4.7 Article

New Laboratory Protocol to Determine the Oxidative Stress Profile of Human Nasal Epithelial Cells Using Flow Cytometry

期刊

JOURNAL OF CLINICAL MEDICINE
卷 10, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/jcm10061172

关键词

flow cytometry; rare respiratory diseases; nasal epithelium; oxidative stress; reactive oxygen species

资金

  1. Spanish Paediatric Pneumology Society 2014
  2. Valencia Pneumology Society 2015
  3. Generalitat Valenciana
  4. European Regional Development funds (OP ERDF of Comunitat Valenciana 2014-2020)
  5. GVA grant [ACIF/2019/231]

向作者/读者索取更多资源

This study established a new method based on flow cytometry to evaluate the oxidative profile of human nasal epithelial cells, which could be useful in research on respiratory diseases. The method allows for the measurement of a comprehensive set of oxidative stress parameters using small amounts of sample and a non-invasive sampling technique.
Several studies have shown the importance of oxidative stress (OS) in respiratory disease pathogenesis. It has been reported that the nasal epithelium may act as a surrogate for the bronchial epithelium in several respiratory diseases involving OS. However, the sample yields obtained from nasal biopsies are modest, limiting the number of parameters that can be determined. Flow cytometry has been widely used to evaluate cellular OS profiles. It has the advantage that analyses can be performed using a small amount of sample. Therefore, we aimed to set up a new method based on flow cytometry to assess the oxidative profile of human nasal epithelial cells which could be used in research on respiratory diseases. Levels of total nitric oxide, superoxide anion, peroxynitrite, and intracellular peroxides were measured. Reduced thiol levels, such as antioxidant-reduced glutathione and oxidative damaged lipids and proteins, were also analysed. The intracellular calcium levels, plasma membrane potential, apoptosis, and percentage of live cells were also studied. Finally, a strategy to evaluate the mitochondrial function, including mitochondrial hydrogen peroxide, superoxide anion, mitochondrial mass, and membrane potential, was set up. Using small amounts of sample and a non-invasive sampling technique, the described method enables the measurement of a comprehensive set of OS parameters in nasal epithelial cells, which could be useful in research on respiratory diseases.

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