Literature DB >> 8298967

Differential sensitivity of tetrodotoxin-sensitive and tetrodotoxin-resistant sodium channels to the insecticide allethrin in rat dorsal root ganglion neurons.

K S Ginsburg1, T Narahashi.   

Abstract

The pyrethroid insecticides are known to modify neuronal sodium channels to cause a prolongation of whole cell current. The sodium channels expressed in the dorsal root ganglion neurons of the rat are of two types, one highly sensitive to tetrodotoxin and the other highly resistant to tetrodotoxin. The pyrethroid allethrin exerted profound effects on tetrodotoxin-resistant sodium channels while causing minimal effects on tetrodotoxin-sensitive sodium channels. Currents derived from tetrodotoxin-resistant sodium channels were greatly prolonged during a step depolarization; the tail currents upon repolarization were also augmented and prolonged. In the tetrodotoxin-sensitive sodium channel currents, these changes caused by allethrin were much smaller or negligible. The activation and inactivation voltages of tetrodotoxin-resistant peak sodium currents were not significantly altered by allethrin. The differential action of allethrin on the two types of sodium channels would be important not only in identifying the target molecular structure but also in interpreting the symptoms of poisoning in mammals.

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Year:  1993        PMID: 8298967     DOI: 10.1016/0006-8993(93)90326-i

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  14 in total

Review 1.  Insect sodium channels and insecticide resistance.

Authors:  Ke Dong
Journal:  Invert Neurosci       Date:  2007-01-06

Review 2.  Functional reconstitution of rat Nav1.6 sodium channels in vitro for studies of pyrethroid action.

Authors:  David M Soderlund; Jianguo Tan; Bingjun He
Journal:  Neurotoxicology       Date:  2016-03-21       Impact factor: 4.294

3.  Voltage-Gated Sodium Channels as Insecticide Targets.

Authors:  Kristopher S Silver; Yuzhe Du; Yoshiko Nomura; Eugenio E Oliveira; Vincent L Salgado; Boris S Zhorov; Ke Dong
Journal:  Adv In Insect Phys       Date:  2014       Impact factor: 3.364

Review 4.  Molecular mechanisms of pyrethroid insecticide neurotoxicity: recent advances.

Authors:  David M Soderlund
Journal:  Arch Toxicol       Date:  2011-06-28       Impact factor: 5.153

5.  Glutamate-activated chloride channels: Unique fipronil targets present in insects but not in mammals.

Authors:  Toshio Narahashi; Xilong Zhao; Tomoko Ikeda; Vincent L Salgado; Jay Z Yeh
Journal:  Pestic Biochem Physiol       Date:  2010-06-01       Impact factor: 3.963

6.  State-Dependent Modification of Voltage-Gated Sodium Channels by Pyrethroids.

Authors:  David M Soderlund
Journal:  Pestic Biochem Physiol       Date:  2010-06-01       Impact factor: 3.963

Review 7.  Elucidation of pyrethroid and DDT receptor sites in the voltage-gated sodium channel.

Authors:  Boris S Zhorov; Ke Dong
Journal:  Neurotoxicology       Date:  2016-08-25       Impact factor: 4.294

8.  Alternative splicing of an insect sodium channel gene generates pharmacologically distinct sodium channels.

Authors:  Jianguo Tan; Zhiqi Liu; Yoshiko Nomura; Alan L Goldin; Ke Dong
Journal:  J Neurosci       Date:  2002-07-01       Impact factor: 6.167

Review 9.  Use of non-mammalian alternative models for neurotoxicological study.

Authors:  Randall T Peterson; Richard Nass; Windy A Boyd; Jonathan H Freedman; Ke Dong; Toshio Narahashi
Journal:  Neurotoxicology       Date:  2008-04-25       Impact factor: 4.294

10.  Transcriptional response of rat frontal cortex following acute in vivo exposure to the pyrethroid insecticides permethrin and deltamethrin.

Authors:  Joshua A Harrill; Zhen Li; Fred A Wright; Nicholas M Radio; William R Mundy; Rogelio Tornero-Velez; Kevin M Crofton
Journal:  BMC Genomics       Date:  2008-11-18       Impact factor: 3.969

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