2007The Journal of ImmunologyRequires access

Effect of IL-4 and IL-13 on the chemotaxis of mouse eosinophils (38.2)

Nicola Heller, William M. Gwinn, James J. Lee, Stephanie L. Constant, Achsah Keegan

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Abstract

Abstract Eosinophils are a major pathological component of the inflammatory cell infiltrate found in lungs as a result of allergic disease. They migrate into lungs in response to a variety of chemokines. The development and effector phases of the allergic response are dependent on the actions of interleukin (IL)-4 and IL-13 on a wide variety of cell types. However, how these two cytokines directly affect eosinophil signaling, function and chemotaxis is largely unknown. Using mouse eosinophils purified from IL-5 transgenic mice and a transwell migration assay, eotaxin-1 (30nM) induced eosinophil migration 6–11x over background. IL-4 alone was able to induce eosinophil migration 2x over background. More eosinophils migrated in response to eotaxin when IL-14 or IL-13 was also placed in the bottom chamber. IL-4 appeared to be more potent than IL-13. This effect was dependent upon cytokine concentration. Interestingly, when eosinophils were pretreated with IL-4 for 30 minutes prior to chemotaxis, migration to eotaxin-1 was enhanced 4-fold. However, pretreatment with IL-13 did not enhance chemotaxis to eotaxin-1. These data suggest that IL-4 and IL-13 have direct and rapid effects on the chemotactic function of eosinophils with some differences. We are investigating the mechanisms of these effects, as well as other signaling and functional responses of eosinophils to these cytokines. (AI38985 and HLT32007698)

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Abstract Eosinophils are a major pathological component of the inflammatory cell infiltrate found in lungs as a result of allergic disease. They migrate into lungs in response to a variety of chemokines. The development and effector phases of the allergic response are dependent on the actions of interleukin (IL)-4 and IL-13 on a wide variety of cell types. However, how these two cytokines directly affect eosinophil signaling, function and chemotaxis is largely unknown. Using mouse eosinophils purified from IL-5 transgenic mice and a transwell migration assay, eotaxin-1 (30nM) induced eosinophil migration 6–11x over background. IL-4 alone was able to induce eosinophil migration 2x over background. More eosinophils migrated in response to eotaxin when IL-14 or IL-13 was also placed in the bottom chamber. IL-4 appeared to be more potent than IL-13. This effect was dependent upon cytokine concentration. Interestingly, when eosinophils were pretreated with IL-4 for 30 minutes prior to chemotaxis, migration to eotaxin-1 was enhanced 4-fold. However, pretreatment with IL-13 did not enhance chemotaxis to eotaxin-1. These data suggest that IL-4 and IL-13 have direct and rapid effects on the chemotactic function of eosinophils with some differences. We are investigating the mechanisms of these effects, as well as other signaling and functional responses of eosinophils to these cytokines. (AI38985 and HLT32007698)

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Available abstract

Abstract Eosinophils are a major pathological component of the inflammatory cell infiltrate found in lungs as a result of allergic disease. They migrate into lungs in response to a variety of chemokines. The development and effector phases of the allergic response are dependent on the actions of interleukin (IL)-4 and IL-13 on a wide variety of cell types. However, how these two cytokines directly affect eosinophil signaling, function and chemotaxis is largely unknown. Using mouse eosinophils purified from IL-5 transgenic mice and a transwell migration assay, eotaxin-1 (30nM) induced eosinophil migration 6–11x over background. IL-4 alone was able to induce eosinophil migration 2x over background. More eosinophils migrated in response to eotaxin when IL-14 or IL-13 was also placed in the bottom chamber. IL-4 appeared to be more potent than IL-13. This effect was dependent upon cytokine concentration. Interestingly, when eosinophils were pretreated with IL-4 for 30 minutes prior to chemotaxis, migration to eotaxin-1 was enhanced 4-fold. However, pretreatment with IL-13 did not enhance chemotaxis to eotaxin-1. These data suggest that IL-4 and IL-13 have direct and rapid effects on the chemotactic function of eosinophils with some differences. We are investigating the mechanisms of these effects, as well as other signaling and functional responses of eosinophils to these cytokines. (AI38985 and HLT32007698)

Key concepts: Eotaxin, Chemotaxis, Eosinophil, Chemokine, Immunology, Cytokine, Interleukin 5, Allergic inflammation

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