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26 May 2017 Identification of Novel Voltage-Gated Sodium Channel Mutations in Human Head and Body Lice (Phthiraptera: Pediculidae)
Samira Firooziyan, Ali Sadaghianifar, Behrooz Taghilou, Hossein Galavani, Eslam Ghaffari, Saber Gholizadeh
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Abstract

In recent years, the increase of head louse infestation in Iran (7.4%) and especially in West-Azerbaijan Province (248%) has raised the hypothesis of insecticide resistance development. There are different mechanisms of resistance to various groups of insecticides, and knockdown resistance (kdr) is a prominent mechanism of resistance to pyrethroids, an insecticide group which is used conventionally for pediculosis control. For detection of kdr-type well-known amino acid substitutions (M815I–T917I–L920F) and additional sodium channel mutations potentially associated with kdr resistance in head and body lice, louse populations were collected from West-Azerbaijan and Zanjan Provinces of Iran. Six novel mutations were found to be located in the IIS1-2 extracellular loop (H813P) and IIS5 (I927F, L928A, R929V, L930M, and L932M) of the a-subunit. Genotyping results showed that all specimens (100%) have at least one of these or the well-known mutations. Therefore, the presence of kdr-related and novel mutations in the sodium channel is likely to be the reason for the frequent use of pyrethroid insecticides due to treatment failure against lice. Further studies are now required to evaluate the prevalence of the kdr-like mutant allele for monitoring of insecticide resistance and the management of head and body lice in other provinces of the country.

© The Authors 2017. Published by Oxford University Press on behalf of Entomological Society of America. All rights reserved. For Permissions, please email: journals.permissions@oup.com
Samira Firooziyan, Ali Sadaghianifar, Behrooz Taghilou, Hossein Galavani, Eslam Ghaffari, and Saber Gholizadeh "Identification of Novel Voltage-Gated Sodium Channel Mutations in Human Head and Body Lice (Phthiraptera: Pediculidae)," Journal of Medical Entomology 54(5), 1337-1343, (26 May 2017). https://doi.org/10.1093/jme/tjx107
Received: 25 January 2017; Accepted: 2 May 2017; Published: 26 May 2017
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KEYWORDS
body louse
head louse
knockdown resistance
novel voltage-gated sodium channel mutation
sequence analysis
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