Javascript must be enabled to continue!
Enhancement of cumulus expansion and nuclear maturation during bovine oocyte maturation in vitro by the addition of epidermal growth factor and insulin-like growth factor I
View through CrossRef
Abstract
This study was carried out to identify the possible effects of epidermal growth factor (EGF) and insulin-like growth factor-I (IGF-I) on cumulus expansion and nuclear maturation in bovine oocytes matured in vitro in serum-free media. Bovine follicular oocytes were matured in vitro and were then classified as cumulus cell-enclosed oocytes or denuded oocytes. They were then cultured for 24 h in TCM-199 (tissue culture medium-199) with EGF (50 ng ml−1), IGF-I (100 ng ml−1) and EGF plus IGF-I (50 and 100 ng ml−1, respectively). At the end of the culture period, the morphology of oocytes was evaluated for cumulus expansion and nuclear stage of maturation. In Expt 1, percentages of oocytes reaching maximum cumulus expansion were: 12.5% (control), 46.5% (EGF), 15.2% (IGF-I) and 52.8% (EGF plus IGF-I). In Expt 2, the respective rates of nuclear maturation were: 35.6%, 52.1%, 45.5% and 61.4% for cumulus cell-enclosed oocytes, and 35.3%, 46.6%, 45.4% and 42.5% for denuded oocytes; the same growth factor treatments were used in both cases. There was no significant effect of IGF-I on cumulus expansion. Maximum rates of cumulus expansion and nuclear maturation were obtained in the presence of both growth factors. These results lead to the following conclusions: (i) EGF, either alone or together with IGF-I, stimulates cumulus expansion; and (ii) both growth factors, acting alone or together, enhance nuclear maturation in oocytes surrounded by compact cumulus cells.
Title: Enhancement of cumulus expansion and nuclear maturation during bovine oocyte maturation
in vitro
by the addition of epidermal growth factor and insulin-like growth factor I
Description:
Abstract
This study was carried out to identify the possible effects of epidermal growth factor (EGF) and insulin-like growth factor-I (IGF-I) on cumulus expansion and nuclear maturation in bovine oocytes matured in vitro in serum-free media.
Bovine follicular oocytes were matured in vitro and were then classified as cumulus cell-enclosed oocytes or denuded oocytes.
They were then cultured for 24 h in TCM-199 (tissue culture medium-199) with EGF (50 ng ml−1), IGF-I (100 ng ml−1) and EGF plus IGF-I (50 and 100 ng ml−1, respectively).
At the end of the culture period, the morphology of oocytes was evaluated for cumulus expansion and nuclear stage of maturation.
In Expt 1, percentages of oocytes reaching maximum cumulus expansion were: 12.
5% (control), 46.
5% (EGF), 15.
2% (IGF-I) and 52.
8% (EGF plus IGF-I).
In Expt 2, the respective rates of nuclear maturation were: 35.
6%, 52.
1%, 45.
5% and 61.
4% for cumulus cell-enclosed oocytes, and 35.
3%, 46.
6%, 45.
4% and 42.
5% for denuded oocytes; the same growth factor treatments were used in both cases.
There was no significant effect of IGF-I on cumulus expansion.
Maximum rates of cumulus expansion and nuclear maturation were obtained in the presence of both growth factors.
These results lead to the following conclusions: (i) EGF, either alone or together with IGF-I, stimulates cumulus expansion; and (ii) both growth factors, acting alone or together, enhance nuclear maturation in oocytes surrounded by compact cumulus cells.
Related Results
Protective effects of the cumulus-corona radiata complex during vitrification of horse oocytes
Protective effects of the cumulus-corona radiata complex during vitrification of horse oocytes
Abstract
Vitrifying oocytes is a potentially valuable means of preserving the female germ line, but significantly compromises oocyte developmental competence. Thi...
Oocyte–cumulus cell interactions regulate free intracellular zinc in mouse oocytes
Oocyte–cumulus cell interactions regulate free intracellular zinc in mouse oocytes
Abstract
Zinc increases in the oocyte during maturation and is required for progression and completion of meiosis. The objective of this study was to determine wh...
Stimulatory effect of insulin-like growth factor I and epidermal growth factor on the maturation of rabbit oocytes
in vitro
Stimulatory effect of insulin-like growth factor I and epidermal growth factor on the maturation of rabbit oocytes
in vitro
Abstract
The effects of different combinations of epidermal growth factor (EGF) and insulin-like growth factor I (IGF-I) on cumulus expansion and meiotic maturati...
O-059 ntermetabolites of cholesterol synthesis in granulosa cell and oocyte aging
O-059 ntermetabolites of cholesterol synthesis in granulosa cell and oocyte aging
Abstract
With the development of society, there has been a significant delay in female fertility and an increasing desire for c...
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?
...
Lysophosphatidic acid stimulates hyaluronan production by mouse cumulus–oocyte complexes
Lysophosphatidic acid stimulates hyaluronan production by mouse cumulus–oocyte complexes
AbstractPurposeIn mammals, cumulus expansion due to increased synthesis of hyaluronan was suggested to correlate with modification of the gap junction between cumulus cells and the...
Identification of optimal assisted aspiration conditions of oocytes for use in porcine in vitro maturation: A re‐evaluation of the relationship between the cumulus oocyte complex and oocyte quality
Identification of optimal assisted aspiration conditions of oocytes for use in porcine in vitro maturation: A re‐evaluation of the relationship between the cumulus oocyte complex and oocyte quality
Abstract
The quality of porcine oocytes for use in IVF is commonly graded according to the number of layers of cumulus cells (CCs) surrounding the oocyte; togethe...
(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...

