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Construction of an in vitro allergy reaction evaluation system using human leukemia cell lines

机译:人白血病细胞系体外过敏反应评价体系的构建

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Human leukemia cell lines, KU812 and KU812F, are immature prebasophillic cell lines and have a potential to differentiate into basophils. Hydrocortisone (HC) and sodium nitroprusside (SNP) can enhance the cell surface FcεRI expression of KU812 cells. However, the differentiated phenotypes of KU812 cells were unstable, hindering the application of KU812 cells to construct a practical invitro allergy reaction evaluation system. Here, we attempted to enhance the cell surface expression of FcεRI on hydrocortisone (HC)- or sodium nitroprusside (SNP)-treated KU812 cells by IgE. The cell surface FcεRI expression was observed in about 20, 20 and 26% of 1 μM HC-, 1 nM SNP- and 450 ng ml-1 IgE-treated KU812 cells, respectively. Whereas, the cell surface FcεRI expression was observed in about 54% of KU812 cells treated with both 450 ng ml-1 IgE and 1 μM HC for 8 days, and in about 33% of KU812 cells treated with both 450 ng ml-1 IgE and 1 nM SNP for 4 days. Ninety five% of the IgE/HC- or IgE/SNP-treated KU812 cells expressed CD 13 antigen, a cell surface marker of basophils. An electrophoretic mobility shift assay revealed that AP-1, NF-AT and NF-κB transcription factors were all activated in IgE/HC- and IgE/SNP-treated KU812 cells. Since the differentiated KU812F cells were more sensitive than KU812 cells for histamine release by sensitization with human IgE and anti-IgE antibody, a practical in vitro allergy reaction evaluation system for general use was constructed using IgE/HC-treated KU812F cells. The differentiated KU812F cells sensitized with an allergicpatient's IgE and mite allergen exhibited histamine release. The constructed in vitro allergy reaction evaluation system using differentiated human leukemia KU812F cells will be useful to study allergic reaction and to analyze physiologically functional substances in allergic disease.
机译:人白血病细胞系KU812和KU812F是不成熟的嗜碱前细胞系,具有分化为嗜碱细胞的潜力。氢化可的松(HC)和硝普钠(SNP)可以增强KU812细胞的细胞表面FcεRI表达。然而,KU812细胞的分化表型是不稳定的,阻碍了KU812细胞在构建实用的体外过敏反应评估系统中的应用。在这里,我们试图通过IgE增强氢化可的松(HC)-或硝普钠(SNP)处理的KU812细胞上FcεRI的细胞表面表达。在分别用1μMHC-,1 nM SNP-和450 ng ml-1 IgE处理的KU812细胞中分别观察到约20%,20%和26%的细胞表面FcεRI表达。相比之下,在同时使用450 ng ml-1 IgE和1μMHC处理8天的KU812细胞中,约有54%观察到细胞表面FcεRI表达,而在同时使用450 ng ml-1 IgE处理的KU812细胞中,约有33%观察到细胞表面FcεRI表达和1 nM SNP,持续4天。经IgE / HC或IgE / SNP处理的KU812细胞中有95%表达CD 13抗原,即嗜碱性粒细胞的细胞表面标志物。电泳迁移率变动分析显示,AP-1,NF-AT和NF-κB转录因子在IgE / HC和IgE / SNP处理的KU812细胞中均被激活。由于通过用人IgE和抗IgE抗体敏化,分化的KU812F细胞比KU812细胞对组胺释放更敏感,因此使用IgE / HC处理的KU812F细胞构建了通用的实用的体外过敏反应评价系统。过敏患者的IgE和螨过敏原致敏的分化KU812F细胞表现出组胺释放。使用分化的人类白血病KU812F细胞构建的体外过敏反应评估系统将对研究过敏反应和分析过敏性疾病中的生理功能物质非常有用。

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