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November 2, 2004The Annual Review of Pharmacology and Toxicology1,733 citations

NEONICOTINOID INSECTICIDE TOXICOLOGY: Mechanisms of Selective Action

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MTMotohiro TomizawaJCJohn E. Casida

Key Points

  • This research examines how neonicotinoids selectively affect insects while being less toxic to mammals and other animals.
  • Analyzed molecular mechanisms of neonicotinoids and their interactions with nicotinic receptors.
  • Investigated biotransformation processes involved in detoxification and activation of neonicotinoids.
  • Explored the differential binding affinities of neonicotinoids to vertebrate versus insect nicotinic receptors.
  • Neonicotinoids effectively activate insect nicotinic receptors through unique interactions, enhancing their insecticidal action.
  • Demonstrated low toxicity levels in mammals, with a significant binding affinity difference between vertebrate and insect receptors.
  • Pharmacophore structure contributes to selective action and lower toxicity in non-target species.

Abstract

The neonicotinoids, the newest major class of insecticides, have outstanding potency and systemic action for crop protection against piercing-sucking pests, and they are highly effective for flea control on cats and dogs. Their common names are acetamiprid, clothianidin, dinotefuran, imidacloprid, nitenpyram, thiacloprid, and thiamethoxam. They generally have low toxicity to mammals (acute and chronic), birds, and fish. Biotransformations involve some activation reactions but largely detoxification mechanisms. In contrast to nicotine, epibatidine, and other ammonium or iminium nicotinoids, which are mostly protonated at physiological pH, the neonicotinoids are not protonated and have an electronegative nitro or cyano pharmacophore. Agonist recognition by the nicotinic receptor involves cation-pi interaction for nicotinoids in mammals and possibly a cationic subsite for interaction with the nitro or cyano substituent of neonicotinoids in insects. The low affinity of neonicotinoids for vertebrate relative to insect nicotinic receptors is a major factor in their favorable toxicological profile.

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Cite This Study

Tomizawa et al. (2004) studied this question.

synapsesocial.com/papers/69de98bd5e582bd3c5e93b86https://doi.org/10.1146/annurev.pharmtox.45.120403.095930
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