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Constitutive Androstane Receptor Agonist, TCPOBOP: Maternal Exposure Impairs the Growth and Development of Female
Shijia Pan1,2, Yuan Guo1,2, Wen Yu1,2
1Beijing Key Laboratory of Gene Resource and Molecular Development, College of Life Sciences, Beijing Normal University, Beijing 100875, China.
Abstract:
Environmental chemicals, which are known to impact offspring health, have become a public concern. Constitutive activated receptor (CAR) is activated by various environmental chemicals and participates in xenobiotic metabolism. Here, we described the effects of maternal exposure to the CAR-specific ligand 1,4-bis[2-(3,5-dichloropyridyloxy)] benzene (TCPOBOP, TC) on offspring health outcomes. Maternal TC exposure exhibited a stronger inhibition of body weight in 3-week-old and 8-week-old first-generation (F1) offspring female mice compared to controls. Further, maternal TC exposure obtained a strong increase in hepatic drug-metabolizing enzyme expression in 3-week-old female mice that persisted into 8-week-old adulthood. Interestingly, we observed distorted intestinal morphological features in 8-week-old F1 female mice in the TC-exposed group. Moreover, maternal TC exposure triggered a loss of intestinal barrier integrity by reducing the expression of intestinal tight junction proteins. Accordingly, maternal exposure to TC down-regulated serum triglyceride levels as well as decreased the expression of intestinal lipid uptake and transport marker genes. Mechanistically, maternal TC exposure activated the intestinal inflammatory response and disrupted the antioxidant system in the offspring female mice, thereby impeding the intestinal absorption of nutrients and seriously threatening offspring health. Altogether, these findings highlight that the effects of maternal TC exposure on offspring toxicity could not be ignored.
Insights
Maternal exposure to the environmental chemical TCPOBOP (TC) negatively impacts offspring female mice, causing reduced body weight and intestinal damage. This highlights the critical need to address environmental chemical exposure during pregnancy for offspring health.
Area of Science:
- Toxicology
- Environmental Health
- Developmental Biology
Background:
- Environmental chemicals pose risks to offspring health.
- Constitutive activated receptor (CAR) is involved in xenobiotic metabolism.
- TCPOBOP (TC) is a CAR-specific ligand.
Purpose of the Study:
- To investigate the effects of maternal exposure to TCPOBOP (TC) on the health outcomes of first-generation (F1) offspring female mice.
- To understand the mechanisms underlying TC-induced toxicity in offspring.
Main Methods:
- Mice were exposed to TCPOBOP (TC) during gestation.
- Offspring body weight, hepatic drug-metabolizing enzyme expression, and intestinal morphology were assessed.
- Intestinal barrier integrity, tight junction protein expression, and lipid metabolism markers were analyzed.
- Inflammatory and antioxidant responses in the offspring were evaluated.
Main Results:
- Maternal TC exposure reduced offspring body weight and increased hepatic drug-metabolizing enzyme expression.
- Distorted intestinal morphology and loss of intestinal barrier integrity were observed in offspring.
- TC exposure downregulated serum triglyceride levels and decreased intestinal lipid transport gene expression.
- Maternal TC exposure activated intestinal inflammation and disrupted the antioxidant system in offspring.
Conclusions:
- Maternal exposure to TCPOBOP (TC) adversely affects offspring female mice's health.
- TC impairs offspring growth, intestinal integrity, and nutrient absorption.
- The findings underscore the potential risks of environmental chemical exposure during pregnancy.
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