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Nociceptor neurons promote IgE class switch in B cells
Shreya Mathur, Jo-Chiao Wang, Corey R. Seehus, Florence Poirier, Theo Crosson, Yu-Chen Hsieh, Benjamin Doyle, Seungkyu Lee, Clifford J. Woolf, Simmie L. Foster, Sebastien Talbot
Shreya Mathur, Jo-Chiao Wang, Corey R. Seehus, Florence Poirier, Theo Crosson, Yu-Chen Hsieh, Benjamin Doyle, Seungkyu Lee, Clifford J. Woolf, Simmie L. Foster, Sebastien Talbot
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Research Article Inflammation Neuroscience

Nociceptor neurons promote IgE class switch in B cells

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Abstract

Nociceptors, the high-threshold primary sensory neurons that trigger pain, interact with immune cells in the periphery to modulate innate immune responses. Whether they also participate in adaptive and humoral immunity is, however, not known. In this study, we probed if nociceptors have a role in distinct airway and skin models of allergic inflammation. In both models, the genetic ablation and pharmacological silencing of nociceptors substantially reduced inflammatory cell infiltration to the affected tissue. Moreover, we also found a profound and specific deficit in IgE production in these models of allergic inflammation. Mechanistically, we discovered that the nociceptor-released neuropeptide substance P helped trigger the formation of antibody-secreting cells and their release of IgE. Our findings suggest that nociceptors, in addition to their contributions to innate immunity, play a key role in modulating the adaptive immune response, particularly B cell antibody class switching to IgE.

Authors

Shreya Mathur, Jo-Chiao Wang, Corey R. Seehus, Florence Poirier, Theo Crosson, Yu-Chen Hsieh, Benjamin Doyle, Seungkyu Lee, Clifford J. Woolf, Simmie L. Foster, Sebastien Talbot

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Figure 1

Nociceptor neurons contribute to allergic airway inflammation.

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Nociceptor neurons contribute to allergic airway inflammation.
(A) Aller...
(A) Allergic airway inflammation was induced by sensitizing littermate control (TRPV1wt/wt DTAfl/wt) and genetically ablated (TRPV1Cre/wt DTAfl/wt) mice to intranasal HDM (20 μg) daily on day 1 to day 5, followed by challenge to HDM from day 8 to day 10. Animals were sacrificed on day 11. Compared with vehicle-exposed mice, HDM challenge enhanced bronchoalveolar lavage fluid (BALF) numbers of (B) CD45+ cells, (C) alveolar macrophages, (D) eosinophils, (E) neutrophils, (F) monocytes, and (G) T cells. Genetic ablation of airway nociceptor neurons decreased HDM-mediated inflammation but retained recruitment of alveolar macrophages. Graphs show range, median, and “+” as mean. P values determined using 1-way ANOVA and Tukey’s multiple comparisons test. * denotes comparison with vehicle-exposed, nociceptor-intact mice and + comparison with HDM-exposed, nociceptor-intact mice. P < 0.05 is indicated by *; P < 0.01 is indicated by ** or ++; P < 0.001 is indicated by ***; P < 0.0001 is indicated by **** or ++++. Representative experiment is shown; n = 4–6/group. Experiments were replicated at least 3 independent times.

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