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Monomethyl Phthalate Causes Early Embryo Development Delay, Apoptosis, and Energy Metabolism Disruptions Through Inducing Redox Imbalance.

Authors :
Tian, Wenqu
Liao, Hongmei
Li, Nijie
Yao, Wen
Li, Yuying
Guo, Na
Yuan, Xiaoqiong
Du, Yaoyao
Teng, Xuemei
Li, Yufeng
Deng, Taoran
Source :
Reproductive Sciences. Jan2024, Vol. 31 Issue 1, p139-149. 11p.
Publication Year :
2024

Abstract

Phthalates are a class of environmental endocrine disrupting chemicals which can cause reproductive system damages. However, data about reproductive toxicity spectrum of phthalate metabolites among Chinese women undergoing in vitro fertilization (IVF) treatments are scarce yet. Previous studies regarding underlying embryo toxicities focused on oxidative stress and apoptosis, while energy metabolism abnormality might be another key cause for embryo developmental disruptions. Here, we found that among the measured eight phthalate metabolites, monomethyl phthalate (MMP) had the second highest urinary concentration in women receiving IVF. Compare to the lowest exposure level group, MMP in tertile 3 was associated with fewer counts of oocyte retrieved and good-quality embryos, and MMP in tertile 2 was correlated with reduced good-quality embryo rate. The direct embryo toxicities of MMP were studied using mouse 2-cell embryos. Consistent to results found in human populations, exposure to MMP induced mouse early embryo developmental delay. Furthermore, MMP exposure led to excessive reactive oxygen species production in early embryos, and antioxidant can partially rescue the early embryo development slow down. Embryo apoptosis could also be caused by oxidative stress. To be noted, elevated apoptosis level was not found in live "slow" embryos but dead embryos, which suggested that apoptosis was not related to early embryo developmental delay. Additionally, MMP exposure depleted adenosine triphosphate (ATP) synthesis of early embryos, which could be reversed by antioxidant. In conclusion, MMP, as the newly found embryonic toxicant in Chinese women, resulted in early embryo development delay, apoptosis, and energy metabolism disruptions via inducing redox imbalance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19337191
Volume :
31
Issue :
1
Database :
Academic Search Index
Journal :
Reproductive Sciences
Publication Type :
Academic Journal
Accession number :
175410275
Full Text :
https://doi.org/10.1007/s43032-023-01309-6