytes. Previous studies have shown that cumulus cells contribute to oocyte, maturation and fertilization through gap junction communication. However it is not known how this gap junction signaling affects in vivo versus in vitro maturation of oocytes, and their subsequent fertilization and embryonic development following insemination. Therefore in, in our study we performed mouse oocyte maturation and insemination using vivo- or oocyte-cumulus complexes (OCCs, which retain gap junctions between the cumulus cells and the oocytes), in vitro matured, denuded oocytes co-cultured with cumulus cells (DCs, which lack gap junctions between the cumulus cells and the oocytes), and in vitro-matured, denuded oocytes without cumulus cells (DOs). Using these models, we were able to analyze the effects of gap junction signaling on oocyte maturation, fertilization, and early embryo development. We found that gap junctions were necessary for both in vivo and in vitro oocyte maturation. In addition, for oocytes matured in vivo, the presence of cumulus cells during insemination improved fertilization and blastocyst formation, and this improvement was strengthened by gap junctions. Moreover, for oocytes matured in vitro, the presence of cumulus cells during insemination improved fertilization, but not blastocyst formation, and this improvement was independent of gap junctions. Our results demonstrate, for the first time, that the beneficial effect of gap junction signaling from cumulus cells depends on oocyte maturation and fertilization methods.

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