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Oxidative stress driven inflammatory responses in lung epithelial cells
F. Tarhini
, A. Crilly
, J. Brzeszczynska
, L. McGarvey
, K. Thornbury
, C.S. Goodyear
, J.C. Lockhart
,
G.J. Litherland
School of Health and Life Sciences
Research output
:
Contribution to journal
›
Meeting Abstract
›
peer-review
44
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Keyphrases
Additive Effect
6%
Antioxidant
6%
Asthma
6%
BEAS-2B Cells
12%
Breath Condensate
6%
Cell Response
6%
Cell Viability
6%
Chronic Exposure
6%
Chronic Obstructive Pulmonary Disease
37%
Cigarette Smoking
6%
CM-H2DCFDA
6%
Combined Exposure
6%
Combined Treatment
6%
Cytokine Production
6%
Disease Pathology
6%
Epithelial Cells
12%
Exhaled Breath Condensate
6%
Exposure Model
6%
Hydrogen Peroxide
100%
Inflammatory Mediators
6%
Inflammatory Response
100%
Interleukin-6
18%
Interleukin-8
18%
Intracellular ROS
12%
Lung
6%
Lung Epithelial Cells
100%
Lung Pathology
6%
MTT Assay
6%
Multiple Comparison Tests
6%
One-way ANOVA
6%
Oxidative Stress
100%
Pathophysiological Changes
6%
Repeated Exposure
12%
ROS Production
6%
Significant Loss
6%
Stress-driven
100%
Ther
6%
Therapeutic Strategies
6%
Viability Loss
6%
Immunology and Microbiology
Asthma
5%
Breathing
11%
Cell Viability
5%
Cytokine
5%
Cytokine Production
5%
ELISA
5%
Hydrogen Peroxide
100%
Inflammation Response
100%
Interleukin 6
17%
Interleukin 8
17%
Mediator
5%
Oxidative Stress
100%
Scanning Electron Microscopy
5%
Secretion (Process)
5%
Pharmacology, Toxicology and Pharmaceutical Science
Antioxidant
5%
Asthma
5%
Cell Viability
5%
Chronic Obstructive Lung Disease
35%
Cigarette Smoke
5%
Cytokine
11%
Enzyme-Linked Immunosorbent Assay
5%
Hydrogen Peroxide
100%
Inflammation
100%
Interleukin 6
17%
Long Term Exposure
5%
Oxidizing Agent
11%
Salicylate Sodium
5%
Scanning Electron Microscopy
5%
Biochemistry, Genetics and Molecular Biology
Breathing
11%
Cell Viability
5%
Cytokine
5%
Cytokine Production
5%
Hydrogen Peroxide
100%
Interleukin 6
17%
Interleukin 8
17%
Mediator
5%
MTT Assay
5%
Oxidative Stress
100%
Scanning Electron Microscopy
5%
Secretion (Process)
5%
Psychology
Analysis of Variance
25%
Cell Viability
25%
Oxidative Stress
100%