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Comparative presynaptic neurochemical changes in rat striatum following exposure to chlorpyrifos or parathion

J Liu1, C N Pope

  • 1Division of Toxicology, College of Pharmacy and Health Sciences, Northeast Louisiana University, Monroe 71209-0470, USA.

Insights

Organophosphorus pesticides (OPs) cause toxicity by inhibiting acetylcholinesterase (AChE). This study shows OPs like chlorpyrifos and parathion differentially affect presynaptic processes, influencing overall toxicity beyond AChE inhibition.

Area of Science:

  • Neurotoxicology
  • Environmental Toxicology
  • Pharmacology

Background:

  • Organophosphorus pesticides (OPs) are widely used but pose risks due to acute toxicity, primarily via acetylcholinesterase (AChE) inhibition.
  • Previous research indicates varying toxicity levels between different OPs, even at similar AChE inhibition rates.
  • Compensatory postsynaptic receptor changes can lead to tolerance, but presynaptic cholinergic system modifications may also influence OP toxicity.

Purpose of the Study:

  • To investigate the differential effects of chlorpyrifos (CPF) and parathion (PS) on presynaptic cholinergic processes in female rats.
  • To compare the impact of CPF and PS on high-affinity choline uptake (HACU) and acetylcholine (ACh) release.
  • To determine if OP-selective changes in presynaptic function contribute to differential toxicity.

Main Methods:

  • Adult female rats were exposed to vehicle, CPF, or PS.
  • Clinical signs of toxicity and AChE activity were monitored for 7 days.
  • Striatal synaptosomes were analyzed for HACU and potassium-evoked ACh release.
  • In vitro effects of CPF-oxon and paraoxon on HACU were assessed.

Main Results:

  • PS induced more severe acute toxicity (SLUD signs, involuntary movements) than CPF, despite similar AChE inhibition.
  • CPF reduced striatal HACU at 1, 2, and 7 days post-exposure; PS only affected HACU at 2 days.
  • Potassium-evoked ACh release was altered differently by CPF and PS, particularly in the presence of atropine, suggesting distinct effects on muscarinic autoreceptors.

Conclusions:

  • OPs like CPF and PS can selectively alter presynaptic cholinergic processes, impacting their toxicity.
  • Early, OP-specific changes in HACU and ACh synthesis may explain differential toxicity observed after significant AChE inhibition.
  • Presynaptic mechanisms represent a critical, yet understudied, factor in the neurotoxicological outcomes of OP exposure.

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