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Selective depletion of Foxp3+ Treg during sensitization phase aggravates experimental allergic airway inflammation. | LitMetric

AI Article Synopsis

  • Recent studies show that regulatory T cells (Treg) are crucial for preventing excessive allergic responses and maintaining immune tolerance in the lungs.
  • In this research, Treg were selectively depleted in mice using diphtheria toxin injections to observe their role during the sensitization phase of allergic airway inflammation induced by an allergen (OVA).
  • Findings revealed that removing Treg during this early immune response phase significantly worsened allergic symptoms, indicating that Treg are vital for controlling immune reactions to allergens right from the beginning.

Article Abstract

Recent studies highlight the role of Treg in preventing unnecessary responses to allergens and maintaining functional immune tolerance in the lung. We investigated the role of Treg during the sensitization phase in a murine model of experimental allergic airway inflammation by selectively depleting the Treg population in vivo. DEpletion of REGulatory T cells (DEREG) mice were depleted of Treg by diphtheria toxin injection. Allergic airway inflammation was induced using OVA as a model allergen. Pathology was assessed by scoring for differential cellular infiltration in bronchoalveolar lavage, IgE and IgG1 levels in serum, cytokine secretion analysis of lymphocytes from lung draining lymph nodes and lung histology. Use of DEREG mice allowed us for the first time to track and specifically deplete both CD25(+) and CD25(-) Foxp3(+) Treg, and to analyze their significance in limiting pathology in allergic airway inflammation. We observed that depletion of Treg during the priming phase of an active immune response led to a dramatic exacerbation of allergic airway inflammation in mice, suggesting an essential role played by Treg in regulating immune responses against allergens as early as the sensitization phase via maintenance of functional tolerance.

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Source
http://dx.doi.org/10.1002/eji.200939972DOI Listing

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