Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Stimulatory effect of insulin-like growth factor I and epidermal growth factor on the maturation of rabbit oocytes in vitro

View through CrossRef
Abstract The effects of different combinations of epidermal growth factor (EGF) and insulin-like growth factor I (IGF-I) on cumulus expansion and meiotic maturation were examined in rabbit oocytes. Selected rabbit follicular oocytes were matured in vitro and were classified as cumulus–oocyte complexes or denuded oocytes. They were cultured in TCM 199, and were treated with growth factors at different concentrations: EGF at 0, 1, 10, 50 and 100 ng ml−1, IGF-I at 0, 50, 100 and 200 ng ml−1 and EGF plus IGF-I at 10 + 50; 10 + 100; 50 + 50 and 50 + 100 ng ml−1, respectively. After 6 h of culture, the oocytes were assessed for nuclear maturation and after 16 h of culture, for cumulus expansion and maturation stage. After culture for 6 h, the incidence of germinal vesicle breakdown was higher (P < 0.05) in all of the growth factor treatments tested compared with controls. After culture for 16 h, EGF enhanced the incidence of cumulus expansion at all of the concentrations tested. Cumulus expansion was greatest with 50 mg EGF ml−1 plus 100 ng IGF-I ml−1 (72.0% versus 2.4% in controls). Treatment with IGF-I significantly increased (P < 0.05) the incidence of metaphase II stage, and maximum stimulation occurred at 100 ng IGF-I ml−1 (84.5% versus 31.1% in controls). However, IGF-I did not affect cumulus expansion. When denuded oocytes were used, no positive effects on nuclear maturation rates were observed for any treatment. These results suggest that: (1) EGF, either alone or with IGF-I, stimulates cumulus expansion; (2) the addition of IGF-I or EGF plus IGF-I significantly enhances nuclear maturation in immature rabbit oocytes; and (3) this effect is mediated by the presence of cumulus cells.
Title: Stimulatory effect of insulin-like growth factor I and epidermal growth factor on the maturation of rabbit oocytes in vitro
Description:
Abstract The effects of different combinations of epidermal growth factor (EGF) and insulin-like growth factor I (IGF-I) on cumulus expansion and meiotic maturation were examined in rabbit oocytes.
Selected rabbit follicular oocytes were matured in vitro and were classified as cumulus–oocyte complexes or denuded oocytes.
They were cultured in TCM 199, and were treated with growth factors at different concentrations: EGF at 0, 1, 10, 50 and 100 ng ml−1, IGF-I at 0, 50, 100 and 200 ng ml−1 and EGF plus IGF-I at 10 + 50; 10 + 100; 50 + 50 and 50 + 100 ng ml−1, respectively.
After 6 h of culture, the oocytes were assessed for nuclear maturation and after 16 h of culture, for cumulus expansion and maturation stage.
After culture for 6 h, the incidence of germinal vesicle breakdown was higher (P < 0.
05) in all of the growth factor treatments tested compared with controls.
After culture for 16 h, EGF enhanced the incidence of cumulus expansion at all of the concentrations tested.
Cumulus expansion was greatest with 50 mg EGF ml−1 plus 100 ng IGF-I ml−1 (72.
0% versus 2.
4% in controls).
Treatment with IGF-I significantly increased (P < 0.
05) the incidence of metaphase II stage, and maximum stimulation occurred at 100 ng IGF-I ml−1 (84.
5% versus 31.
1% in controls).
However, IGF-I did not affect cumulus expansion.
When denuded oocytes were used, no positive effects on nuclear maturation rates were observed for any treatment.
These results suggest that: (1) EGF, either alone or with IGF-I, stimulates cumulus expansion; (2) the addition of IGF-I or EGF plus IGF-I significantly enhances nuclear maturation in immature rabbit oocytes; and (3) this effect is mediated by the presence of cumulus cells.

Related Results

O-105 Chromatin accessibility of oocytes contributes to PCOS transgenerational inheritance
O-105 Chromatin accessibility of oocytes contributes to PCOS transgenerational inheritance
Abstract Study question What is the underlying mechanism contributing to the transgenerational defects of oocytes and embryos of...
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
Insulin is one of the most important hormones that controls the glucose level in blood. Therefore, the investigation of insulin is very important for the diabetic research. There h...
Sperm binding capacity and ultrastructure of the zona pellucida of stored canine oocytes
Sperm binding capacity and ultrastructure of the zona pellucida of stored canine oocytes
Abstract Sperm binding to the zona pellucida is a prerequisite for fertilization, and tests that evaluate this function have been described for several species. W...
Effects of Ascorbic Acid on Maturation Rate, Morphology, and Gene Expression of Vitrified In Vitro Matured Dromedary Camel Oocytes
Effects of Ascorbic Acid on Maturation Rate, Morphology, and Gene Expression of Vitrified In Vitro Matured Dromedary Camel Oocytes
In vitro embryo generation, cryopreservation, and embryo transfer are examples of assisted reproductive technologies that can be used to improve camel genetic performance and ferti...
Effect of maturation stage at cryopreservation on post‐thaw cytoskeleton quality and fertilizability of equine oocytes
Effect of maturation stage at cryopreservation on post‐thaw cytoskeleton quality and fertilizability of equine oocytes
AbstractOocyte cryopreservation is a potentially valuable technique for salvaging the germ‐line when a valuable mare dies, but facilities for in vitro embryo production or oocyte t...
P–690 Clinical predictors of a high oocyte maturation rate in IVF treatment cycles
P–690 Clinical predictors of a high oocyte maturation rate in IVF treatment cycles
Abstract Study question Which clinical parameters predict a high oocyte maturation rate in patients undergoing IVF treatment? ...

Back to Top