Related Experiment Video
Updated: Aug 17, 2026

Protocol for Acute and Chronic Ecotoxicity Testing of the Turquoise Killifish Nothobranchius furzeri
Published on: April 24, 2018
Acute and delayed effects of fenthion in young chicks
Insights
Organophosphorus esters desbromoleptophos and fenthion altered chick behavior and brain enzyme activity. Fenthion induced atypical ataxia, differing from classical organophosphorus ester-induced delayed neurotoxicity.
Area of Science:
- Neurotoxicology
- Biochemistry
- Animal Science
Background:
- Organophosphorus esters (OPs) are widely used pesticides with varying neurotoxic potentials.
- Understanding the differential effects of OPs on neurological function and enzyme activity is crucial for risk assessment.
- Immature animals may exhibit unique responses to neurotoxicants compared to adults.
Purpose of the Study:
- To investigate the neurotoxic effects of desbromoleptophos (DBL), fenitrothion (FTR), and fenthion (FEN) on immature chicks.
- To assess the impact of these OPs on brain acetylcholinesterase (AChE) and neurotoxic esterase (NTE) activity.
- To evaluate behavioral changes, specifically gait alterations and ataxia, following OP exposure.
Main Methods:
- Immature chicks were orally administered DBL and FTR, or topically treated with FEN.
- Behavioral testing was conducted to assess gait and motor function.
- Brain AChE and NTE inhibition levels were quantified using biochemical assays.
Main Results:
- DBL caused significant AChE and NTE inhibition, with recovery over time.
- FTR induced AChE inhibition but did not affect NTE levels.
- FEN resulted in moderate NTE inhibition and significant AChE inhibition, leading to atypical ataxia in chicks, distinct from classical OPIDN.
Conclusions:
- DBL and FEN exposure significantly impacts chick neurochemistry and motor behavior.
- FEN-induced ataxia in immature chicks presents with minimal NTE inhibition and a delayed onset, differentiating it from classical OPIDN.
- The study highlights age-dependent susceptibility and differential neurotoxic mechanisms of OPs.
Abstract:
The effects of desbromoleptophos, fenitrothion, and fenthion on brain acetylcholinesterase (AChE), brain neurotoxic esterase (NTE), and walking were investigated in immature chicks, below the age of organophosphorus ester-induced delayed neurotoxicity (OPIDN). Seventy-five milligrams per kilogram of the delayed neurotoxicant desbromoleptophos (DBL) and 100 mg/kg of the nonneurotoxicant fenithrothion (FTR) were given orally to 8-d-old chicks. Five milligrams per kilogram of the suspected neurotoxicant fenthion (FEN) was administered topically for 7 d, in 4 different age groups. Behavioral testing was performed for treated and control chicks on various days after treatment. Brain NTE and AChE assays were carried out for treated and control chicks on each day of behavioral testing. NTE and AChE inhibition were around 80 and 50%, respectively, 24 h after treatment, for the chicks treated with DBL. NTE returned to normal levels by 20 d and AChE by 6 d after treatment. FTR caused 56% AChE inhibition but not NTE inhibition 24 h after treatment. NTE inhibition for the FEN-treated chicks never exceeded 25% during the whole period of the experiment, whereas 65 and 54% inhibition of AChE was seen in two age groups. DBL and FEN significantly altered the gait of treated chicks, but the non-OPIDN-inducing FTR did not. FEN-treated chicks developed an atypical ataxia at the normal age for onset of sensitivity to OPIDN. Minimal NTE inhibition, long latency for the development of ataxia, and immaturity of the chicks at treatment distinguish FEN-induced functional deficits from classical OPIDN.
Related Concept Videos
Depolarizing Blockers: Pharmocokinetics
Toxicity Testing in Animals

