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1.
Biol Neonate ; 86(3): 145-54, 2004.
Article in English | MEDLINE | ID: mdl-15205572

ABSTRACT

We investigated the effect of timing of early postnatal dexamethasone on survival of hyperoxia-exposed neonatal rats. Pups <24 h old were treated with a tapering course of dexamethasone or saline beginning either prior to exposure (day 0), or after 2, 4, or 6 days of > or =98% O2 (n=11-14) or air (n=8-11). Exposures were continued for 14 days. By day 14, day 0 pups had poor survival regardless of the exposure (14% in O2, 13% in air). Survival of pups treated with dexamethasone after 2, 4 and 6 days of O2 exposure was significantly higher at 14 days (50, 86 and 79%, respectively) compared to saline O2 controls (9%, p < 0.001 for each). Pulmonary biochemical analyses were conducted after exposure for 7 days in rat pups treated with dexamethasone or saline beginning after 4 days of exposure to air or O2 (n=11-12 for each group). While pups treated with dexamethasone showed greatly improved survival compared to O2 controls, there was no decrease in neutrophil influx into the lung as measured by lung myeloperoxidase and neutrophil counts in histologic specimens and lavage fluid. Catalase, glutathione peroxidase, total and manganese superoxide dismutase activities as well as manganese superoxide dismutase (MnSOD) mRNA expression were elevated in both O2 groups after 7 days compared to the air groups (p < 0.05) and MnSOD mRNA expression was elevated in the O2/dexamethasone group, but there were no differences between dexamethasone and saline groups in O2. Thus, this study indicates that the timing of dexamethasone administration is crucial. Mechanisms other than increases in antioxidant enzymes or decreases in lung neutrophils underlie the ability of dexamethasone to improve survival of these neonatal rats.


Subject(s)
Animals, Newborn , Dexamethasone/administration & dosage , Glucocorticoids/administration & dosage , Oxygen/toxicity , Animals , Bronchoalveolar Lavage Fluid/chemistry , Bronchoalveolar Lavage Fluid/cytology , Catalase/metabolism , Glutathione Peroxidase/metabolism , Leukocyte Count , Lung/enzymology , Lung/pathology , Lung Diseases/chemically induced , Lung Diseases/enzymology , Lung Diseases/pathology , Neutrophils , Oxygen/administration & dosage , Peroxidase/analysis , RNA, Messenger/analysis , Rats , Superoxide Dismutase/genetics , Superoxide Dismutase/metabolism , Time Factors
2.
Inflammation ; 26(5): 243-52, 2002 Oct.
Article in English | MEDLINE | ID: mdl-12238567

ABSTRACT

The mechanisms by which sublethal doses of endotoxin protect against hyperoxic lung injury are not completely understood. We hypothesized that endotoxin treatment would result in a decreased inflammatory response to hyperoxia and that this would be accompanied by activation of neutrophils (as evidenced by loss of L-selectin) in the peripheral circulation. Adult rats were injected with endotoxin 0.5 mg/kg prior to and 24 hr after onset of exposure to > or = 98% O2. After 56 hr of hyperoxia, pulmonary neutrophils were lower in the O2/endotoxin group compared to O2 controls as measured by myeloperoxidase in lung homogenates and neutrophil counts in bronchoalveolar lavage fluid. Circulating neutrophils were also significantly lower in the O2/endotoxin group compared to O2 controls at 56 hr. Expression of the neutrophil adhesion molecule, L-selectin, was lower at 4 and 24 hr in the endotoxin-treated rats compared to O2 controls. There were no differences at 48 hr. Expression of CD18 rose significantly in the O2/endotoxin group after 4 hr, but thereafter did not differ from O2 controls. In summary, endotoxin protection from O2 toxicity was associated with reduced neutrophils in the lung and a loss of L-selectin from peripheral blood neutrophils.


Subject(s)
Endotoxins/pharmacology , Hyperoxia/prevention & control , Lung/pathology , Neutrophils/drug effects , Animals , L-Selectin/analysis , Leukocyte Count , Male , Neutrophil Activation/drug effects , Neutrophil Infiltration/drug effects , Neutrophils/cytology , Neutrophils/metabolism , Oxygen/pharmacology , Protective Agents/pharmacology , Rats , Rats, Sprague-Dawley , Salmonella typhimurium/chemistry
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