The Leukotriene B4 Receptor (BLT1) Is Required for Effector CD8 super(+) T Cell-Mediated, Mast Cell-Dependent Airway Hyperresponsiveness
Studies in both humans and rodents have suggested that CD8 super(+) T cells contribute to the development of airway hyperresponsiveness (AHR) and that leukotriene B4 (LTB4) is involved in the chemotaxis of effector CD8 super(+) T cells (T sub(EFF)) to the lung by virtue of their expression of BLT1,...
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Veröffentlicht in: | Journal of Immunology 2006-03, Vol.176 (5), p.3157-3164 |
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Sprache: | eng |
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Zusammenfassung: | Studies in both humans and rodents have suggested that CD8 super(+) T cells contribute to the development of airway hyperresponsiveness (AHR) and that leukotriene B4 (LTB4) is involved in the chemotaxis of effector CD8 super(+) T cells (T sub(EFF)) to the lung by virtue of their expression of BLT1, the receptor for LTB4. In the present study, we used a mast cell-CD8-dependent model of AHR to further define the role of BLT1 in CD8 super(+) T cell-mediated AHR. C57BL/6 super(+/+) and CD8-deficient (CD8 super(-/-)) mice were passively sensitized with anti-OVA IgE and exposed to OVA via the airways. Following passive sensitization and allergen exposure, C57BL/6 super(+/+) mice developed altered airway function, whereas passively sensitized and allergen-exposed CD8 super(-/-) mice failed to do so. CD8 super(-/-) mice reconstituted with CD8 super(+) T sub(EFF) developed AHR in response to challenge. In contrast, CD8 super(-/-) mice reconstituted with BLT1-deficient effector CD8 super(+) T cells did not develop AHR. The induction of increased airway responsiveness following transfer of CD8 super(+) T sub(EFF) or in wild-type mice could be blocked by administration of an LTB4 receptor antagonist confirming the role of BLT1 in CD8 super(+) T cell-mediated AHR. Together, these data define the important role for mast cells and the LTB4-BLT1 pathway in the development of CD8 super(+) T cell-mediated allergic responses in the lung. |
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ISSN: | 0022-1767 1365-2567 |