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转染 FcεRIα 的人肥大细胞系-1 (HMC-1) 细胞对 IgE/抗原介导的刺激敏感,表现出对细胞因子产生的选择性。

Human mast cell line-1 (HMC-1) cells transfected with FcεRIα are sensitive to IgE/antigen-mediated stimulation demonstrating selectivity towards cytokine production.

机构信息

Department of Pharmacology, University of Melbourne, Parkville, Victoria, Australia.

出版信息

Int Immunopharmacol. 2011 Aug;11(8):1002-11. doi: 10.1016/j.intimp.2011.02.017. Epub 2011 Feb 26.

Abstract

Mast cells play important roles in allergic and inflammatory diseases. Efforts to better understand human mast cell activation and develop novel inhibitory agents have been hampered by the lack of suitable human mast cell lines. The HMC-1 mast cell line has been extensively used, but lacks native expression of the human high-affinity IgE receptor FcεRI limiting its applications. We have stably transfected HMC-1 cells with the IgE-binding α-subunit of FcεRI to generate HMCα cells that are antigen-responsive. We have used flow cytometry, cell signaling assays, pharmacological pathway inhibitors and cell functional assays to characterize the properties of HMCα cells. IgE/antigen responses were compared with those of the adenosine receptor agonist NECA. Surface expression of FcεRI in HMCα cells was demonstrated and was enhanced by prior sensitization with IgE. Activation of HMCα cells with IgE/antigen did not produce degranulation, but did lead to release of numerous cytokines. Whilst there was no measurable increase of intracellular Ca(2+) or marked general changes in protein tyrosine phosphorylation, IgE/antigen stimulation of HMCα cells enhanced phosphorylation of p38(MAPK) and Erk. Inhibitors of these pathways, as well as the src kinase inhibitor PP2, attenuated IgE/antigen-induced cytokine release. In summary, we have generated and characterized HMCα cells and show that they are a useful and relevant human mast cell model to examine FcεRI stabilization, signaling and mediator release. We envisage that HMCα cells will have utility in understanding the importance of mast cells in human allergic disease and in assessing the activity of novel anti-allergic compounds.

摘要

肥大细胞在过敏和炎症性疾病中发挥重要作用。由于缺乏合适的人肥大细胞系,人们努力更好地理解人类肥大细胞激活并开发新的抑制性药物,但一直受到阻碍。HMC-1 肥大细胞系已被广泛应用,但缺乏天然表达的人高亲和力 IgE 受体 FcεRI,限制了其应用。我们通过稳定转染 HMC-1 细胞 IgE 结合的 FcεRIα 亚基,生成了对抗原有反应的 HMCα 细胞。我们使用流式细胞术、细胞信号转导测定、药理学途径抑制剂和细胞功能测定来描述 HMCα 细胞的特性。IgE/抗原反应与腺苷受体激动剂 NECA 的反应进行了比较。在 HMCα 细胞中,FcεRI 的表面表达被证明,并通过 IgE 预先致敏而增强。用 IgE/抗原激活 HMCα 细胞不会导致脱颗粒,但会导致许多细胞因子的释放。虽然细胞内 Ca2+没有可测量的增加或蛋白质酪氨酸磷酸化没有明显的一般变化,但 IgE/抗原刺激 HMCα 细胞增强了 p38(MAPK)和 Erk 的磷酸化。这些途径的抑制剂,以及 src 激酶抑制剂 PP2,均可减弱 IgE/抗原诱导的细胞因子释放。总之,我们已经生成并鉴定了 HMCα 细胞,表明它们是一种有用且相关的人类肥大细胞模型,可用于研究 FcεRI 稳定化、信号转导和介质释放。我们设想 HMCα 细胞将有助于理解肥大细胞在人类过敏疾病中的重要性,并评估新型抗过敏化合物的活性。

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