Related Experiment Video
Updated: May 7, 2026

Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants
Published on: March 6, 2018
An F1-extended one-generation reproductive toxicity study in Crl:CD(SD) rats with 2,4-dichlorophenoxyacetic acid
Mary Sue Marty1, Barbara H Neal, Carol L Zablotny
1* Toxicology and Environmental Research & Consulting, The Dow Chemical Company, Midland, Michigan;
Abstract:
2,4-Dichlorophenoxyacetic acid (2,4-D) was assessed for systemic toxicity, reproductive toxicity, developmental neurotoxicity (DNT), developmental immunotoxicity (DIT), and endocrine toxicity. CD rats (27/sex/dose) were exposed to 0, 100, 300, 600 (female), or 800 (male) ppm 2,4-D in diet. Nonlinear toxicokinetic behavior was shown at high doses; the renal clearance saturation threshold for 2,4-D was exceeded markedly in females and slightly exceeded in males. Exposure was 4 weeks premating, 7 weeks postmating for P1 males and through lactation for P1 females. F1 offspring were examined for survival and development, and at weaning, pups were divided in cohorts, by sex and dose, and by systemic toxicity (10), DNT (10), DIT (20), and reproductive toxicity (≥ 23). Remaining weanlings were evaluated for systemic toxicity and neuropathology (10-12). Body weight decreased during lactation in high-dose P1 females and in F1 pups. Kidney was the primary target organ, with slight degeneration of proximal convoluted tubules observed in high-dose P1 males and in high-dose F1 males and females. A slight intergenerational difference in kidney toxicity was attributed to increased intake of 2,4-D in F1 offspring. Decreased weanling testes weights and delayed preputial separation in F1 males were attributed to decreased body weights. Endocrine-related effects were limited to slight thyroid hormone changes and adaptive histopathology in high-dose GD 17 dams seen only at a nonlinear toxicokinetic dose. 2,4-D did not cause reproductive toxicity, DNT, or DIT. The "No Observed Adverse Effect Level" for systemic toxicity was 300 ppm in both males (16.6 mg/kg/day) and females (20.6 mg/kg/day), which is approximately 6700- to 93 000-fold higher than that reported for 2,4-D exposures in human biomonitoring studies.
Insights
This study found that 2,4-Dichlorophenoxyacetic acid (2,4-D) did not cause reproductive toxicity, developmental neurotoxicity, or developmental immunotoxicity in rats. The no-observed-adverse-effect level for systemic toxicity was 300 ppm, significantly higher than human exposure levels.
Area of Science:
- Toxicology
- Environmental Health
- Reproductive Toxicology
Background:
- 2,4-Dichlorophenoxyacetic acid (2,4-D) is a widely used herbicide.
- Concerns exist regarding its potential systemic, reproductive, developmental, and endocrine toxicity.
Purpose of the Study:
- To assess the systemic toxicity, reproductive toxicity, developmental neurotoxicity (DNT), developmental immunotoxicity (DIT), and endocrine toxicity of 2,4-D in CD rats.
- To determine the No Observed Adverse Effect Level (NOAEL) for systemic toxicity.
Main Methods:
- Rats were exposed to varying doses of 2,4-D in their diet for multiple generations.
- Offspring were evaluated for survival, development, systemic toxicity, DNT, DIT, and reproductive parameters.
- Toxicokinetic analysis was performed to understand absorption, distribution, metabolism, and excretion.
Main Results:
- Nonlinear toxicokinetics were observed at high doses, with renal clearance saturation.
- Kidney was identified as the primary target organ, with mild tubular degeneration in high-dose groups.
- Decreased body weight and delayed development were noted in offspring of high-dose dams.
- 2,4-D did not induce reproductive toxicity, DNT, or DIT.
- The NOAEL for systemic toxicity was 300 ppm (16.6 mg/kg/day for males, 20.6 mg/kg/day for females).
Conclusions:
- 2,4-D exhibits a high margin of safety concerning reproductive, developmental neurotoxicity, and developmental immunotoxicity.
- The established NOAEL for systemic toxicity is substantially higher than typical human exposure levels.
- Kidney effects were observed at high doses, suggesting a potential target organ, but with a significant safety margin.
More Related Videos
05:27Gap Junctional Intercellular Communication: A Functional Biomarker to Assess Adverse Effects of Toxicants and Toxins, and Health Benefits of Natural Products
Published on: December 25, 2016
14:20High Throughput SiRNA Screening for Chloropicrin and Hydrogen Fluoride-Induced Cornea Epithelial Cell Injury
Published on: June 16, 2018