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  1. M1-like, but not M0- or M2-like, macrophages, reduce RSV infection of primary bronchial epithelial cells in a media-dependent fashion.
  2. Multiciliated cell basal bodies align in stereotypical patterns coordinated by the apical cytoskeleton
  3. Rhinovirus C targets ciliated airway epithelial cells.
  4. Regenerative potential of human airway stem cells in lung epithelial engineering
  5. Human Bronchial Epithelial Cells Induce CD141/CD123/DC-SIGN/FLT3Monocytes That Promote Allogeneic Th17 Differentiation.
  6. Human Parvovirus Infection of Human Airway Epithelia Induces Pyroptotic Cell Death by Inhibiting Apoptosis.
  7. Replication of an autonomous human parvovirus in non-dividing human airway epithelium is facilitated through the DNA damage and repair pathways
  8. Broadly Reactive Anti-Respiratory Syncytial Virus G Antibodies from Exposed Individuals Effectively Inhibit Infection of Primary Airway Epithelial Cells.
  9. Evaluating the Toxicity of Cigarette Whole Smoke Solutions in an Air-Liquid-Interface Human In Vitro Airway Tissue Model.
  10. Transducing Airway Basal Cells with a Helper-Dependent Adenoviral Vector for Lung Gene Therapy.
  11. Neutralization of both IL-1α/IL-1β plays a major role in suppressing combined cigarette smoke/virus-induced pulmonary inflammation in mice.
  12. A triple co-culture model of the human respiratory tract to study immune-modulatory effects of liposomes and virosomes
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