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Published on: January 26, 2024
Alternariol exerts embryotoxic and immunotoxic effects on mouse blastocysts through ROS-mediated apoptotic processes
Chien-Hsun Huang1, Fu-Ting Wang2, Wen-Hsiung Chan3
1Department of Obstetrics and Gynecology, Taoyuan General Hospital, Ministry of Health & Welfare, Taoyuan City 33004, Taiwan.
Abstract:
Alternariol (AOH), a mycotoxin belonging to the genus Alternaria, has been shown to induce cytotoxicity, including apoptosis and cell cycle arrest, in several mammalian cell types. However, its effects on early-stage embryonic development require further investigation. Here, we have shown that AOH exerts embryotoxic effects on mouse blastocyst-stage embryos and long-term adverse effects on immunity in one-day-old newborn mice of the next generation. Significant apoptosis and decrease in total cell number, predominantly through loss of inner cell mass (ICM), and to a minor extent, trophectoderm (TE) cells, were observed in AOH-treated blastocysts. Moreover, AOH exerted detrimental effects on pre- and post-implantation embryo development potential and induced a decrease in fetal weight in in vitro development and embryo transfer assays. Injection of pregnant mice with AOH (1, 3 and 5 mg/kg body weight/day) for 4 days resulted in apoptosis of blastocyst-stage embryos and injurious effects on embryonic development from the zygote to blastocyst stage or embryo degradation and a further decrease in fetal weight. Furthermore, AOH exerted a long-term impact on the next generation, triggering a significant increase in total oxidative stress content and expression of genes encoding antioxidant proteins. Lower expression of CXCL1, IL-1β and IL-8 related to innate immunity was detected in liver tissue extracts obtained from one-day-old newborns of AOH-injected pregnant mice (5 mg/kg body weight/day) relative to their non-treated counterparts. In addition, ROS served as an upstream regulator of AOH-triggered apoptotic processes and impairment of embryonic development. Our collective results highlight the potential of AOH as an embryotoxic and immunotoxic risk factor during embryo and infant development stages in mice.
Insights
Alternariol (AOH), a mycotoxin, causes early embryo damage and immune system issues in newborn mice. This study reveals AOH as a significant risk factor for embryonic and infant development.
Area of Science:
- Toxicology
- Developmental Biology
- Immunology
Background:
- Alternariol (AOH) is a mycotoxin from Alternaria species.
- AOH is known to cause cytotoxicity, apoptosis, and cell cycle arrest in mammalian cells.
- Its impact on early embryonic development and subsequent generations is not well understood.
Purpose of the Study:
- To investigate the embryotoxic and immunotoxic effects of Alternariol (AOH).
- To assess the impact of AOH exposure on mouse blastocyst development and the immune system of offspring.
Main Methods:
- Exposure of mouse blastocysts and pregnant mice to AOH in vitro and in vivo.
- Analysis of apoptosis, cell number, embryo development potential, and fetal weight.
- Assessment of oxidative stress, antioxidant gene expression, and innate immunity markers (CXCL1, IL-1β, IL-8) in offspring.
Main Results:
- AOH induced significant apoptosis and reduced cell numbers in blastocysts, affecting both inner cell mass and trophectoderm.
- AOH impaired pre- and post-implantation embryo development and decreased fetal weight.
- Offspring exhibited increased oxidative stress, altered antioxidant gene expression, and reduced innate immunity markers.
Conclusions:
- Alternariol (AOH) poses a significant embryotoxic risk, damaging early embryos.
- AOH exposure leads to long-term immunotoxic effects in the subsequent generation.
- Reactive oxygen species (ROS) mediate AOH-induced developmental toxicity and apoptosis.
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