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Application of Genetically Encoded Fluorescent Nitric Oxide (NO•) Probes, the geNOps, for Real-time Imaging of NO• Signals in Single Cells
Published on: March 16, 2017
DMBT1 promotes basal and meconium-induced nitric oxide production in human lung epithelial cells in vitro
Hanna Müller1,2, Christel Weiss3, Marcus Renner4
1Department of Pediatrics I, Neonatology, University Hospital Essen, University Duisburg-Essen, Hufelandstr. 55, 45147, Essen, Germany. Hanna.Mueller@uk-essen.de.
Abstract:
Meconium aspiration syndrome (MAS) is characterized by surfactant inactivation and inflammation. As lung epithelial cells up-regulate nitric oxide (NO) in response to inflammation, the NO production following meconium exposition was examined in relation to expression of Deleted in Malignant Brain Tumors 1 (DMBT1), a protein with functions in innate immunity and inflammatory regulation. Here, DMBT1 expression was analyzed by immunohistochemistry in postmortem lung sections from patients with MAS. The lung epithelial cell line A549, stably transfected with a DMBT1 (DMBT1+ cells) expression plasmid or with an empty expression plasmid (DMBT1- cells), was exposed to meconium. NO was determined in dependence of aminoguanidine (inducible NO synthase inhibitor), steroids and lipopolysaccharide (LPS). DMBT1 is highly expressed in lungs with MAS. In the absence of meconium, DMBT1+ cells showed a higher NO production than the DMBT1- cells (p = 0.0090). Meconium led in DMBT1- and DMBT1+ cells to elevated NO levels (p < 0.0001), but with a higher NO level in DMBT1+ cells (p < 0.0001). Aminoguanidine, an iNOS inhibitor, reduced the higher NO production in DMBT1+ cells (p = 0.0476), but NO levels remained above NO production from DMBT1- cells (p = 0.0289). Dexamethasone diminished NO production in DMBT1+ cells after meconium exposition (p = 0.0076). Combined addition of LPS and meconium significantly increased NO production in both cell types (p < 0.0001). In comparison to exposure with only meconium, the combined addition of LPS and meconium to the cells increased NO levels in both DMBT1- cells (p = 0.0030) and DMBT1+ cells (p = 0.0028). In conclusion, basal and meconium-induced NO production in lung epithelial cells is positively regulated by DMBT1.
Insights
Deleted in Malignant Brain Tumors 1 (DMBT1) enhances nitric oxide (NO) production in lung epithelial cells during meconium aspiration syndrome (MAS). This suggests DMBT1 plays a key role in regulating inflammation and NO levels in MAS.
Area of Science:
- Pulmonary Medicine
- Immunology
- Molecular Biology
Background:
- Meconium aspiration syndrome (MAS) involves lung inflammation and surfactant inactivation.
- Lung epithelial cells increase nitric oxide (NO) production in response to inflammation.
- Deleted in Malignant Brain Tumors 1 (DMBT1) is implicated in innate immunity and inflammation regulation.
Purpose of the Study:
- To investigate the role of DMBT1 in regulating NO production in lung epithelial cells exposed to meconium.
- To analyze DMBT1 expression in lung tissue from patients with MAS.
Main Methods:
- Immunohistochemistry to assess DMBT1 expression in postmortem lung sections from MAS patients.
- In vitro study using A549 lung epithelial cells stably transfected for DMBT1 expression (DMBT1+ and DMBT1- cells).
- Exposure of cell lines to meconium, with measurements of NO production influenced by iNOS inhibitors, steroids, and LPS.
Main Results:
- DMBT1 was highly expressed in lungs affected by MAS.
- DMBT1+ cells exhibited higher basal and meconium-induced NO production compared to DMBT1- cells.
- Inhibitors (aminoguanidine, dexamethasone) and LPS modulated NO levels, confirming DMBT1's regulatory role.
Conclusions:
- Basal and meconium-induced NO production in lung epithelial cells is positively regulated by DMBT1.
- DMBT1 is a significant factor in the inflammatory response and NO signaling in MAS.

