1. DNA strand breaks in human nasal respiratory epithelium are induced upon exposure to urban pollution
- Author
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Norma Osnaya-Brizuela, Leticia Ramirez-Martinez, Lilian Calderón-Garcidueñas, and Anna Villarreal-Calderón
- Subjects
Adult ,Male ,Urban Population ,DNA damage ,Cell Survival ,Health, Toxicology and Mutagenesis ,DNA, Single-Stranded ,Mucous membrane of nose ,Biology ,Gene mutation ,Ozone ,Nose Diseases ,medicine ,Humans ,Respiratory system ,Child ,Cell damage ,Mexico ,Public Health, Environmental and Occupational Health ,Environmental exposure ,Environmental Exposure ,medicine.disease ,Nasal Mucosa ,Cell killing ,Immunology ,Respiratory epithelium ,Female ,Research Article ,DNA Damage - Abstract
All organisms have the ability to respond and adapt to a myriad of environmental insults. The human respiratory epithelium, when exposed to oxidant gases in photochemical smog, is at risk of DNA damage and requires efficient cellular adaptative responses to resist the environmentally induced cell damage. Ozone and its reaction products induce in vitro and in vivo DNA single strand breaks (SSBs) in respiratory epithelial cells and alveolar macrophages. To determine if exposure to a polluted atmosphere with ozone as the main criteria pollutant induces SSBs in nasal epithelium, we studied 139 volunteers, including a control population of 19 children and 13 adult males who lived in a low-polluted Pacific port, 69 males and 16 children who were permanent residents of Southwest Metropolitan Mexico City (SWMMC), and 22 young males newly arrived to SWMMC and followed for 12 weeks. Respiratory symptoms, nasal cytology and histopathology, cell viabilities, and single-cell gel electrophoresis were investigated. Atmospheric pollutant data were obtained from a fixed-site monitoring station. SWMMC volunteers spent >7 hr/day outdoors and all had upper respiratory symptoms. A significant difference in the numbers of DNA-damaged nasal cells was observed between control and chronically exposed subjects, both in children (p
- Published
- 1996