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Der p 2 recombinant bacille Calmette-Guérin targets dendritic cells to inhibit allergic airway inflammation in a mouse model of asthma. | LitMetric

AI Article Synopsis

  • Researchers studied a recombinant bacille Calmette-Guérin (rBCG) vaccine expressing the Der p 2 allergen, which showed promise in reducing asthma symptoms by manipulating immune responses.
  • The study aimed to investigate the role of dendritic cells (DCs) in this process and involved transferring DCs from vaccinated mice to other mice to assess their impact on airway inflammation.
  • Results indicated that the transferred DCs significantly reduced asthmatic responses and promoted the development of regulatory T cells, suggesting that DCs are crucial for the rBCG's anti-asthma effects, especially through enhanced recruitment of certain DC subtypes.

Article Abstract

Background: Previous studies showed that a recombinant bacille Calmette-Guérin (rBCG) which expressed the Der p 2 of house dust mites (Der p 2 rBCG) could suppress asthmatic airway inflammation. There are two possible mechanisms: (1) Der p 2 rBCG elicits immune deviation from Th2 to Th1, and (2) Der p 2 rBCG induces antigen-specific regulatory T cells. However, the role of dendritic cell (DC) Der p 2 rBCG in this protective effect and in reprogramming T-cell commitment still needs to be studied.

Objectives: The aim of this study was to determine whether DCs play a central role in the Der p 2 rBCG-mediated inhibition of allergic airway inflammation.

Methods: DCs were collected from Der p 2 rBCG-immunized mice (Der p 2 rBCG-DCs) and adoptively transferred to Der p 2-sensitized mice. The effects of DCs on airway inflammation and immune regulation were analyzed.

Results: Adoptive transfer of DCs from Der p 2 rBCG-immunized mice suppressed asthmatic responses, including airway inflammation, mucin secretion and airway responsiveness. Der p 2 rBCG-DCs could effectively inhibit excessive Th2 immune responses and induced a subtype of CD4+CD25+Foxp3+ anti-specific regulatory T cells in this asthma model. Furthermore, Der p 2 rBCG immunization recruited more plasmacytoid DCs in abdominal draining lymph nodes.

Conclusions: These findings suggest that DCs played a key role in Der p 2 rBCG-induced immunoregulation. Compared with BCG, Der p 2 rBCG displayed a more potent inhibitory effect on asthma responses, which may be related to the increase in plasmacytoid DC recruitment. These results improve our understanding of the cellular basis of Der p 2 BCG-mediated inhibition of asthma.

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Source
http://dx.doi.org/10.1159/000340007DOI Listing

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