Immunotoxicity Studies on the Insecticide 2-((1-(4-Phenoxyphenoxy)propan-2-yl)oxy)pyridine (MPEP) in Hsd:Harlan Sprague Dawley SD® Rats
Victor J. Johnson, Stefanie C. M. Burleson, Michael I. Luster, Gary R. Burleson, Barry McIntyre, Veronica G. Robinson, Reshan A. Fernando, James Blake, Donna Browning, Stephen Cooper, Shawn Harris, Dori R. Germolec

TL;DR
This study examines the effects of an insecticide called MPEP on the immune system of rats, finding limited immunotoxic effects and no impact on resistance to influenza.
Contribution
The study provides new immunotoxicity data for MPEP, focusing on immune function and host resistance to viral infection in rats.
Findings
MPEP treatment caused a dose-dependent increase in liver weights without histological changes.
MPEP showed minor effects on immune tests, including trends in pulmonary cell phagocytosis and antibody responses.
MPEP did not impair host resistance to influenza or antibody responses to the virus.
Abstract
The broad-spectrum insect growth regulator (IGR) and insecticide 2-((1-(4-Phenoxyphenoxy)propan-2-yl)oxy)pyridine (MPEP; also known as pyriproxyfen) is increasingly being used to address public health programs for vector control, initiated by the spread of Zika virus in 2015–2016. While considered relatively safe for humans under normal conditions, limited toxicology data are available. Current studies were undertaken to address the data gap regarding potential immunotoxicity of MPEP, with particular emphasis on host resistance to viral infection. Hsd:Harlan Sprague Dawley SD® rats were treated for 28 days by oral gavage with doses of 0, 62.5, 125, 250 or 500 mg/kg/day of MPEP in corn oil. There was a dose-dependent increase in liver weights which is consistent with the liver playing a dominant role in MPEP metabolism. However, no histological correlates were observed. Following…
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Taxonomy
TopicsImmunotoxicology and immune responses · Animal testing and alternatives · Pesticide Exposure and Toxicity
