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The role of collagenase in emphysema
The extracellular matrix is essential for the integrity of the lung and when disrupted can lead to the architectural changes seen in emphysema. The etiology of emphysema is believed to be due to an imbalance in the proteases and antiproteases within the lung. Studies have focused on elastolytic enzymes as the primary agents in disease pathogenesis, however, recent data suggest that collagenases may also be involved in the destruction of lung tissue in emphysema. It is hoped that this expanded understanding of the pathophysiology of emphysema will lead to improved therapy in the treatment of the disease.
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Identifying Trans-Epithelial Effects of Inhaled Chemical Exposures on Stromal-Epithelial Oxidative Stress Dynamics in the Human Airway
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Data include: trans-epithelial electrical resistance, FITC-dextran permeability, cell viability and gene expression (RNA and protein). This dataset is associated with the following publication: Faber, S., N. McNabb, P. Ariel, E. Aungst, and S. McCullough. Exposure Effects Beyond the Epithelial Barrier: Trans-Epithelial Induction of Oxidative Stress by Diesel Exhaust Particulates in Lung Fibroblasts in an Organotypic Human Airway Model. TOXICOLOGICAL SCIENCES. Society of Toxicology, RESTON, VA, 177(1): 140-155, (2020).
Adrenergic and glucocorticoid receptor antagonists reduce ozone-induced lung injury and inflammation
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This data set contains one Excel file. In this file are all the data pertaining to the effects of propranolol and mifepristone on ozone induced lung injury and inflammation . The different tabs of the spreadsheet pertain to each figure found in the manuscript. This dataset is associated with the following publication: Henriquez, A., S. Snow, M. Schladweiler, C. Miller, J. Dye, A. Ledbetter, J. Richards, K. Mauge-Lewis, M. McGee, and U. Kodavanti. Adrenergic and glucocorticoid receptor antagonists reduce ozone-induced lung injury and inflammation. TOXICOLOGY AND APPLIED PHARMACOLOGY. Academic Press Incorporated, Orlando, FL, USA, 339: 161-171, (2018).
Adrenergic and glucocorticoid receptor antagonists reduce ozone-induced lung injury and inflammation
공공데이터포털
This data set contains one Excel file. In this file are all the data pertaining to the effects of propranolol and mifepristone on ozone induced lung injury and inflammation . The different tabs of the spreadsheet pertain to each figure found in the manuscript. This dataset is associated with the following publication: Henriquez, A., S. Snow, M. Schladweiler, C. Miller, J. Dye, A. Ledbetter, J. Richards, K. Mauge-Lewis, M. McGee, and U. Kodavanti. Adrenergic and glucocorticoid receptor antagonists reduce ozone-induced lung injury and inflammation. TOXICOLOGY AND APPLIED PHARMACOLOGY. Academic Press Incorporated, Orlando, FL, USA, 339: 161-171, (2018).
Epigenetic effects of ozone in the rodent lung
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Pulmonary gene expression related to the regulation of DNA methylation following an exposure to ozone in rats. Epigenetic regulation of a pulmonary hypertensive gene, apelin, was also quantified. This dataset is associated with the following publication: Miller, C., J. Dye, M. Schladweiler, J. Richards, A. Ledbetter, E. Stewart, and U. Kodavanti. Acute inhalation of ozone induces DNA methylation of apelin in lungs of Long-Evans rats.. INHALATION TOXICOLOGY. Taylor & Francis, Inc., Philadelphia, PA, USA, 30(4): 178-186, (2018).
Epigenetic effects of ozone in the rodent lung
공공데이터포털
Pulmonary gene expression related to the regulation of DNA methylation following an exposure to ozone in rats. Epigenetic regulation of a pulmonary hypertensive gene, apelin, was also quantified. This dataset is associated with the following publication: Miller, C., J. Dye, M. Schladweiler, J. Richards, A. Ledbetter, E. Stewart, and U. Kodavanti. Acute inhalation of ozone induces DNA methylation of apelin in lungs of Long-Evans rats.. INHALATION TOXICOLOGY. Taylor & Francis, Inc., Philadelphia, PA, USA, 30(4): 178-186, (2018).
E-Cigarette Liquids and Aldehyde Flavoring Agents Inhibit CYP2A6 Activity in Lung Epithelial Cells
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Method to access data for Brett R. Winters et al., 'E-Cigarette Liquids and Aldehyde Flavoring Agents Inhibit CYP2A6 Activity in Lung Epithelial Cells' in ACS Omega, Vol 8, Issue 12, pg 11261-11266, 2023; DOI https://doi.org/10.1021/acsomega.2c08258, PMC10061538. This dataset is not publicly accessible because: Data was not shared by lead author. It can be accessed through the following means: To request data, contact lead author Brett Winters at brwinters@cytokinetics.com. Format: N/A. This dataset is associated with the following publication: Winters, B., P. Clapp, S. Simmons, T. Kochar, I. Jaspers, and M. Madden. E-Cigarette Liquids and Aldehyde Flavoring Agents Inhibit CYP2A6 Activity in Lung Epithelial Cells. ACS Omega. American Chemical Society, Washington, DC, USA, 8(12): 11261-11266, (2023).
E-Cigarette Liquids and Aldehyde Flavoring Agents Inhibit CYP2A6 Activity in Lung Epithelial Cells
공공데이터포털
Method to access data for Brett R. Winters et al., 'E-Cigarette Liquids and Aldehyde Flavoring Agents Inhibit CYP2A6 Activity in Lung Epithelial Cells' in ACS Omega, Vol 8, Issue 12, pg 11261-11266, 2023; DOI https://doi.org/10.1021/acsomega.2c08258, PMC10061538. This dataset is not publicly accessible because: Data was not shared by lead author. It can be accessed through the following means: To request data, contact lead author Brett Winters at brwinters@cytokinetics.com. Format: N/A. This dataset is associated with the following publication: Winters, B., P. Clapp, S. Simmons, T. Kochar, I. Jaspers, and M. Madden. E-Cigarette Liquids and Aldehyde Flavoring Agents Inhibit CYP2A6 Activity in Lung Epithelial Cells. ACS Omega. American Chemical Society, Washington, DC, USA, 8(12): 11261-11266, (2023).
Leukocyte trafficking in alveoli and airway passages
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Many pulmonary diseases preferentially affect the large airways or the alveoli. Although the mechanisms are often particular to each disease process, site-specific differences in leukocyte trafficking and the regulation of inflammation also occur. Differences in the process of margination, sequestration, adhesion, and migration occur that can be attributed to differences in anatomy, hemodynamics, and the expression of proteins. The large airways are nourished by the bronchial circulation, whereas the pulmonary circulation feeds the distal lung parenchyma. The presence of different cell types in large airways from those in alveoli might contribute to site-specific differences in the molecular regulation of the inflammatory process.
Burn pit smoke condensate-mediated toxicity in human airway epithelial cells
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Data include assessment of transepithelial electrical resistance, lactate dehydrogenase, toxicity scores, pro-inflammatory cytokines, and modulation of gene expression in human airway epithelial cells exposed to burn pit smoke condensates. This dataset is associated with the following publication: Ghosh, A., A. Payton, S. Gallant, K. Rogers, T. Mascenik, E. Hickman, C. Love, K. Schichlein, T. Smyth, Y.H. Kim, J. Rager, M. Gilmour, S. Randell, and i. Jspers. Burn pit smoke condensate-mediated toxicity in human airway epithelial cells. CHEMICAL RESEARCH IN TOXICOLOGY. American Chemical Society, Washington, DC, USA, 37(5): 791-803, (2024).