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Structure-activity relationships for the action of 11 pyrethroid insecticides on rat Nav1.8 sodium channels expressed in Xenopus oocytes

  • Cornell University

Research output: Contribution to journalArticlepeer-review

93 Scopus citations

Abstract

Pyrethroid insecticides bind to voltage-sensitive sodium channels and modify their gating kinetics, thereby disrupting nerve function. This paper describes the action of 11 structurally diverse commercial pyrethroid insecticides on the rat Nav1.8 sodium channel isoform, the principal carrier of the tetrodotoxin-resistant, pyrethroid-sensitive sodium current of sensory neurons, expressed in Xenopus laevis oocytes. All 11 compounds produced characteristic sodium tail currents following a depolarizing pulse that ranged from rapidly-decaying monoexponential currents (allethrin, cismethrin and permethrin) to persistent biexponential currents (cyfluthrin, cyhalothrin, cypermethrin and deltamethrin). Tail currents for the remaining compounds (bifenthrin, fenpropathrin, fenvalerate and tefluthrin) were monoexponential and decayed with kinetics intermediate between these extremes. Reconstruction of currents carried solely by the pyrethroid-modified subpopulation of channels revealed two types of pyrethroid-modified currents. The first type, found with cismethrin, allethrin, permethrin and tefluthrin, activated relatively rapidly and inactivated partially during a 40-ms depolarization. The second type, found with cypermethrin, cyfluthrin, cyhalothrin, deltamethrin, fenpropathrin and fenvalerate, activated more slowly and did not detectably inactivate during a 40-ms depolarization. Only bifenthrin did not produce modified currents that fit clearly into either of these categories. In all cases, the rate of activation of modified channels was strongly correlated with the rate of tail current decay following repolarization. Modification of Nav1.8 sodium channels by cyfluthrin, cyhalothrin, cypermethrin and deltamethrin was enhanced 2.3- to 3.4-fold by repetitive stimulation; this effect appeared to result from the accumulation of persistently open channels rather than preferential binding to open channel states. Fenpropathrin was the most effective compound against Nav1.8 sodium channels from the perspective of either resting or use-dependent modification. When use dependence is taken into account, cypermethrin, deltamethrin and tefluthrin approached the effectiveness of fenpropathrin. The selective expression of Nav1.8 sodium channels in nociceptive neurons suggests that these channels may be important targets for pyrethroids in the production of paresthesia following dermal exposure.

Original languageEnglish
Pages (from-to)233-244
Number of pages12
JournalToxicology and Applied Pharmacology
Volume211
Issue number3
DOIs
StatePublished - 15 Mar 2006

Bibliographical note

Funding Information:
This work was supported in part by grants from the National Institute of Environmental Health Sciences (R01-ES08962) and the Pyrethroid Working Group, a consortium of firms (Bayer CropScience, DuPont Crop Protection, FMC Corporation, Syngenta Crop Protection Inc., and Valent Corporation) that market pyrethroid-based insecticide products in the United States. We thank S. Symington (University of Massachusetts, Amherst, MA) for the purification of the cismethrin sample used in these studies. Conflict of Interest Statements for Authors, J.-S. Choi has no conflicts of interest regarding the research described in the manuscript. D. M. Soderlund serves as a consultant to the Pyrethroid Working Group, one of the sponsors of this research. Role of Funding Sources, The National Institute of Environmental Health Sciences provided partial financial support but no other input into this project or the manuscript derived from it. The Pyrethroid Working Group provided partial financial support, assisted in the selection of the pyrethroids used in this study, and provided the pyrethroid samples employed in this research.

Keywords

  • Allethrin
  • Bifenthrin
  • Cismethrin
  • Cyfluthrin
  • Cyhalothrin
  • Cypermethrin
  • Deltamethrin
  • Fenpropathrin
  • Fenvalerate
  • Permethrin
  • Pyrethroid
  • Sodium channel
  • Tefluthrin

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