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PMID: 32800274 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Mechanisms of oocyte aneuploidy associated with advanced maternal age.

Mutation research. Reviews in mutation research ·Vol. 785 ·2020-00-00 ·Pages 108320

Mikwar M, MacFarlane AJ, Marchetti F

Abstract

It is well established that maternal age is associated with a rapid decline in the production of healthy and high-quality oocytes resulting in reduced fertility in women older than 35 years of age. In particular, chromosome segregation errors during meiotic divisions are increasingly common and lead to the production of oocytes with an incorrect number of chromosomes, a condition known as aneuploidy. When an aneuploid oocyte is fertilized by a sperm it gives rise to an aneuploid embryo that, except in rare situations, will result in a spontaneous abortion. As females advance in age, they are at higher risk of infertility, miscarriage, or having a pregnancy affected by congenital birth defects such as Down syndrome (trisomy 21), Edwards syndrome (trisomy 18), and Turner syndrome (monosomy X). Here, we review the potential molecular mechanisms associated with increased chromosome segregation errors during meiosis as a function of maternal age. Our review shows that multiple exogenous and endogenous factors contribute to the age-related increase in oocyte aneuploidy. Specifically, the weight of evidence indicates that recombination failure, cohesin deterioration, spindle assembly checkpoint (SAC) disregulation, abnormalities in post-translational modification of histones and tubulin, and mitochondrial dysfunction are the leading causes of oocyte aneuploidy associated with maternal aging. There is also growing evidence that dietary and other bioactive interventions may mitigate the effect of maternal aging on oocyte quality and oocyte aneuploidy, thereby improving fertility outcomes. Maternal age is a major concern for aneuploidy and genetic disorders in the offspring in the context of an increasing proportion of mothers having children at increasingly older ages. A better understanding of the mechanisms associated with maternal aging leading to aneuploidy and of intervention strategies that may mitigate these detrimental effects and reduce its occurrence are essential for preventing abnormal reproductive outcomes in the human population.

Keywords
Cohesin Meiosis Mitochondrial dysfunction Recombination SAC
MeSH Terms
Aneuploidy Cell Cycle Proteins/genetics Chromosomal Proteins, Non-Histone/genetics Chromosome Segregation/genetics Congenital Abnormalities/genetics,prevention & control Female Humans M Phase Cell Cycle Checkpoints/genetics Maternal Age Meiosis/genetics Mitochondria/physiology Oocytes/physiology
Chemicals
Cell Cycle Proteins Chromosomal Proteins, Non-Histone cohesins
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Mikwar Myy
Department of Biology, Carleton University, Ottawa, Ontario, Canada; Nutrition Research Division, Health Canada, Ottawa, Ontario, Canada.
MacFarlane Amanda J
Department of Biology, Carleton University, Ottawa, Ontario, Canada; Nutrition Research Division, Health Canada, Ottawa, Ontario, Canada.
Marchetti Francesco
Department of Biology, Carleton University, Ottawa, Ontario, Canada; Mechanistic Studies Division, Health Canada, Ottawa, Ontario, Canada. Electronic address: [email protected].
Conflict of Interest

Declaration of Competing Interest The authors declare no conflict of interest.

Article Info
Journal
Mutation research. Reviews in mutation research
Abbr.
Mutat Res Rev Mutat Res
ISSN
1388-2139
Published
2020-00-00
Epub
2020-00-04
Pages
108320
Language
English
Region
Netherlands
NLM ID
101632211
Subset
IM
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