Hydrostatic Pressure Affects In Vitro Maturation of Oocytes and Follicles and Increases Granulosa Cell Death

Objective: This study examines the effects of hydrostatic pressure on in vitro maturation (IVM) of oocytes derived from in vitro grown follicles.Materials and Methods: In this experimental study, preantral follicles were isolated from 12-day-old female NMRI mice. Each follicle was cultured individua...

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Main Authors: Isac Karimi, Ali Amini, Mehri Azadbakht, Zahra Rashidi
Format: Article
Language:English
Published: Royan Institute (ACECR), Tehran 2013-01-01
Series:Cell Journal
Subjects:
Online Access:http://celljournal.org/library/upload/article/af_4242286323327245323625234522626624742334Rashidi-1.pdf
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spelling doaj-00001cb7350c4c5ba3cefe297098f7362020-11-25T01:37:47ZengRoyan Institute (ACECR), TehranCell Journal2228-58062228-58142013-01-01154282293Hydrostatic Pressure Affects In Vitro Maturation of Oocytes and Follicles and Increases Granulosa Cell DeathIsac KarimiAli AminiMehri AzadbakhtZahra RashidiObjective: This study examines the effects of hydrostatic pressure on in vitro maturation (IVM) of oocytes derived from in vitro grown follicles.Materials and Methods: In this experimental study, preantral follicles were isolated from 12-day-old female NMRI mice. Each follicle was cultured individually in Alpha Minimal Essential Medium (α-MEM) under mineral oil for 12 days. Then, follicles were induced for IVM and divided into two groups, control and experiment. In the experiment group follicles were subjected to 20 mmHg pressure for 30 minutes and cultured for 24-48 hours. We assessed for viability and IVM of the oocytes. The percentage of apoptosis in cumulus cells was determined by the TUNEL assay. A comparison between groups was made using the student’s t test.Results: The percentage of metaphase II oocytes (MII) increased in hydrostatic pressure-treated follicles compared to controls (p<0.05). Cumulus cell viability reduced in hydrostatic pressure-treated follicles compared to controls (p<0.05). Exposure of follicles to pressure increased apoptosis in cumulus cells compared to controls (p<0.05).Conclusion: Hydrostatic pressure, by inducing apoptosis in cumulus cells, participates in the cumulus oocyte coupled relationship with oocyte maturation.http://celljournal.org/library/upload/article/af_4242286323327245323625234522626624742334Rashidi-1.pdfIn vitro MaturationOocyteHydrostatic PressureApoptosisMouse
collection DOAJ
language English
format Article
sources DOAJ
author Isac Karimi
Ali Amini
Mehri Azadbakht
Zahra Rashidi
spellingShingle Isac Karimi
Ali Amini
Mehri Azadbakht
Zahra Rashidi
Hydrostatic Pressure Affects In Vitro Maturation of Oocytes and Follicles and Increases Granulosa Cell Death
Cell Journal
In vitro Maturation
Oocyte
Hydrostatic Pressure
Apoptosis
Mouse
author_facet Isac Karimi
Ali Amini
Mehri Azadbakht
Zahra Rashidi
author_sort Isac Karimi
title Hydrostatic Pressure Affects In Vitro Maturation of Oocytes and Follicles and Increases Granulosa Cell Death
title_short Hydrostatic Pressure Affects In Vitro Maturation of Oocytes and Follicles and Increases Granulosa Cell Death
title_full Hydrostatic Pressure Affects In Vitro Maturation of Oocytes and Follicles and Increases Granulosa Cell Death
title_fullStr Hydrostatic Pressure Affects In Vitro Maturation of Oocytes and Follicles and Increases Granulosa Cell Death
title_full_unstemmed Hydrostatic Pressure Affects In Vitro Maturation of Oocytes and Follicles and Increases Granulosa Cell Death
title_sort hydrostatic pressure affects in vitro maturation of oocytes and follicles and increases granulosa cell death
publisher Royan Institute (ACECR), Tehran
series Cell Journal
issn 2228-5806
2228-5814
publishDate 2013-01-01
description Objective: This study examines the effects of hydrostatic pressure on in vitro maturation (IVM) of oocytes derived from in vitro grown follicles.Materials and Methods: In this experimental study, preantral follicles were isolated from 12-day-old female NMRI mice. Each follicle was cultured individually in Alpha Minimal Essential Medium (α-MEM) under mineral oil for 12 days. Then, follicles were induced for IVM and divided into two groups, control and experiment. In the experiment group follicles were subjected to 20 mmHg pressure for 30 minutes and cultured for 24-48 hours. We assessed for viability and IVM of the oocytes. The percentage of apoptosis in cumulus cells was determined by the TUNEL assay. A comparison between groups was made using the student’s t test.Results: The percentage of metaphase II oocytes (MII) increased in hydrostatic pressure-treated follicles compared to controls (p<0.05). Cumulus cell viability reduced in hydrostatic pressure-treated follicles compared to controls (p<0.05). Exposure of follicles to pressure increased apoptosis in cumulus cells compared to controls (p<0.05).Conclusion: Hydrostatic pressure, by inducing apoptosis in cumulus cells, participates in the cumulus oocyte coupled relationship with oocyte maturation.
topic In vitro Maturation
Oocyte
Hydrostatic Pressure
Apoptosis
Mouse
url http://celljournal.org/library/upload/article/af_4242286323327245323625234522626624742334Rashidi-1.pdf
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