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Gene expression and chemical exposure data for larval Pimephales promelas exposed to one of four pyrethroid pesticides.
Uploaded datasets are detailed exposure information (chemical concentrations and water quality parameters) for exposures conducted in a flow through diluter system with larval Pimephales promelas to four different pyrethroid pesticides. The GEO submission URL links to the NCBI GEO database and contains gene expression data from whole larvae exposed to different concentrations of the pyrethroids across multiple experiments. This dataset is associated with the following publication: Biales, A., M. Kostich, A. Batt, M. See, R. Flick, D. Gordon, J. Lazorchak, and D. Bencic. Initial Development of a Multigene Omics-Based Exposure Biomarker for Pyrethroid Pesticides. CRITICAL REVIEWS IN ENVIRONMENTAL SCIENCE AND TECHNOLOGY. CRC Press LLC, Boca Raton, FL, USA, 179(0): 27-35, (2016).
연관 데이터
Multigene biomarkers of pyrethroid exposure: exploratory experiments
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Gene expression microarray measurements in Pimephales promelas before and after pyrethroid exposure. This dataset is associated with the following publication: Kostich, M., D. Bencic, A. Batt, M. See, R. Flick, D. Gordon, J. Lazorchak, and A. Biales. Multigene Biomarkers of Pyrethroid Exposure: Exploratory Experiments. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY. Society of Environmental Toxicology and Chemistry, Pensacola, FL, USA, 38(11): 2436-2466, (2019).
Multigene biomarkers of pyrethroid exposure: exploratory experiments
공공데이터포털
Gene expression microarray measurements in Pimephales promelas before and after pyrethroid exposure. This dataset is associated with the following publication: Kostich, M., D. Bencic, A. Batt, M. See, R. Flick, D. Gordon, J. Lazorchak, and A. Biales. Multigene Biomarkers of Pyrethroid Exposure: Exploratory Experiments. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY. Society of Environmental Toxicology and Chemistry, Pensacola, FL, USA, 38(11): 2436-2466, (2019).
Carbaryl and PWC example data used in Pollesch et al. "Developing Integral Projection Models for Aquatic Ecotoxicology"
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The dataset provides growth and toxicokinetic parameters for the simulations presented in the manuscript by Pollesch et al. Developing Integral Projection Models for Aquatic Ecotoxicology. This dataset is associated with the following publication: Pollesch, N., K. Flynn, S. Kadlec, J. Swintek, S. Raimondo, and M. Etterson. Developing integral projection models for ecotoxicology. ECOLOGICAL MODELLING. Elsevier Science BV, Amsterdam, NETHERLANDS, 464: 109813, (2022).
Data set for a PFAS pestilcide pyrifluquinazon + dibutyl phthalate in utero mixture on male rat offspring reproductive development. Dose Additive effects of dissimilarly acting toxicants
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data set has a description of the information in the excell file and all the data used in the study. This dataset is associated with the following publication: Gray, E., J. Conley, C. Lambright, and J. Furr. In utero exposure to a mixture of the perfluoroalkylisopropyl pesticide pyrifluquinazon with dibutyl phthalate cumulatively disrupts male rat reproductive development via different mechanisms of action. TOXICOLOGICAL SCIENCES. Society of Toxicology, RESTON, VA, 188(2): 234-247, (2022).
Exported Chromatograms from the GC/MS analysis of fish and amphibian metabolomes following exposure to six high use pesticides.
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Data collected from the metabolomics analysis (GC/MS) of fish and amphibians following exposure to six high use pesticides. The objective of the study was to assess the applicability of using surrogate species data in ecological risk assessments.
Exported Chromatograms from the GC/MS analysis of fish and amphibian metabolomes following exposure to six high use pesticides.
공공데이터포털
Data collected from the metabolomics analysis (GC/MS) of fish and amphibians following exposure to six high use pesticides. The objective of the study was to assess the applicability of using surrogate species data in ecological risk assessments.
Amphibian dermal contact dataset
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Scripts and datasets used to merge available amphibian exposure into a collated data set with data analyses. This dataset is associated with the following publication: Purucker, T., M. Snyder, D. Glinski, R. Van Meter, K. Garber, E. Chelsvig, M. Cyterski, S. Sinnathamby, E. Paulukonis, and M. Henderson. Estimating dermal contact soil exposure for amphibians. Integrated Environmental Assessment and Management. Allen Press, Inc., Lawrence, KS, USA, 19(1): 9-16, (2022).
Estimation of pyrethroid pesticide intake using regression modeling of food groups based on composite dietary samples
공공데이터포털
Population-based estimates of pesticide intake are needed to characterize exposure for particular demographic groups based on their dietary behaviors. Regression modeling performed on measurements of selected pesticides in composited duplicate diet samples allowed 1) estimation of pesticide intakes for a defined demographic community, and 2) comparison of dietary pesticide intakes between the composite and individual samples. Extant databases were useful for assigning individual samples to composites, but they could not provide the breadth of information needed to facilitate measurable levels in every composite. Composite sample measurements were found to be good predictors of pyrethroid pesticide levels in their individual sample constituents where sufficient measurements are available above the method detection limit. Statistical inference shows little evidence of differences between individual and composite measurements and suggests that regression modeling of food groups based on composite dietary samples may provide an effective tool for estimating dietary pesticide intake for a defined population. This dataset is associated with the following publication: Michael, L., G.G. Brown, and L. Melnyk. Estimation of pyrethroid pesticide intake using regression modeling of food groups based on composite dietary samples... Journal of Environmental Science and Health. Part B, Pesticides, Food Contaminants, and Agricultural Wastes. Marcel Dekker Incorporated, New York, NY, USA, 51(11): 751, (2016).
Estimation of pyrethroid pesticide intake using regression modeling of food groups based on composite dietary samples
공공데이터포털
Population-based estimates of pesticide intake are needed to characterize exposure for particular demographic groups based on their dietary behaviors. Regression modeling performed on measurements of selected pesticides in composited duplicate diet samples allowed 1) estimation of pesticide intakes for a defined demographic community, and 2) comparison of dietary pesticide intakes between the composite and individual samples. Extant databases were useful for assigning individual samples to composites, but they could not provide the breadth of information needed to facilitate measurable levels in every composite. Composite sample measurements were found to be good predictors of pyrethroid pesticide levels in their individual sample constituents where sufficient measurements are available above the method detection limit. Statistical inference shows little evidence of differences between individual and composite measurements and suggests that regression modeling of food groups based on composite dietary samples may provide an effective tool for estimating dietary pesticide intake for a defined population. This dataset is associated with the following publication: Michael, L., G.G. Brown, and L. Melnyk. Estimation of pyrethroid pesticide intake using regression modeling of food groups based on composite dietary samples... Journal of Environmental Science and Health. Part B, Pesticides, Food Contaminants, and Agricultural Wastes. Marcel Dekker Incorporated, New York, NY, USA, 51(11): 751, (2016).
Soil organic matter and amphibian exposure dataset
공공데이터포털
Dataset containing experimental data and R scripts used for data analyses. This dataset is associated with the following publication: Van Meter, R., D. Glinski, M. Henderson , and T. Purucker. Soil organic matter content effects on dermal pesticide bioconcentration in American toads (Bufo americanus).. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY. Society of Environmental Toxicology and Chemistry, Pensacola, FL, USA, 35(11): 2734–2741, (2016).