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The Hierarchical Process of Differentiation of Long-Lived Antibody-Secreting Cells Is Dependent on Integrated Signals Derived from Antigen and IL-17A

机译:长寿命抗体分泌细胞分化的分层过程取决于抗原和IL-17A的整合信号。

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摘要

Switched CD19-positive memory B cells purified from mice with chronic immune response against Thalassophryne nattereri venom proteins were cultured with venom or cytokines. Our results confirm the existence of a hierarchic process of differentiation: activated memory B cells progressively acquire increasing levels of CD138 and decreasing levels of CD45R/B220 to finally arrive at ASC with B220neg phenotype, which are IgG1-secreting cells. Only Bmem from peritoneal cavity or bone marrow of VTn immunized mice presented the capacity to generate ASC functionally active. IL-17A or IL-21/IL-23/IL-33 improves the ability of venom to induce intracellular IgG of peritoneal derived-ASC. Cognate stimulation with venom and IL-17A is sufficient to down-regulate the expression of CD45R/B220. BAFF-R is up-regulated in splenic or medullar derived-ASC stimulated by venom, CpG or cytokines. Only splenic derived-ASC up-regulate Bcl-2 expression after CpG or the combination of IL-21/IL-23/IL-33 stimulation. Finally, the activation of ASC for IgG1 secretion is triggered by venom proteins in peritoneal cavity and by IL-17A in medullar niche. These results show the importance of the integration of signals downstream of BCR and IL17-A receptors in modulating ASC differentiation, focusing in the microenvironment niche of their generation.
机译:用毒液或细胞因子培养从具有慢性免疫反应的小鼠纯化的CD19阳性记忆B细胞,该免疫反应是针对Thalassophryne nattereri毒蛋白的。我们的结果证实存在分化的分层过程:活化的记忆B细胞逐渐获得CD138的增加水平和CD45R / B220的减少水平,最终达到具有B220 neg 表型的ASC,即IgG1-分泌细胞。 VTn免疫小鼠的腹膜腔或骨髓中只有Bmem具有产生ASC功能活性的能力。 IL-17A或IL-21 / IL-23 / IL-33可提高毒液诱导腹膜源性ASC的细胞内IgG的能力。用毒液和IL-17A进行同源刺激足以下调CD45R / B220的表达。在受毒液,CpG或细胞因子刺激的脾脏或髓样衍生的ASC中,BAFF-R上调。 CpG或IL-21 / IL-23 / IL-33刺激后,只有脾源性ASC上调Bcl-2表达。最后,腹膜腔中的毒蛋白和延髓利基中的IL-17A触发了IgG1分泌的ASC活化。这些结果表明BCR和IL17-A受体下游信号整合在调节ASC分化中的重要性,重点在于其产生的微环境环境。

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