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Macrophage impairment underlies airway occlusion in primary respiratory syncytial virus bronchiolitis

  • Jennifer L. Reed
  • , Yambasu A. Brewah
  • , Tracy Delaney
  • , Timothy Welliver
  • , Timothy Burwell
  • , Ebony Benjamin
  • , Ellen Kuta
  • , Alexander Kozhich
  • , Lu Ann McKinney
  • , Jo Ann Suzich
  • , Peter A. Kiener
  • , Luis Avendano
  • , Luis Velozo
  • , Alison Humbles
  • , Robert C. Welliver
  • , Anthony J. Coyle
  • United States Food and Drug Administration
  • MedImmune
  • University of Michigan, Ann Arbor
  • Universidad de Chile
  • Hospital Roberto del Río

Research output: Contribution to journalArticlepeer-review

76 Scopus citations

Abstract

Although respiratory syncytial virus (RSV) infection is the most important cause of bronchiolitis in infants, the pathogenesis of RSV disease is poorly described. We studied histopathologic changes in a panel of lung tissue specimens obtained from infants with fatal cases of primary RSV infection. In these tissues, airway occlusion with accumulations of infected, apoptotic cellular debris and serum protein was consistently observed. Similar observations were found after RSV infection in New Zealand black (NZB) mice, which have constitutive deficiencies in macrophage function, but not in BALB/c mice. A deficiency in the number of alveolar macrophages in NZB mice appears to be central to enhanced disease, because depletion of alveolar macrophages in BALB/c mice before RSV exposure resulted in airway occlusion. In mice with insufficient numbers of macrophages, RSV infection yielded an increased viral load and enhanced expression of type I interferon-associated genes at the height of disease. Together, our data suggest that innate, rather than adaptive, immune responses are critical determinants of the severity of RSV bronchiolitis.

Original languageEnglish
Pages (from-to)1783-1793
Number of pages11
JournalJournal of Infectious Diseases
Volume198
Issue number12
DOIs
StatePublished - Dec 15 2008

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