Viral bronchiolitis in human infants has been associated with persistent airway abnormalities, but not proven as a cause. Previously we observed some adult rats had airway obstruction and hyperresponsiveness following bronchiolitis at an early age. The purpose of this study was to determine, via serial measurements of lung mechanics, whether the postbronchiolitis airway obstruction was episodic or continuous, and to determine the magnitude and duration of glucocorticoid effects. Rats were either virus- (n = 14) or sham-inoculated (n = 8) at 3 wks of age. Lung mechanics were measured 6 times in each rat at postinoculation Weeks 11-18. Half the rats in each group were treated with dexamethasone for 3 d at Week 15. The virus group had higher lung resistance (p = 0.03) and lower dynamic compliance (p = 0.005) than control rats, with airway obstruction occurring in an episodic pattern. Dexamethasone treatment had a transient effect in postbronchiolitis rats; lung resistance normalized in Week 15 (p = 0.006), then returned to pretreatment levels by Weeks 16-18. We conclude that viral bronchiolitis in rats can result in a chronic syndrome of intermittent, reversible airway obstruction which has multiple parallels with human asthma over a prolonged time period.
After viral bronchiolitis at an early age, Brown Norway (BN) rats develop chronic airway dysfunction consisting of inflammation, remodeling, episodic reversible obstruction, and hyperresponsiveness. We hypothesized that supplementation of interferon gamma (IFN-gamma) during viral illness would alter the inflammatory response and attenuate the postviral sequelae. Weanling rats were treated daily with aerosolized interferon gamma (IFN-gamma), from 2 d prior through 7 d after inoculation, and compared with saline-treated infected rats and with noninfected control rats. The IFN-gamma treatment had no significant effect on viral titers, growth retardation, or total bronchoalveolar leukocytes, but there was a slight decrease in lung interleukin-4 (IL-4) mRNA (p = 0.015) during the first week. Despite having minimal effects on the acute illness, the IFN-gamma had marked effects on postviral sequelae, the IFN-gamma group having less bronchiolar inflammation (p = 0.025) and fibrosis (p = 0.01), and lacking abnormalities in pulmonary resistance (p = 0.028) and dynamic compliance (p = 0.006) compared with the untreated postviral group. We conclude that IFN-gamma modulated the inflammatory response to viral illness, such that acute airway injury did not evolve into chronic airway dysfunction. If similar processes contribute to the development of human asthma, it may be possible to interrupt the progression of airway dysfunction with an early immunomodulatory intervention.
Significance
Changes in the expression of proteins are often associated with oncogenesis, and are frequently used as cancer biomarkers. Changes in the subcellular location of proteins have been less frequently investigated. In this paper, we describe a robust pipeline for identifying those proteins whose subcellular location undergoes statistically significant changes in cancers of four tissues, and also for identifying biochemical pathways that are enriched for proteins that translocate. Future investigation of these proteins and pathways may provide new insight into oncogenesis. Further, the analysis pipeline is expected to be useful for assessing disease type and severity in a clinical setting.
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