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首页> 外文期刊>Cellular and molecular life sciences: CMLS >Deciphering the structure and function of FcεRI/mast cell axis in the regulation of allergy and anaphylaxis: A functional genomics paradigm
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Deciphering the structure and function of FcεRI/mast cell axis in the regulation of allergy and anaphylaxis: A functional genomics paradigm

机译:解释FcεRI/肥大细胞轴在过敏​​和过敏反应调控中的结构和功能:功能基因组学范式

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摘要

Allergy and anaphylaxis are inflammatory disorders caused by immune reactions mainly induced by immunoglobulin-E that signal through the high-affinity FcεRI receptor to release the inflammatory mediators from innate immune cells. The FcεRI/mast cell axis is potently involved in triggering various intracellular signaling molecules to induce calcium release from the internal stores, induction of transcription factors such as NF-kB, secretion of various cytokines as well as lipid mediators, and degranulation, resulting in the induction of allergy and anaphylaxis. In this review, we discuss various cellular and molecular mechanisms triggered through FcεRI/mast cell axis in allergy and anaphylaxis with a special emphasis on the functional genomics paradigm.
机译:过敏和过敏反应是主要由免疫球蛋白-E引起的免疫反应引起的炎性疾病,其通过高亲和力的FcεRI受体发出信号,从先天免疫细胞释放炎性介质。 FcεRI/肥大细胞轴有效地参与触发各种细胞内信号分子以诱导钙从内部储存区释放,诱导转录因子(例如NF-kB),各种细胞因子以及脂质介体的分泌以及脱粒,从而导致诱导过敏和过敏反应。在这篇综述中,我们讨论了通过FcεRI/肥大细胞轴在过敏​​和过敏反应中触发的各种细胞和分子机制,并特别着重于功能基因组学范式。

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