scholarly journals Mice Lacking the Cytochrome P450 1B1 Gene Are Less Susceptible to Hyperoxic Lung Injury Than Wild Type

2018 ◽  
Vol 165 (2) ◽  
pp. 462-474 ◽  
Author(s):  
Alex C Veith ◽  
Boura’a Bou Aram ◽  
Weiwu Jiang ◽  
Lihua Wang ◽  
Guodong Zhou ◽  
...  
2018 ◽  
Vol 32 (S1) ◽  
Author(s):  
Alex Veith ◽  
Weiwu Jiang ◽  
Grady Gastelum ◽  
Lihua Wang ◽  
Bhagavatula Moorthy

Antioxidants ◽  
2021 ◽  
Vol 10 (12) ◽  
pp. 1874
Author(s):  
Hye-Youn Cho ◽  
Laura Miller-DeGraff ◽  
Ligon A. Perrow ◽  
Wesley Gladwell ◽  
Vijayalakshmi Panduri ◽  
...  

NRF2 protects against oxidant-associated airway disorders via cytoprotective gene induction. To examine if NRF2 is an important determinant of respiratory syncytial virus (RSV) susceptibility after neonate lung injury, Nrf2-deficient (Nrf2−/−) and wild-type (Nrf2+/+) mice neonatally exposed to hyperoxia were infected with RSV. To investigate the prenatal antioxidant effect on neonatal oxidative lung injury, time-pregnant Nrf2−/−and Nrf2+/+mice were given an oral NRF2 agonist (sulforaphane) on embryonic days 11.5–17.5, and offspring were exposed to hyperoxia. Bronchoalveolar lavage and histopathologic analyses determined lung injury. cDNA microarray analyses were performed on placenta and neonatal lungs. RSV-induced pulmonary inflammation, injury, oxidation, and virus load were heightened in hyperoxia-exposed mice, and injury was more severe in hyperoxia-susceptible Nrf2−/− mice than in Nrf2+/+ mice. Maternal sulforaphane significantly alleviated hyperoxic lung injury in both neonate genotypes with more marked attenuation of severe neutrophilia, edema, oxidation, and alveolarization arrest in Nrf2−/− mice. Prenatal sulforaphane altered different genes with similar defensive functions (e.g., inhibition of cell/perinatal death and inflammation, potentiation of angiogenesis/organ development) in both strains, indicating compensatory transcriptome changes in Nrf2−/− mice. Conclusively, oxidative injury in underdeveloped lungs NRF2-dependently predisposed RSV susceptibility. In utero sulforaphane intervention suggested NRF2-dependent and -independent pulmonary protection mechanisms against early-life oxidant injury.


Author(s):  
Rachel Stading ◽  
Xanthi Couroucli ◽  
Krithika Lingappan ◽  
Bhagavatula Moorthy

1999 ◽  
Vol 277 (6) ◽  
pp. L1214-L1223 ◽  
Author(s):  
Funmei Yang ◽  
Jacqueline J. Coalson ◽  
Heather H. Bobb ◽  
Jacqueline D. Carter ◽  
Jameela Banu ◽  
...  

Oxidative stress plays a central role in the pathogenesis of acute and chronic pulmonary diseases. Safe sequestration of iron, which participates in the formation of the hydroxyl radical, is crucial in the lung's defense. We used a mouse line defective in the major iron transport protein transferrin to investigate the effect of aberrant iron metabolism on the lung's defense against oxidative injury. The tolerance to hyperoxic lung injury was greater in the hypotransferrinemic than in wild-type mice as documented by histopathology and biochemical indexes for lung damage. There was no increase in the levels of intracellular antioxidants, inflammatory cytokines, and heme oxygenase-1 in the hypotransferrinemic mouse lung compared with those in wild-type mice. However, there were elevated expressions of ferritin and lactoferrin in the lung of hypotransferrinemic mice, especially in the alveolar macrophages. Our results suggest that pulmonary lactoferrin and ferritin protect animals against oxidative stress, most likely via their capacity to sequester iron, and that alveolar macrophages are the key participants in iron detoxification in the lower respiratory tract.


2018 ◽  
Vol 339 ◽  
pp. 133-142 ◽  
Author(s):  
Krithika Lingappan ◽  
Paramahamsa Maturu ◽  
Yanhong Wei Liang ◽  
Weiwu Jiang ◽  
Lihua Wang ◽  
...  

Toxicology ◽  
2015 ◽  
Vol 331 ◽  
pp. 14-23 ◽  
Author(s):  
Krithika Lingappan ◽  
Weiwu Jiang ◽  
Lihua Wang ◽  
Xanthi I. Couroucli ◽  
Bhagavatula Moorthy

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