Literature DB >> 17428880

Osmotic responses and tolerance limits to changes in external osmolalities, and oolemma permeability characteristics, of human in vitro matured MII oocytes.

Etienne Van den Abbeel1, Ulrich Schneider, Jun Liu, Yuksel Agca, John K Critser, André Van Steirteghem.   

Abstract

BACKGROUND: Oocyte cryopreservation remains a realistic objective, provided that more systematic approaches are applied, such as thorough analysis of the oocyte oolemma permeability to water and diverse cryoprotectants.
METHODS: We prospectively investigated volume changes over time at different temperatures (30 degrees C, 22 degrees C and 8 degrees C) of human metaphase II (MII) oocytes (obtained in stimulated ICSI cycles and matured in vitro from the germinal vesicle stage) when exposed to changes in external osmolality. We also investigated human in vitro matured (IVM) oocytes membrane permeability characteristics at 22 degrees C to 1,2-propanediol (PG) and dimethylsulphoxide (DMSO) and at 30 degrees C, 22 degrees C and 8 degrees C to ethylene glycol (EG), and calculated corresponding oocyte oolemma permeability coefficients (Lp and Pcpa). Furthermore, we investigated the osmotic tolerance limits of IVM oocytes exposed to changes in external osmolality as assessed by their developmental competence during the course of 72 h after ICSI.
RESULTS: The results of our studies describe human oocyte membrane permeability coefficients for EG at 30 degrees C (2.85+/-0.15x10(-3) cm/min), 22 degrees C (1.17+/-0.60x10(-3) cm/min) and 8 degrees C (0.37+/-0.15x10(-3) cm/min). Furthermore, at 22 degrees C the EG oolemma permeability coefficient was lower than that of PG and DMSO (1.17+/-0.60x10(-3) cm/min versus 2.15+/-0.70x10(-3) and 1.56+/-0.38x10(-3) cm/min, respectively). Our results also indicate, that human IVM MII oocytes tolerated exposure to solutions in the range of 39-2264 mOsmol/kg H2O as assessed by the oocytes' developmental competence after exposure.
CONCLUSIONS: The results of the present study may contribute to a better understanding of the biology and cryobiology of human oocytes, and to the design of better and more robust cryopreservation (freezing or vitrification) protocols.

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Year:  2007        PMID: 17428880     DOI: 10.1093/humrep/dem083

Source DB:  PubMed          Journal:  Hum Reprod        ISSN: 0268-1161            Impact factor:   6.918


  19 in total

Review 1.  Recent advances in oocyte and ovarian tissue cryopreservation and transplantation.

Authors:  Kenny A Rodriguez-Wallberg; Kutluk Oktay
Journal:  Best Pract Res Clin Obstet Gynaecol       Date:  2012-02-01       Impact factor: 5.237

2.  Optimization of cryoprotectant loading into murine and human oocytes.

Authors:  Jens O M Karlsson; Edyta A Szurek; Adam Z Higgins; Sang R Lee; Ali Eroglu
Journal:  Cryobiology       Date:  2013-11-15       Impact factor: 2.487

3.  Controlled loading of cryoprotectants (CPAs) to oocyte with linear and complex CPA profiles on a microfluidic platform.

Authors:  Yun Seok Heo; Ho-Joon Lee; Bryan A Hassell; Daniel Irimia; Thomas L Toth; Heidi Elmoazzen; Mehmet Toner
Journal:  Lab Chip       Date:  2011-09-01       Impact factor: 6.799

4.  Hydroxypropyl cellulose supplementation in vitrification solutions: a prospective study with donor oocytes.

Authors:  Miguel Gallardo; María Hebles; Beatriz Migueles; Mónica Dorado; Laura Aguilera; Mercedes González; Paloma Piqueras; Alejandro Lucas; Lorena Montero; Pascual Sánchez-Martín; Fernando Sánchez-Martín; Ramón Risco
Journal:  J Assist Reprod Genet       Date:  2016-12-27       Impact factor: 3.412

Review 5.  The current challenges to efficient immature oocyte cryopreservation.

Authors:  Fausta Brambillasca; Maria Cristina Guglielmo; Giovanni Coticchio; Mario Mignini Renzini; Mariabeatrice Dal Canto; Rubens Fadini
Journal:  J Assist Reprod Genet       Date:  2013-10-10       Impact factor: 3.412

Review 6.  Cryoprotectant Toxicity: Facts, Issues, and Questions.

Authors:  Benjamin P Best
Journal:  Rejuvenation Res       Date:  2015-09-22       Impact factor: 4.663

7.  Implications of variability in cell membrane permeability for design of methods to remove glycerol from frozen-thawed erythrocytes.

Authors:  John M Lahmann; Cynthia Cruz Sanchez; James D Benson; Jason P Acker; Adam Z Higgins
Journal:  Cryobiology       Date:  2020-01-11       Impact factor: 2.487

8.  A microfluidic perfusion approach for on-chip characterization of the transport properties of human oocytes.

Authors:  Gang Zhao; Zhiguo Zhang; Yuntian Zhang; Zhongrong Chen; Dan Niu; Yunxia Cao; Xiaoming He
Journal:  Lab Chip       Date:  2017-03-29       Impact factor: 6.799

9.  Permeability of the rhesus monkey oocyte membrane to water and common cryoprotectants.

Authors:  Jens O M Karlsson; Abdelmoneim I Younis; Anthony W S Chan; Kenneth G Gould; Ali Eroglu
Journal:  Mol Reprod Dev       Date:  2009-04       Impact factor: 2.609

10.  Embryo development of fresh 'versus' vitrified metaphase II oocytes after ICSI: a prospective randomized sibling-oocyte study.

Authors:  Laura Rienzi; Stefania Romano; Laura Albricci; Roberta Maggiulli; Antonio Capalbo; Elena Baroni; Silvia Colamaria; Fabio Sapienza; Filippo Ubaldi
Journal:  Hum Reprod       Date:  2009-10-27       Impact factor: 6.918

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