Related Experiment Video
Updated: Feb 12, 2026

Moderate Prenatal Alcohol Exposure and Quantification of Social Behavior in Adult Rats
Published on: December 14, 2014
Effects of prenatal exposure to triclosan on the liver transcriptome in chicken embryos
Jiahua Guo1, Shohei Ito1, Hoa Thanh Nguyen1
1Center for Marine Environmental Studies, Ehime University, Bunkyo-cho 2-5, Matsuyama, Ehime Prefecture, Japan.
Abstract:
Triclosan (TCS), a commonly used antimicrobial compound, has recently been detected in the eggs of wild avian species. Exposure to TCS in rodents is known to interfere with thyroid hormone (TH), disrupt immune responses and cause liver disease. However, no attempt has been made to clarify the effects of TCS in avian species. The aim of this study is therefore to evaluate the toxic effects of in ovo exposure to TCS and explore the molecular mechanism by transcriptome analysis in the embryonic liver of a model avian species, chicken (Gallus gallus). Embryos were treated with graded concentration of TCS (0.1, 1 and 10 μg/g egg) at Hamburger Hamilton Stage (HHS) 1 (1st day), followed by 20 days of incubation to HHS 46. At the administration of 10 μg TCS/g egg, embryo mortality increased from 20% in control to 37% accompanied with 8% attenuation in tarsus length. While liver somatic index (LSI) in TCS treatments was enhanced, statistical difference was only observed at the treatment of 0.1 μg TCS/g egg in females. The up-regulation of several crucial differentially expressed genes (DEGs) in transcriptome analysis suggested that TCS induced xenobiotic metabolism (e.g. CYP2C23a, CYP2C45 and CYP3A37 in males; CYP2C45 in females) and activated the thyroid hormone receptor (THR) - mediated downstream signaling (e.g. THRSPB and DIO2 in males; THRSPB in females). In females, TCS may further activate the lipogenesis signaling (e.g. ACSL5, ELOVL2) and repress the lipolysis signaling (e.g. ABHD5, ACAT2). A battery of enriched transcription factors in relation to these TCS-induced signaling and phenotypes were found, including activated SREBF1, PPARa, LXRa, and LXRb in males and activated GLI2 in females; COUP-TFII was predicted to be suppressed in both genders. Finally, we developed adverse outcome pathways (AOPs) that provide insights into the molecular mechanisms underlying the alteration of phenotypes.
Insights
Triclosan (TCS) exposure in chicken embryos increased mortality and altered growth, impacting liver function and gene expression related to metabolism and hormone signaling. This study reveals TCS toxicity mechanisms in avian development.
Area of Science:
- Environmental Toxicology
- Developmental Biology
- Molecular Toxicology
Background:
- Triclosan (TCS), an antimicrobial, is found in wild bird eggs.
- Rodent studies show TCS disrupts thyroid hormone, immunity, and liver function.
- Effects of TCS on avian species remain unclear.
Purpose of the Study:
- Evaluate toxic effects of in ovo TCS exposure in chickens.
- Explore molecular mechanisms of TCS toxicity using transcriptome analysis.
- Investigate TCS impact on embryonic liver development and function.
Main Methods:
- Chicken embryos (Gallus gallus) exposed to graded TCS concentrations (0.1, 1, 10 μg/g egg) at Hamburger Hamilton Stage 1.
- Incubation for 20 days to Hamburger Hamilton Stage 46.
- Transcriptome analysis of embryonic liver tissue to identify differentially expressed genes (DEGs).
Main Results:
- Increased embryo mortality (20% to 37%) and reduced tarsus length (8%) at 10 μg/g TCS.
- Elevated liver somatic index (LSI) in TCS treatments, significant in females at 0.1 μg/g.
- TCS altered gene expression related to xenobiotic metabolism, thyroid hormone receptor signaling, and in females, lipogenesis/lipolysis pathways.
Conclusions:
- In ovo TCS exposure causes developmental toxicity in chickens, including mortality and growth reduction.
- TCS disrupts key molecular pathways in the embryonic liver, including xenobiotic metabolism and thyroid hormone signaling.
- Adverse outcome pathways (AOPs) were developed to elucidate TCS-induced phenotypic alterations.
Related Concept Videos
Biological Effects of Radiation
Buffer Effectiveness
The buffer capacity is the amount of acid or base that can be added to a given volume...
Framing Effects
Liver Histology
Hepatocytes perform a variety of essential functions. They secrete...
Liver Physiology
Metabolic Regulation:
The liver is the central organ involved in regulating blood composition. It stabilizes blood glucose levels, maintaining them within the range of 70–110 mg/dL. When these levels drop, the liver breaks down glycogen reserves and releases glucose into the bloodstream. It can...
Liver Regeneration
Cells of Liver
The liver comprises four major types of cells— hepatocytes, stellate, Kupffer, and sinusoidal endothelial cells. The hepatocytes are...

