Exogenous administration of heme oxygenase-1 by gene transfer provides protection against hyperoxia-induced lung injury
Open Access
- 1 April 1999
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 103 (7), 1047-1054
- https://doi.org/10.1172/jci5342
Abstract
Heme oxygenase-1 (HO-1) confers protection against a variety of oxidant-induced cell and tissue injury. In this study, we examined whether exogenous administration of HO-1 by gene transfer could also confer protection. We first demonstrated the feasibility of overexpressing HO-1 in the lung by gene transfer. A fragment of the rat HO-1 cDNA clone containing the entire coding region was cloned into plasmid pAC-CMVpLpA, and recombinant adenoviruses containing the rat HO-1 cDNA fragment Ad5-HO-1 were generated by homologous recombination. Intratracheal administration of Ad5-HO-1 resulted in a time-dependent increase in expression of HO-1 mRNA and protein in the rat lungs. Increased HO-1 protein expression was detected diffusely in the bronchiolar epithelium of rats receiving Ad5-HO-1, as assessed by immunohistochemical studies. We then examined whether ectopic expression of HO-1 could confer protection against hyperoxia-induced lung injury. Rats receiving Ad5-HO-1, but not AdV-βGal, a recombinant adenovirus expressing Escherichia coli β-galactosidase, before exposure to hyperoxia (>99% O2) exhibited marked reduction in lung injury, as assessed by volume of pleural effusion and histological analyses (significant reduction of edema, hemorrhage, and inflammation). In addition, rats receiving Ad5-HO-1 also exhibited increased survivability against hyperoxic stress when compared with rats receiving AdV-βGal. Expression of the antioxidant enzymes manganese superoxide dismutase (Mn-SOD) and copper-zinc superoxide dismutase (CuZn-SOD) and of L-ferritin and H-ferritin was not affected by Ad5-HO-1 administration. Furthermore, rats treated with Ad5-HO-1 exhibited attenuation of hyperoxia-induced neutrophil inflammation and apoptosis. Taken together, these data suggest the feasibility of high-level HO-1 expression in the rat lung by gene delivery. To our knowledge, we have demonstrated for the first time that HO-1 can provide protection against hyperoxia-induced lung injury in vivo by modulation of neutrophil inflammation and lung apoptosis.This publication has 39 references indexed in Scilit:
- Expression of heme oxygenase-1 can determine cardiac xenograft survivalNature Medicine, 1998
- Unscheduled apoptosis during acute inflammatory lung injuryCell Death & Differentiation, 1997
- THE HEME OXYGENASE SYSTEM:A Regulator of Second Messenger GasesAnnual Review of Pharmacology and Toxicology, 1997
- Characterization of 911: A New Helper Cell Line for the Titration and Propagation of Early Region 1-Deleted Adenoviral VectorsHuman Gene Therapy, 1996
- Heme oxygenase: A novel target for the modulation of inflammatory responseNature Medicine, 1996
- Heme oxygenase and oxidative stress. Evidence of involvement of bilirubin as physiological protector against oxidative damageBiochimica et Biophysica Acta (BBA) - Molecular Cell Research, 1994
- Carbon Monoxide: a Putative Neural MessengerScience, 1993
- Induction of heme oxygenase is a rapid, protective response in rhabdomyolysis in the rat.Journal of Clinical Investigation, 1992
- A simple technique for the rescue of early region I mutations into infectious human adenovirus type 5Virology, 1988
- Bilirubin Is an Antioxidant of Possible Physiological ImportanceScience, 1987