Cumulus cell function during bovine oocyte maturation, fertilization, and embryo development in vitro
- 1 March 1995
- journal article
- research article
- Published by Wiley in Molecular Reproduction and Development
- Vol. 40 (3) , 338-344
- https://doi.org/10.1002/mrd.1080400310
Abstract
Several contemporary micromanipulation techniques, such as sperm microinjection, nuclear transfer, and gene transfer by pronuclear injection, require removal of cumulus cells from oocytes or zygotes at various stages. In humans, the cumulus cells are often removed after 15–18 hr of sperm-oocyte coincubation to assist the identification of the fertilization status. This study was designed to evaluate the function of cumulus cells during oocyte maturation, fertilization, and in vitro development in cattle. Cumulus cells were removed before and after maturation and after fertilization for 0,7,20, and 48 hr. The cumulus-free oocytes or embryos were cultured either alone or on cumulus cell monolayers prepared on the day of maturation culture. Percentages of oocyte maturation, fertilization, and development to cleavage, morula, and blastocyst stages and to expanding or hatched blastocysts were recorded for statistical analysis by categorical data modeling (CATMOD) procedures. Cumulus cells removed before maturation significantly reduced the rate of oocyte maturation (4–26% vs. 93–96%), fertilization (0–9% vs. 91–92%), and in vitro development at all stages evaluated. Cumulus cells removed immediately prior to in vitro fertilization (IVF) or 7 hr after IVF reduced the rates of fertilization (58–60% and 71%, respectively, vs. 91–92% for controls), cleavage development (40–47% and 53–54% vs. 74–78% for controls), and morula plus blastocyst development (15% and 24% vs. 45%, P < 0.05). Cumulus cell co-culture started at various stages had no effect on fertilization and cleavage development but significantly improved rates of embryo development to morula or blastocyst stages (P < 0.05). Cumulus cell removal at 20 hr after IVF resulted in similar development to controls (P > 0.05) at all stages tested in this study. The intact state of surrounding cumulus cells of oocytes or embryos appears to be beneficial before or shortly after insemination (at or before 7 hr of IVF) but not essential at 20 hr after IVF.Keywords
This publication has 45 references indexed in Scilit:
- Cumulus Oophorus Expansion of Bovine Oocytes Cultured in vitro: A SEM and TEM StudyReproduction in Domestic Animals, 1992
- Detection of a soluble acrosome reaction‐inducing factor, different from serum albumin, associated with the ovulated egg‐cumulus complexMolecular Reproduction and Development, 1991
- Effect of follicle cells on the acrosome reaction, fertilization, and developmental competence of bovine oocytes matured in vitroMolecular Reproduction and Development, 1990
- Birth of Normal Calves Resulting from Bovine Oocytes Matured, Fertilized, and Cultured with Cumulus Cells in Vitro up to the Blastocyst Stage1Biology of Reproduction, 1990
- Co-culture of early cattle embryos to the blastocyst stage with oviducal tissue or in conditioned mediumReproduction, 1989
- Differential modulation of rat follicle cell gap junction populations at ovulationDevelopmental Biology, 1987
- Serum maintains the fertilizability of mouse oocytes matured in vitro by preventing hardening of the zona pellucidaGamete Research, 1986
- A dramatic loss of cumulus cell gap junctions is correlated with germinal vesicle breakdown in rat oocytesDevelopmental Biology, 1986
- Effect of follicle cells on the maturation and developmental competence of ovine oocytes matured outside the follicleGamete Research, 1984
- The relationship between cumulus cell-oocyte coupling, oocyte meiotic maturation, and cumulus expansionDevelopmental Biology, 1982