Advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null mice
Due to socioeconomic factors, more couples are choosing to delay conception than ever. Increasing average maternal and paternal age in developed countries over the past 40 years has raised the question of how aging affects reproductive success of males and females. Since oxidative stress in the male...
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doaj-790dd4cc9a5b4da5b389483f41d272822020-11-25T01:48:45ZengElsevierRedox Biology2213-23172015-08-0151523Advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null miceBurak Ozkosem0Sheldon I. Feinstein1Aron B. Fisher2Cristian O’Flaherty3Urology Research Laboratory, Research Institute of the McGill University Health Centre, McGill University, Montréal, Québec, Canada; Department of Surgery (Urology Division), Research Institute of the McGill University Health Centre, McGill University, Montréal, Québec, CanadaInstitute for Environmental Medicine, University of Pennsylvania, Philadelphia, PA, USA; Department of Physiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USAInstitute for Environmental Medicine, University of Pennsylvania, Philadelphia, PA, USA; Department of Physiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USAUrology Research Laboratory, Research Institute of the McGill University Health Centre, McGill University, Montréal, Québec, Canada; Department of Surgery (Urology Division), Research Institute of the McGill University Health Centre, McGill University, Montréal, Québec, Canada; Department of Pharmacology and Therapeutics, McGill University, Montréal, Québec, Canada; Correspondence to: Urology Research Laboratory, Royal Victoria Hospital, Room H6.46, 687 Avenue des Pins Ouest, Montréal, Québec, Canada H3A 1A1.Due to socioeconomic factors, more couples are choosing to delay conception than ever. Increasing average maternal and paternal age in developed countries over the past 40 years has raised the question of how aging affects reproductive success of males and females. Since oxidative stress in the male reproductive tract increases with age, we investigated the impact of advanced paternal age on the integrity of sperm nucleus and reproductive success of males by using a Prdx6−/− mouse model. We compared sperm motility, cytoplasmic droplet retention sperm chromatin quality and reproductive outcomes of young (2-month-old), adult (8-month-old), and old (20-month-old) Prdx6−/− males with their age-matched wild type (WT) controls. Absence of PRDX6 caused age-dependent impairment of sperm motility and sperm maturation and increased sperm DNA fragmentation and oxidation as well as decreased sperm DNA compaction and protamination. Litter size, total number of litters and total number of pups per male were significantly lower in Prdx6−/− males compared to WT controls. These abnormal reproductive outcomes were severely affected by age in Prdx6−/− males. In conclusion, the advanced paternal age affects sperm chromatin integrity and fertility more severely in the absence of PRDX6, suggesting a protective role of PRDX6 in age-associated decline in the sperm quality and fertility in mice. Keywords: PRDX6, Paternal age, Sperm chromatin, Oxidative stress, Male infertility, Reactive oxygen specieshttp://www.sciencedirect.com/science/article/pii/S2213231715000221 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Burak Ozkosem Sheldon I. Feinstein Aron B. Fisher Cristian O’Flaherty |
spellingShingle |
Burak Ozkosem Sheldon I. Feinstein Aron B. Fisher Cristian O’Flaherty Advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null mice Redox Biology |
author_facet |
Burak Ozkosem Sheldon I. Feinstein Aron B. Fisher Cristian O’Flaherty |
author_sort |
Burak Ozkosem |
title |
Advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null mice |
title_short |
Advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null mice |
title_full |
Advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null mice |
title_fullStr |
Advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null mice |
title_full_unstemmed |
Advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null mice |
title_sort |
advancing age increases sperm chromatin damage and impairs fertility in peroxiredoxin 6 null mice |
publisher |
Elsevier |
series |
Redox Biology |
issn |
2213-2317 |
publishDate |
2015-08-01 |
description |
Due to socioeconomic factors, more couples are choosing to delay conception than ever. Increasing average maternal and paternal age in developed countries over the past 40 years has raised the question of how aging affects reproductive success of males and females. Since oxidative stress in the male reproductive tract increases with age, we investigated the impact of advanced paternal age on the integrity of sperm nucleus and reproductive success of males by using a Prdx6−/− mouse model. We compared sperm motility, cytoplasmic droplet retention sperm chromatin quality and reproductive outcomes of young (2-month-old), adult (8-month-old), and old (20-month-old) Prdx6−/− males with their age-matched wild type (WT) controls. Absence of PRDX6 caused age-dependent impairment of sperm motility and sperm maturation and increased sperm DNA fragmentation and oxidation as well as decreased sperm DNA compaction and protamination. Litter size, total number of litters and total number of pups per male were significantly lower in Prdx6−/− males compared to WT controls. These abnormal reproductive outcomes were severely affected by age in Prdx6−/− males. In conclusion, the advanced paternal age affects sperm chromatin integrity and fertility more severely in the absence of PRDX6, suggesting a protective role of PRDX6 in age-associated decline in the sperm quality and fertility in mice. Keywords: PRDX6, Paternal age, Sperm chromatin, Oxidative stress, Male infertility, Reactive oxygen species |
url |
http://www.sciencedirect.com/science/article/pii/S2213231715000221 |
work_keys_str_mv |
AT burakozkosem advancingageincreasesspermchromatindamageandimpairsfertilityinperoxiredoxin6nullmice AT sheldonifeinstein advancingageincreasesspermchromatindamageandimpairsfertilityinperoxiredoxin6nullmice AT aronbfisher advancingageincreasesspermchromatindamageandimpairsfertilityinperoxiredoxin6nullmice AT cristianoflaherty advancingageincreasesspermchromatindamageandimpairsfertilityinperoxiredoxin6nullmice |
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