4.7 Article

Metabolomics analysis of follicular fluid coupled with oocyte aspiration reveals importance of glucocorticoids in primate periovulatory follicle competency

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE RESEARCH
DOI: 10.1038/s41598-021-85704-6

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  1. Division of Comparative Medicine under the NIH/OD ONPRC [P51 OD011092]
  2. NIH/NICHD [R01 HD020869]
  3. Abby and Howard Milstein Innovation Award from the Howard and Georgeanna Jones Foundation for Reproductive Medicine

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The administration of gonadotropins during infertility treatment affects the development of ovarian follicles and the competency of oocytes. Metabolomics analysis identified unique metabolites in follicular fluid that were associated with different embryo classifications, with an increase in the cortisol to cortisone ratio observed in the blastocyst group. The glucocorticoid receptor NR3C1 plays a role in regulating follicular processes through paracrine signaling, but further studies are needed to understand its specific mechanisms.
Gonadotropin administration during infertility treatment stimulates the growth and development of multiple ovarian follicles, yielding heterogeneous oocytes with variable capacity for fertilization, cleavage, and blastocyst formation. To determine how the intrafollicular environment affects oocyte competency, 74 individual rhesus macaque follicles were aspirated and the corresponding oocytes classified as failed to cleave, cleaved but arrested prior to blastulation, or those that formed blastocysts following in vitro fertilization. Metabolomics analysis of the follicular fluid (FF) identified 60 unique metabolites that were significantly different between embryo classifications, of which a notable increase in the intrafollicular ratio of cortisol to cortisone was observed in the blastocyst group. Immunolocalization of the glucocorticoid receptor (GR, NR3C1) revealed translocation from the cytoplasm to nucleus with oocyte maturation in vitro and, correlation to intrafollicular expression of the 11-hydroxy steroid dehydrogenases that interconvert these glucocorticoids was detected upon an ovulatory stimulus in vivo. While NR3C1 knockdown in oocytes had no effect on their maturation or fertilization, expansion of the associated cumulus granulosa cells was inhibited. Our findings indicate an important role for NR3C1 in the regulation of follicular processes via paracrine signaling. Further studies are required to define the means through which the FF cortisol:cortisone ratio determines oocyte competency.

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