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Updated: Jul 15, 2025

Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants
Published on: March 6, 2018
Course-, dose-, and stage-dependent toxic effects of prenatal acetaminophen exposure on fetal long bone development
Chi Ma1, Xufeng Li1, Hao Xiao2
1Division of Joint Surgery and Sports Medicine, Department of Orthopedic Surgery, Zhongnan Hospital of Wuhan University, Wuhan 430071, China.
Insights
Prenatal acetaminophen exposure (PAcE) in mice harms fetal long bone development by reducing growth and delaying ossification. This developmental toxicity, particularly at higher doses and mid-pregnancy, may involve the Wnt signaling pathway.
Area of Science:
- Developmental toxicology
- Skeletal biology
- Pharmacology
Background:
- Acetaminophen is a widely used analgesic during pregnancy.
- Epidemiological studies link prenatal acetaminophen exposure (PAcE) to adverse offspring outcomes.
- The specific impact of PAcE on fetal long bone development and its mechanisms remain unclear.
Purpose of the Study:
- To investigate the effects of PAcE on fetal long bone development in mice.
- To explore the underlying mechanisms, including gene expression and signaling pathways.
Main Methods:
- Fetal mouse femurs were analyzed after maternal acetaminophen administration at varying doses, frequencies, and gestational stages.
- Measurements included femur length, primary ossification center (POC) development, and mineralization.
- Gene expression of osteogenic markers and Wnt signaling pathway components were assessed.
Main Results:
- PAcE significantly reduced femur length and POC development, delaying mineralization and ossification.
- Osteogenic gene expression (Runx2, Bsp, Ocn, Col1a1) was downregulated.
- Osteoclast and angiogenic functions were also inhibited, with effects most pronounced at high doses, multiple exposures, and mid-pregnancy.
- Alterations in the canonical Wnt signaling pathway correlated with changes in osteogenesis.
Conclusions:
- PAcE induces developmental toxicity and impairs multi-cellular function in fetal long bones.
- High dose, multiple exposures, and mid-pregnancy administration pose the greatest risk.
- The canonical Wnt signaling pathway may mediate the observed developmental toxicity of PAcE.
Abstract:
Acetaminophen is a common analgesic and fever reduction medicine for pregnant women. Epidemiological studies suggest that prenatal acetaminophen exposure (PAcE) affects offspring health and development. However, the effects of PAcE on fetal long bone development and its potential mechanisms have not been elucidated. Based on clinical dosing characteristics, fetal mouse femurs were obtained for detection after oral gavage of acetaminophen at different doses (0, 100 or 400 mg/kg d), courses (single or multiple times) or stages (mid- or late pregnancy) during pregnancy in Kunming mice. The results showed that compared with the control group, PAcE reduced the length of total femur and the primary ossification center (POC), delayed the mineralization of POC and the ossification of epiphyseal region, and down-regulated the mRNA expression of osteogenic function markers (such as Runx2, Bsp, Ocn , Col1a1) in fetal femur, particularly in the high dose, multiple courses, and mid-pregnancy group. Meanwhile, the osteoclast and angiogenic function were also inhibited by PAcE at high dose, multiple courses, and mid-pregnancy, but the inhibition level was less than osteogenic function. Moreover, the alteration of canonical Wnt signalling pathway in PAcE fetal bone were consistent with its osteogenesis function changes. In conclusion, PAcE caused development toxicity and multi-cellular function inhibition in fetal long bone, particularly in the high dose, multiple treatments and mid-pregnancy group, and the alteration of canonical Wnt signalling pathway may be its potential mechanism.
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