AI Article Synopsis

  • A comparative study was conducted on protein expression in human cumulus cells from oocytes subjected to two different ovarian stimulation protocols for classical IVF, using high-resolution techniques to analyze the proteins.* -
  • The findings revealed that hormonal treatment notably impacts the protein expression profile of cumulus cells, even when comparing oocytes from the same patient.* -
  • Significant differences were observed in protein patterns between different patients, suggesting that cumulus protein synthesis may correlate with oocyte maturity and fertility outcomes.*

Article Abstract

Comparative profiling was performed on proteins synthesized in human cumulus cells (CC) from individual oocytes recovered after two different ovarian stimulation protocols for classical IVF (cIVF). Using high-resolution two-dimensional protein electrophoresis after metabolic labelling with [35S]-methionine, protein expression was profiled in CC of metaphase II oocytes obtained after two different ovarian stimulation protocols (rFSH versus human menopausal gonadotrophin). Analysis was done on CC from two cIVF cycles in the same patient and then extended to CC from individual oocytes from two groups of patients. CC from single oocytes have robust levels of protein expression into 600-800 protein spots. Comparison of CC protein expression from oocytes obtained from the same patient but after two different stimulation protocols shows that the type of hormonal treatment influences CC protein expression. In contrast, CC from oocytes obtained under the same stimulation protocol but with different fertilization outcome show a high profile similarity with differences in only a few spots. Comparison of two groups of patients indicates that dissimilarities in protein pattern between patients become very high, even when comparing the same stimulation protocol and oocyte fertilization outcome. Thus protein expression profiling of human CC may provide a correlation between the synthesis of specific cumulus proteins and maturity and fecundity.

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http://dx.doi.org/10.1016/s1472-6483(10)61028-0DOI Listing

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