Literature DB >> 2223081

Maturation-associated changes in the rat zona pellucida.

O Rufas1, R Shalgi.   

Abstract

Rat follicular oocytes, arrested at prophase I, cannot be fertilized in vitro. This capacity is acquired following resumption of meiosis and a series of changes involving both the oocyte and the cumulus cells surrounding it. Oocytes exposed to sperm at different hours before ovulation show a gradual increase in the permeability of their zona pellucida (ZP). Our study examined whether the ZP, in response to the physiological stimulus for maturation and concomitant with the other oocyte--cumulus components, undergoes maturational changes. Two ZP characteristics were assessed, sensitivity to proteolysis and sperm binding. ZP surrounding oocytes and eggs were collected from five sources: 1) germinal vesicle (GV)-intact oocytes, 2) preovulatory eggs, 3) ovulated eggs isolated from oviducts of immature females, 4) fertilized eggs, 5) ovulated eggs isolated from oviducts of mature females. All ZP surrounding oocytes/eggs from groups 1-5 were dissolved by trypsin. When solubility by pronase and alpha-chymotrypsin was examined, a large variation between groups was found. All ZP from group 2 were dissolved by 0.001% pronase, compared to 0% solubility in group 4. Only 10% of the ZP surrounding GV-intact oocytes (group 1) were dissolved by this enzyme, compared to 82% in group 3. Solubility in 0.01% alpha-chymotrypsin showed a similar pattern. Capacitated sperm were incubated with eggs from groups 1 and 3. The number of sperm binding to ZP in group 3 was repeatedly higher than that in group 1. In both tests it was found that the ZP surrounding the mature eggs differ in their characteristics from ZP of GV-intact oocytes.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1990        PMID: 2223081     DOI: 10.1002/mrd.1080260406

Source DB:  PubMed          Journal:  Mol Reprod Dev        ISSN: 1040-452X            Impact factor:   2.609


  1 in total

1.  Treatment variables in relation to oocyte maturation: lessons from a clinical micromanipulation-assisted in vitro fertilization program.

Authors:  O M Avrech; G A Goldman; O Rufas; A Stein; S Amit; I Yoles; H Pinkas; B Fisch
Journal:  J Assist Reprod Genet       Date:  1997-07       Impact factor: 3.412

  1 in total

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