Cumulus cell function during bovine oocyte maturation, fertilization, and embryo development in vitro
Функция кумулюсных клеток в процессе созревания ооцитов крупного рогатого скота, оплодотворения и развития эмбрионов in vitro
1995-03-01
SCID: 54.1/vk8xuyzw
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bovine oocyte maturationcumulus cell co-culturecumulus cellsembryo developmentin vitro fertilization
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Abstract (AI)
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).(ABSTRACT TRUNCATED AT 250 WORDS)
Key Findings
1
Cumulus cells are important not only during bovine oocyte maturation and fertilization but also for subsequent preimplantation embryo development in vitro.
2
Cumulus removal immediately before fertilization or 7 hours afterward reduced fertilization, cleavage, and morula-plus-blastocyst development compared with controls.
3
Cumulus-cell co-culture did not affect fertilization or cleavage but significantly improved development to the morula or blastocyst stages.
4
Removing cumulus cells before maturation severely impaired bovine oocyte maturation, fertilization, and development at all evaluated stages.
Research Object
bovine cumulus–oocyte complexes and early embryos during in vitro maturation, fertilization, and development
Research Subject
the stage-dependent effects of cumulus-cell removal and co-culture on oocyte maturation, fertilization, cleavage, and progression to morula and blastocyst stages
Publication Details
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1995-03-01
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