Actin‐Related Causes of Aneuploidy in Human Eggs

Gametogenesis (oogenesis and spermatogenesis) relies on a specialized form of cell division known as meiosis. During this process, chromosomes in parental cells undergo two successive rounds of segregation, resulting in a halving of their number and the formation of haploid germ cells, which is essential for subsequent fertilization. However, in human female gametogenesis, errors in chromosome segregation occur at a notably high frequency, leading to the formation of oocytes with abnormal chromosome numbers. Once fertilized, such oocytes often develop into aneuploid embryos, which exhibit severely impaired developmental potential and frequently end in implantation failure or early pregnancy loss. Notably, with advancing maternal age, the frequency of errors in meiotic maturation mediated by the actin and microtubule cytoskeletons increases significantly, thereby elevating the overall risks of infertility, pregnancy termination, and birth defects such as Down syndrome. This article aims to systematically review recent advances in the mechanisms by which actin contributes to the formation of aneuploidy in female meiosis, with a particular focus on findings from human oocytes.

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Journal
The FASEB Journal
Published
2026-10-06
DOI
https://doi.org/10.1096/fj.202504914rr
Primary Topic
Microtubule and mitosis dynamics
Type
article
Field-Weighted Citation Impact
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article

Actin‐Related Causes of Aneuploidy in Human Eggs

Ming Zhang, WenHan Ma, Xinmiao Hu, Yi Zheng et al.
The FASEB Journal
Microtubule and mitosis dynamics
article

Actin‐Related Causes of Aneuploidy in Human Eggs

Ming Zhang, WenHan Ma, Xinmiao Hu, Yi Zheng, Danyang Li, Hui Luo
article en

Abstract

Gametogenesis (oogenesis and spermatogenesis) relies on a specialized form of cell division known as meiosis. During this process, chromosomes in parental cells undergo two successive rounds of segregation, resulting in a halving of their number and the formation of haploid germ cells, which is essential for subsequent fertilization. However, in human female gametogenesis, errors in chromosome segregation occur at a notably high frequency, leading to the formation of oocytes with abnormal chromosome numbers. Once fertilized, such oocytes often develop into aneuploid embryos, which exhibit severely impaired developmental potential and frequently end in implantation failure or early pregnancy loss. Notably, with advancing maternal age, the frequency of errors in meiotic maturation mediated by the actin and microtubule cytoskeletons increases significantly, thereby elevating the overall risks of infertility, pregnancy termination, and birth defects such as Down syndrome. This article aims to systematically review recent advances in the mechanisms by which actin contributes to the formation of aneuploidy in female meiosis, with a particular focus on findings from human oocytes.

The FASEB JournalVol. 40(19)
Wuhan University (CN), Zhongnan Hospital of Wuhan University (CN), Hubei Provincial Women and Children's Hospital (CN)
Openalex Percentile: Top 16%
Microtubule and mitosis dynamics
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Actin‐Related Causes of Aneuploidy in Human Eggs — Ming Zhang, WenHan Ma, et al. · The FASEB Journal (2026) | TGRS Research Map | TGRS