Transcriptional response of rat frontal cortex following acute In Vivo exposure to the pyrethroid insecticides permethrin and deltamethrin
Transcriptional response of rat frontal cortex following acute In Vivo exposure to the pyrethroid insecticides permethrin and deltamethrin
AbstractBackgroundPyrethroids are neurotoxic pesticides that interact with membrane bound ion channels in neurons and disrupt nerve function. The purpose of this study was to characterize and explore changes in gene expression that occur in the rat frontal cortex, an area of CNS affected by pyrethroids, following an acute low-dose exposure.ResultsRats were acutely exposed to either deltamethrin (0.3 – 3 mg/kg) or permethrin (1 – 100 mg/kg) followed by collection of cortical tissue at 6 hours. The doses used range from those that cause minimal signs of intoxication at the behavioral level to doses well below apparent no effect levels in the whole animal. A statistical framework based on parallel linear (SAM) and isotonic regression (PIR) methods identified 95 and 53 probe sets as dose-responsive. The PIR analysis was most sensitive for detecting transcripts with changes in expression at the NOAEL dose. A sub-set of genes (Camk1g,Ddc,Gpd3,c-fosandEgr1) was then confirmed by qRT-PCR and examined in a time course study. Changes in mRNA levels were typically less than 3-fold in magnitude across all components of the study. The responses observed are consistent with pyrethroids producing increased neuronal excitation in the cortex following a low-dosein vivoexposure. In addition, Significance Analysis of Function and Expression (SAFE) identified significantly enriched gene categories common for both pyrethroids, including some relating to branching morphogenesis. Exposure of primary cortical cell cultures to both compounds resulted in an increase (~25%) in the number of neurite branch points, supporting the results of the SAFE analysis.ConclusionIn the present study, pyrethroids induced changes in gene expression in the frontal cortex near the threshold for decreases in ambulatory motor activityin vivo. The penalized regression methods performed similarly in detecting dose-dependent changes in gene transcription. Finally, SAFE analysis of gene expression data identified branching morphogenesis as a biological process sensitive to pyrethroids and subsequentin vitroexperiments confirmed this predicted effect. The novel findings regarding pyrethroid effects on branching morphogenesis indicate these compounds may act as developmental neurotoxicants that affect normal neuronal morphology.
- University of North Carolina at Greensboro United States
- University of North Carolina at Chapel Hill United States
- Research Triangle Park Foundation United States
- VA Office of Research and Development United States
- Environmental Protection Agency United States
Male, Insecticides, Dose-Response Relationship, Drug, Transcription, Genetic, Gene Expression, QH426-470, Frontal Lobe, Rats, Nitriles, Pyrethrins, Genetics, Linear Models, Neurites, Animals, Rats, Long-Evans, TP248.13-248.65, Cells, Cultured, Permethrin, Biotechnology, Research Article, Oligonucleotide Array Sequence Analysis
Male, Insecticides, Dose-Response Relationship, Drug, Transcription, Genetic, Gene Expression, QH426-470, Frontal Lobe, Rats, Nitriles, Pyrethrins, Genetics, Linear Models, Neurites, Animals, Rats, Long-Evans, TP248.13-248.65, Cells, Cultured, Permethrin, Biotechnology, Research Article, Oligonucleotide Array Sequence Analysis
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