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首页> 外文期刊>The Journal of Allergy and Clinical Immunology >Control of IgE and selective T(H)1 and T(H)2 cytokines by PG102 isolated from Actinidia arguta.
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Control of IgE and selective T(H)1 and T(H)2 cytokines by PG102 isolated from Actinidia arguta.

机译:从猕猴桃分离PG102控制IgE和选择性T(H)1和T(H)2细胞因子。

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BACKGROUND: Various allergic responses are thought to result from the unbalanced development of T(H)1 and T(H)2 pathways and, subsequently, the overproduction of IgE. Therefore the modulation of T(H)1 and T(H)2 responses is a rational strategy for the treatment of allergic diseases. OBJECTIVE: The present study was performed to investigate the immune-modulating activities of PG102 preparations from Actinidia arguta in ovalbumin-sensitized murine models. METHODS: Two preparations from A arguta, PG102T and PG102E, were chosen for animal experimentation on the basis of their ability to regulate the production of IgE in U266B1 cells. The changes in splenic levels of cytokines and plasma levels of immunoglobulin isotypes were examined. The effects of PG102 on subcellular composition (CD4(+)IL-4(+) or CD19(+)IgE(+) cells), IgE production in B cells, and selective transcription factors were analyzed. RESULTS: Oral administration of PG102T and PG102E significantly decreased the level of selective T(H)2 cytokines, whereas it increased the level of T(H)1 cytokines. The differential effects of PG102T and PG102E on T(H)1 and T(H)2 cytokines were accompanied by a decrease in the plasma levels of IgE and IgG1 and by an increase in the plasma level of IgG2a. The percentages of both IL-4-producing T cells and IgE-producing B cells were decreased. The concentration of IgE produced within B cells also appeared to be reduced. Finally, PG102T and PG102E downregulated the level of GATA-binding protein 3, while inducing that of T-box transcription factor and nuclear factor of activated T cells c2. CONCLUSION: PG102T and PG102E have great potential as orally active immune modulators for the therapy of various allergic diseases.
机译:背景:各种过敏反应被认为是由T(H)1和T(H)2途径的不平衡发展,以及随后IgE的过量生产引起的。因此,调节T(H)1和T(H)2反应是治疗过敏性疾病的合理策略。目的:本研究旨在探讨卵白蛋白致敏小鼠模型中猕猴桃PG102制剂的免疫调节活性。方法:根据A arguta调节U266B1细胞中IgE产生的能力,选择两种制备物PG102T和PG102E进行动物实验。检查了脾脏细胞因子水平的变化和免疫球蛋白同种型的血浆水平。分析了PG102对亚细胞组成(CD4(+)IL-4(+)或CD19(+)IgE(+)细胞),B细胞中IgE产生以及选择性转录因子的影响。结果:口服PG102T和PG102E显着降低了选择性T(H)2细胞因子的水平,而增加了T(H)1细胞因子的水平。 PG102T和PG102E对T(H)1和T(H)2细胞因子的差异作用伴随着IgE和IgG1血浆水平的降低以及IgG2a血浆水平的增加。产生IL-4的T细胞和产生IgE的B细胞的百分比均降低。 B细胞内产生的IgE的浓度似乎也降低了。最后,PG102T和PG102E下调了GATA结合蛋白3的水平,同时诱导了活化T细胞c2的T-box转录因子和核因子。结论:PG102T和PG102E作为口服活性免疫调节剂,具有治疗各种变态反应性疾病的巨大潜力。

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