Acaricidal Biominerals and Mode-of-Action Studies against Adult Blacklegged Ticks, Ixodes scapularis

Author:

Cave Grayson L.1,Richardson Elise A.1ORCID,Chen Kaiying1,Watson David W.1,Roe R. Michael1ORCID

Affiliation:

1. Department of Entomology and Plant Pathology, North Carolina State University, 3230 Ligon Street, Raleigh, NC 27695, USA

Abstract

Ticks in the USA are the most important arthropod vector of microbes that cause human and animal disease. The blacklegged tick, Ixodes scapularis, the focus of this study, is able to transmit the bacteria that causes Lyme disease in humans in the USA. The main approach to tick control is the use of chemical acaricides and repellents, but known and potential tick resistance to these chemicals requires the discovery of new methods of control. Volcanic glass, Imergard, was recently developed to mimic the insecticide mode of action of the minerals from diatoms (diatomaceous earth, DE) for the control of malaria mosquitoes in Africa. However, studies on the use of these minerals for tick control are minimal. In a dipping assay, which was put into DE (Celite), the times of 50 and 90% death of adult female I. scapularis were 7.3 and 10.5 h, respectively. Our mimic of DE, Imergard, killed ticks in 6.7 and 11.2 h, respectively. In a choice-mortality assay, ticks moved onto a treated surface of Imergard and died at 11.2 and 15.8 h, respectively. Ticks had greater locomotor activity before death when treated by dipping for both Imergard and Celite versus the no-mineral control. The ticks after making contact with Imergard had the mineral covering most of their body surface shown by scanning electron microscopy with evidence of Imergard inside their respiratory system. Although the assumed mode of action of Imergard and Celite is dehydration, the minerals are not hygroscopic, there was no evidence of cuticle damage, and death occurred in as little as 2 h, suggesting minimal abrasive action of the cuticle. Semi-field and field studies are needed in the future to examine the practical use of Imergard and Celite for tick control, and studies need to examine their effect on tick breathing and respiratory retention of water.

Funder

Department of Entomology and Plant Pathology at NC State University

Department of the Army, US Army Contracting Command, Aberdeen Proving Ground, Natick Contracting Division, Ft Detrick MD

NC Ag. Res. Station.

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference31 articles.

1. Summary of Notifiable Infectious Diseases and Conditions—United States;Adams;Morb. Mortal. Wkly. Rep.,2014

2. The Blacklegged Tick, Ixodes scapularis: An Increasing Public Health Concern;Eisen;Trends Parasitol.,2018

3. (2022, April 15). CDC Lyme, Available online: https://www.cdc.gov/lyme/index.html.

4. Detection of permethrin resistance and fipronil tolerance in Rhipicephalus sanguineus (acari: Ixodidae) in the United States;Eiden;J. Med. Entomol.,2015

5. Susceptibility of Ixodes scapularis (Acari: Ixodidae) to Permethrin under a Long-Term 4-Poster Deer Treatment Area on Shelter Island, NY;Burtis;J. Med. Entomol.,2021

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