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Diets Enriched with Coconut, Fish, and Olive Oil Modify Peripheral Metabolic Effects of Ozone in Rats
In this study male Wistar Kyoto rats maintained on diets enriched with coconut, fish or olive oil were compared with animals receiving normal diet for 8 weeks. After 8 weeks of dietary regimen, and while on respective diets, animals were exposed to air or 0.8 ppm ozone for 4 hours per day for 2 consecutive days and necropsies were performed post air or ozone exposure within 2 hours. Body weights, food consumption and body composition were assessed during dietary regimen. At necropsy, livers were stained for lipids, serum lipids and metabolic hormones were assessed, and liver, muscle and adipose tissues are assessed for gene expression using targeted Illumina sequencing for selected genes. Based on reviewers comments during revision period, circulating n-3, n-6, n-9 and unsaturated fatty acids were assessed in the serum through collaboration with Jenifer I. Fenton and Travis Goeden, Michigan State University where samples were shipped for analysis of these lipids using mass spectrometry. These data were incorporated in the manuscript (Table 1) and part of figure 3. This dataset is associated with the following publication: Snow, S., A. Henriquez, W. Cheng, A. Fisher, B. Vallanat, M. Angrish, J. Richards, M.C. Schladweiler, C. Wood, H. Tong, and U. Kodavanti. Diets Enriched with Coconut, Fish, and Olive Oil Modify Peripheral Metabolic Effects of Ozone in Rats. TOXICOLOGY AND APPLIED PHARMACOLOGY. Academic Press Incorporated, Orlando, FL, USA, 410(1): 115337, (2020).
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Diets Enriched with Coconut, Fish, and Olive Oil Modify Peripheral Metabolic Effects of Ozone in Rats
공공데이터포털
In this study male Wistar Kyoto rats maintained on diets enriched with coconut, fish or olive oil were compared with animals receiving normal diet for 8 weeks. After 8 weeks of dietary regimen, and while on respective diets, animals were exposed to air or 0.8 ppm ozone for 4 hours per day for 2 consecutive days and necropsies were performed post air or ozone exposure within 2 hours. Body weights, food consumption and body composition were assessed during dietary regimen. At necropsy, livers were stained for lipids, serum lipids and metabolic hormones were assessed, and liver, muscle and adipose tissues are assessed for gene expression using targeted Illumina sequencing for selected genes. Based on reviewers comments during revision period, circulating n-3, n-6, n-9 and unsaturated fatty acids were assessed in the serum through collaboration with Jenifer I. Fenton and Travis Goeden, Michigan State University where samples were shipped for analysis of these lipids using mass spectrometry. These data were incorporated in the manuscript (Table 1) and part of figure 3. This dataset is associated with the following publication: Snow, S., A. Henriquez, W. Cheng, A. Fisher, B. Vallanat, M. Angrish, J. Richards, M.C. Schladweiler, C. Wood, H. Tong, and U. Kodavanti. Diets Enriched with Coconut, Fish, and Olive Oil Modify Peripheral Metabolic Effects of Ozone in Rats. TOXICOLOGY AND APPLIED PHARMACOLOGY. Academic Press Incorporated, Orlando, FL, USA, 410(1): 115337, (2020).
Diet-O3-MS data
공공데이터포털
Dataset for a study examining the cardiovascular effects from acute ozone exposure in rats fed with fish oil or olive oil diets. This dataset is associated with the following publication: Tong, H., S. Snow, M.C. Schladweiler, G. Carswell, B. Chorley, and U. Kodavanti. Fish Oil and Olive Oil-Enriched Diets Alleviate Acute Ozone-induced Cardiovascular Effects in Rats. TOXICOLOGY AND APPLIED PHARMACOLOGY. Academic Press Incorporated, Orlando, FL, USA, 409: 115296, (2020).
Pulmonary and Vascular Effects of Acute Ozone Exposure in Diabetic Rats Fed an Atherogenic Diet
공공데이터포털
In this study, we investigated effects of inhaled ozone exposure and high-cholesterol diet (HCD) in healthy Wistar and Wistar-derived Goto-Kakizaki (GK) rats, a non-obese model of type 2 diabetes. Male rats (4-week old) were fed normal diet or HCD for 12 weeks and then exposed to filtered air or 1.0 ppm ozone (6hrs/day) for 1 or 2 days. We examined pulmonary, vascular, hematology, and inflammatory responses after each exposure plus an 18-hr recovery period. This dataset is associated with the following publication: Snow, S., A. Henriquez, L. Thompson, C. Fisher, M.C. Schladweiler, C. Wood, and U. Kodavanti. Pulmonary and Vascular Effects of Acute Ozone Exposure in Diabetic Rats Fed an Atherogenic Diet. TOXICOLOGY AND APPLIED PHARMACOLOGY. Academic Press Incorporated, Orlando, FL, USA, 415(115430): 1, (2021).
Peripheral Metabolic Effects of Ozone Exposure in Healthy and Diabetic Rats on Normal or High-Cholesterol Diet
공공데이터포털
In this study, using male Wistar and Wistar-derived Goto-Kakizaki (GK) rats, which exhibit a non-obese type-2 diabetes phenotype, we investigated whether two key metabolic stressors, type-2 diabetes and a high-cholesterol atherogenic diet, exacerbate ozone-induced metabolic effects. Rats were fed a normal control diet (ND) or high-cholesterol diet (HCD) for 12 weeks starting at 4 week-age and then exposed to filtered air or 1.0-ppm ozone (6h/day) for 1 or 2 days. Metabolic responses were analyzed at the end of each day and after an 18-hour recovery period following the 2-day exposure. This dataset is associated with the following publication: Snow, S., A. Henriquez, A. Fisher, B. Vallanat, J. House, M.C. Schladweiler, C. Wood, and U. Kodavanti. Peripheral Metabolic Effects of Ozone Exposure in Healthy and Diabetic Rats on Normal or High-Cholesterol Diet. TOXICOLOGY AND APPLIED PHARMACOLOGY. Academic Press Incorporated, Orlando, FL, USA, 415(115427): 1, (2021).
Dataset for the study investigating respiratory and cardiovascular benefits of fish oil or olive oil supplementation against acute exposure to ozone in young healthy adults
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This study is a randomized trial to investigate whether dietary supplementation with fish oil or olive oil modulate respiratory and cardiovascular effects of acute exposure to ozone in a controlled exposure chamber in young healthy adults. The dataset contains all the data for the outcome variables. This dataset is associated with the following publication: Chen, H., H. Tong, W. Shen, T. Montilla, M. Case, M. Almond , H. Wells, N. Alexis , D. Peden , A. Rappold, D. Diazsanchez, R. Devlin, P. Bromberg , and J. Samet. Fish oil blunts lung function decrements induced by acute exposure to ozone in young healthy adults: A randomized trial. ENVIRONMENT INTERNATIONAL. Elsevier B.V., Amsterdam, NETHERLANDS, 167(107407): 1, (2022).
HTF2015 Dietary Oils Effects on Mitochondrial Bioenergetics and Glial Morphology
공공데이터포털
Effects of acute ozone exposure on mitochondrial complex enzyme activities in various brain regions and glial morphology reared on different dietary oils. This dataset is associated with the following publication: Valdez, M., D. Freeborn, J. Valdez, A. Johnstone, S. Snow, A. Tennant, U. Kodavanti, and P. Kodavanti. Mitochondrial Bioenergetics in Brain Following Ozone Exposure in Rats Maintained on Coconut, Fish, and Olive Oil-Rich Diets. International Journal of Molecular Sciences. MDPI AG, Basel, SWITZERLAND, 20(24): 6303, (2019).
HTF2015 Dietary Oils Effects on Mitochondrial Bioenergetics and Glial Morphology
공공데이터포털
Effects of acute ozone exposure on mitochondrial complex enzyme activities in various brain regions and glial morphology reared on different dietary oils. This dataset is associated with the following publication: Valdez, M., D. Freeborn, J. Valdez, A. Johnstone, S. Snow, A. Tennant, U. Kodavanti, and P. Kodavanti. Mitochondrial Bioenergetics in Brain Following Ozone Exposure in Rats Maintained on Coconut, Fish, and Olive Oil-Rich Diets. International Journal of Molecular Sciences. MDPI AG, Basel, SWITZERLAND, 20(24): 6303, (2019).
Ozone-Induced Vascular Contractility and Pulmonary Injury are Differentially Impacted by Diets Enriched with Coconut Oil, Fish Oil, and Olive Oil
공공데이터포털
This data set is broken up into 2 Excel files. In one file are all the data pertaining to the vascular and pulmonary effects of ozone exposure in rats fed either a normal diet or diet enriched with coconut oil, fish oil, or olive oil. The different tabs of the spreadsheet pertain to each figure or table found in the manuscript. This file was updated on 12/7/17 to reflect changes to Figure 3 in response to reviewers comments following submission to Toxicological Sciences. In the second file is all the data for Figure 8 pertaining to the global microRNA assessment. This dataset is associated with the following publication: Snow, S., W. Cheng, A. Henriquez, M. Hodge, V. Bass, G. Nelson, G. Carswell, J. Richards, M. Schladweiler, A. Ledbetter, B. Chorley, K. Gowdy, H. Tong, and U. Kodavanti. Ozone-Induced Vascular Contractility and Pulmonary Injury are Differentially Impacted by Diets Enriched with Coconut Oil, Fish Oil, and Olive Oil. TOXICOLOGICAL SCIENCES. Society of Toxicology, RESTON, VA, 163(1): 57-69, (2018).
Ozone-Induced Vascular Contractility and Pulmonary Injury are Differentially Impacted by Diets Enriched with Coconut Oil, Fish Oil, and Olive Oil
공공데이터포털
This data set is broken up into 2 Excel files. In one file are all the data pertaining to the vascular and pulmonary effects of ozone exposure in rats fed either a normal diet or diet enriched with coconut oil, fish oil, or olive oil. The different tabs of the spreadsheet pertain to each figure or table found in the manuscript. This file was updated on 12/7/17 to reflect changes to Figure 3 in response to reviewers comments following submission to Toxicological Sciences. In the second file is all the data for Figure 8 pertaining to the global microRNA assessment. This dataset is associated with the following publication: Snow, S., W. Cheng, A. Henriquez, M. Hodge, V. Bass, G. Nelson, G. Carswell, J. Richards, M. Schladweiler, A. Ledbetter, B. Chorley, K. Gowdy, H. Tong, and U. Kodavanti. Ozone-Induced Vascular Contractility and Pulmonary Injury are Differentially Impacted by Diets Enriched with Coconut Oil, Fish Oil, and Olive Oil. TOXICOLOGICAL SCIENCES. Society of Toxicology, RESTON, VA, 163(1): 57-69, (2018).
Effect of high-fructose and high-fat diets on pulmonary sensitivity, motor activity, and body composition of brown Norway rats exposed to ozone
공공데이터포털
pulmonary parameters, BALF biomarkers, body composition, motor activity data collected from rats exposed to ozone after high fructose or high fat diets. This dataset is associated with the following publication: Gordon , C., P. Phillips , A. Johnstone , T. Beasley , A. Ledbetter , M. Schladweiler , S. Snow, and U. Kodavanti. Effect of High Fructose and High Fat Diets on Pulmonary Sensitivity, Motor Activity, and Body Composition of Brown Norway Rats Exposed to Ozone. INHALATION TOXICOLOGY. Taylor & Francis, Inc., Philadelphia, PA, USA, 28(5): 203-15, (2016).