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Mono-(2-Ethylhexyl) Phthalate Induces Injury in Human Umbilical Vein Endothelial Cells
- Source :
- PLoS ONE, PLoS ONE, Vol 9, Iss 5, p e97607 (2014)
- Publication Year :
- 2014
- Publisher :
- Public Library of Science (PLoS), 2014.
-
Abstract
- Mono-(2-ethylhexyl) phthalate (MEHP), the active metabolite of di-(2-ethylhexyl) phthalate (DEHP), is a widespread environmental contaminant and has been proved to have potential adverse effects on the reproductive system, carcinogenicity, liver, kidney and developmental toxicities. However, the effect of MEHP on vascular system remains unclear. The main purpose of this study was to evaluate the cytotoxic effects of MEHP on human umbilical endothelial cells (HUVEC) and its possible molecular mechanism. HUVEC cells were treated with MEHP (0, 6.25, 12.5, 25,50 and 100 µM), and the cellular apoptosis and mitochondrial membrane potential as well as intracellular reactive oxygen species were determined. In present study, MEHP induced a dose-dependent cell injury in HUVEC cell via an apoptosis pathway as characterized by increased percentage of sub-G1, activation of caspase-3, -8 and -9, and increased ratio of Bax/bcl-2 mRNA and protein expression as well as cytochrome C releasing. In addition, there was obvious oxidative stress, represented by decreased glutathione level, increased malondialdehyde level and superoxide dismutase activity. N-Acetylcysteine, as an antioxidant that is a direct reactive oxygen species scavenger, could effectively block MEHP-induced reactive oxygen species generation, mitochondrial membrane potential loss and cell apoptosis. These data indicated that MEHP induced apoptosis in HUVEC cells through a reactive oxygen species-mediated mitochondria-dependent pathway.
- Subjects :
- Pulmonology
lcsh:Medicine
Apoptosis
Mitochondrion
Toxicology
medicine.disease_cause
Epithelium
Antioxidants
Umbilical vein
chemistry.chemical_compound
Malondialdehyde
Molecular Cell Biology
Toxin Binding
Medicine and Health Sciences
Public and Occupational Health
lcsh:Science
Cells, Cultured
Membrane Potential, Mitochondrial
chemistry.chemical_classification
Multidisciplinary
Cell Death
Cytochromes c
Glutathione
Cell Processes
Caspases
Environmental Pollutants
Anatomy
Cellular Types
Environmental Health
Research Article
Signal Transduction
Cell Survival
Toxic Agents
Predictive Toxicology
Cardiology
Biology
Environmental and Occupational Lung Diseases
Superoxide dismutase
Diethylhexyl Phthalate
Human Umbilical Vein Endothelial Cells
medicine
Humans
Reactive oxygen species
Superoxide Dismutase
lcsh:R
Biology and Life Sciences
Endothelial Cells
Epithelial Cells
Cell Biology
Molecular biology
Acetylcysteine
Health Care
Biological Tissue
chemistry
Immunology
Cardiovascular Anatomy
biology.protein
lcsh:Q
Preventive Medicine
Apoptosis Regulatory Proteins
Reactive Oxygen Species
Oxidative stress
Subjects
Details
- ISSN :
- 19326203
- Volume :
- 9
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....f5a9c65babfb882f294ee863545d610a