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Updated: Apr 19, 2026

Mouse Oocyte Microinjection, Maturation and Ploidy Assessment
Published on: July 23, 2011
Effects of ochratoxin a on mouse oocyte maturation and fertilization, and apoptosis during fetal development
Fu-Jen Huang1,2, Wen-Hsiung Chan3,4
1Department of Obstetrics and Gynecology, Kaohsiung Chang Gung Memorial Hospital, Kaohsiung, Taiwan.
Abstract:
We previously reported that ochratoxin A (OTA), a mycotoxin found in many foods worldwide, causes nephrotoxicity, hepatotoxicity, and immunotoxicity, and is a risk factor for abnormal embryonic development. More specifically, OTA triggers apoptotic processes in the inner cell mass of mouse blastocysts, decreasing cell viability and embryonic development. In the current study, we investigated the deleterious effects of OTA on mouse oocyte maturation, in vitro fertilization (IVF), and subsequent pre- and postimplantation development both in vitro and in vivo. Notably, OTA significantly impaired mouse oocyte maturation, decreased IVF rates, and inhibited subsequent embryonic development in vitro. Preincubation of oocytes with OTA during in vitro maturation increased postimplantation embryonic resorption and decreased mouse fetal weight. In an in vivo animal model, provision of 1-10 μM OTA in the drinking water or intravenous injection of 1 or 2 mg/kg body weight of OTA decreased oocyte maturation and IVF, and had deleterious effects on early embryonic development. Importantly, preincubation of oocytes with a caspase-3-specific inhibitor effectively blocked these OTA-triggered deleterious effects, suggesting that the embryonic injury induced by OTA is mediated via a caspase-dependent apoptotic mechanism. Furthermore, OTA upregulated the levels of p53 and p21 in blastocyst cells derived from OTA-pretreated oocytes, indicating that such cells undergo apoptosis via p53-, p21-, and caspase-3-dependent regulatory mechanisms. This could have deleterious effects on embryonic implantation and fetal survival rates, as seen in our animal models. © 2014 Wiley Periodicals, Inc. Environ Toxicol 31: 724-735, 2016.
Insights
Ochratoxin A (OTA) exposure harms mouse fertility and embryonic development by inducing apoptosis. Blocking caspase-3 prevents these toxic effects, highlighting a key mechanism in OTA-induced reproductive toxicity.
Area of Science:
- Reproductive Toxicology
- Developmental Biology
- Environmental Health
Background:
- Ochratoxin A (OTA), a prevalent foodborne mycotoxin, is known for nephrotoxicity, hepatotoxicity, immunotoxicity, and risks to embryonic development.
- Previous research indicated OTA induces apoptosis in mouse blastocysts, reducing viability and development.
Purpose of the Study:
- To investigate the detrimental effects of OTA on mouse oocyte maturation, in vitro fertilization (IVF), and subsequent embryonic development (pre- and postimplantation) both in vitro and in vivo.
- To elucidate the underlying apoptotic mechanisms involved in OTA-induced embryonic toxicity.
Main Methods:
- Exposure of mouse oocytes and embryos to varying concentrations of OTA in vitro and in vivo.
- Assessment of oocyte maturation, IVF rates, and embryonic development.
- Administration of a caspase-3 inhibitor to evaluate its protective effects.
- Analysis of p53 and p21 protein levels in blastocyst cells.
Main Results:
- OTA significantly impaired oocyte maturation, reduced IVF rates, and inhibited embryonic development in vitro.
- In vivo exposure to OTA led to increased embryonic resorption and decreased fetal weight.
- Preincubation with a caspase-3 inhibitor blocked OTA-induced embryonic toxicity.
- OTA upregulated p53 and p21 levels, indicating apoptosis via p53-, p21-, and caspase-3-dependent pathways.
Conclusions:
- OTA exerts significant deleterious effects on mammalian oocyte maturation, fertilization, and embryonic development.
- The embryonic toxicity of OTA is mediated through a caspase-3-dependent apoptotic pathway.
- OTA-induced apoptosis involves the p53 and p21 regulatory mechanisms, impacting implantation and fetal survival.
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