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Oral and dermal absorption of chlorpyrifos: a human volunteer study

P Griffin1, H Mason, K Heywood

  • 1Health and Safety Laboratory, Sheffield, UK.

Abstract

Insights

Urinary dialkylphosphate metabolites indicate organophosphate pesticide chlorpyrifos exposure. Dermal absorption is significant, with delayed excretion compared to oral doses, making urinary assays sensitive biomonitoring tools.

Area of Science:

  • Environmental Science
  • Toxicology
  • Human Health

Background:

  • Organophosphate pesticides, like chlorpyrifos, pose risks through various exposure routes.
  • Understanding chlorpyrifos metabolism and excretion is crucial for assessing human exposure and health risks.

Purpose of the Study:

  • To investigate the elimination kinetics of urinary dialkylphosphate metabolites following oral and dermal exposure to chlorpyrifos in human volunteers.
  • To assess the impact of these exposure routes on plasma and erythrocyte cholinesterase activity.

Main Methods:

  • Human volunteers received oral (1 mg) and dermal (28.59 mg) doses of chlorpyrifos.
  • Blood and urine samples were collected over 100 hours post-exposure.
  • Urinary dialkylphosphate metabolites (diethylphosphate and diethyl-thiophosphate) and cholinesterase activity were quantified.

Main Results:

  • The elimination half-life of urinary dialkylphosphates was 15.5 hours (oral) and 30 hours (dermal).
  • Oral dose recovery as urinary metabolites was high (93%), while dermal recovery was low (1%), with 53% of the dermal dose remaining on the skin.
  • Cholinesterase activity remained unaffected by either dosing regimen.

Conclusions:

  • Chlorpyrifos is readily absorbed dermally, with excretion kinetics differing from oral intake.
  • Urinary dialkylphosphate metabolite assays are sensitive indicators of chlorpyrifos exposure, even when cholinesterase activity is not significantly inhibited.
  • Optimal urine sample collection for biological monitoring after dermal exposure is recommended prior to the next work shift.

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