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A dominant role for chemoattractant receptor-homologous molecule expressed on T helper type 2 (Th2) cells (CRTH2) in mediating chemotaxis of CRTH2+ CD4+ Th2 lymphocytes in response to mast cell supernatants

机译:T辅助2型(Th2)细胞(CRTH2)上表达的趋化性受体同源分子在介导肥大细胞上清液中介导CRTH2 + CD4 + Th2淋巴细胞的趋化性中的主导作用

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摘要

Human cultured mast cells, immunologically activated with immunoglobuin E (IgE)/anti-IgE, released a factor(s) that promoted chemotaxis of human CRTH2+ CD4+ T helper type 2 (Th2) lymphocytes. Mast cell supernatants collected at 20 min, 1 hr, 2 hr and 4 hr after activation caused a concentration-dependent increase in the migration of Th2 cells. The effect of submaximal dilutions of mast-cell-conditioned media was inhibited in a dose-dependent manner by ramatroban (IC50 = 96 nm), a dual antagonist of both the thromboxane-like prostanoid (TP) receptor and the chemoattractant receptor-homologous molecule expressed on Th2 cells (CRTH2), but not by the selective TP antagonist SQ29548, implicating CRTH2 in mediating the chemotactic response of these Th2 cells. The effect of mast-cell-conditioned media was mimicked by prostaglandin D2 (PGD2) and this eicosanoid was detected in the conditioned media from activated mast cells in concentrations sufficient to account for the activity of the mast cell supernatants. Treatment of the mast cells with the cyclo-oxygenase inhibitor diclofenac (10 μm) inhibited both the production of PGD2 and the CRTH2+ CD4+ Th2-stimulatory activity, while addition of exogenous PGD2 to conditioned media from diclofenac-treated mast cells restored the ability of the supernatants to promote chemotaxis of these Th2 cells. The degree of inhibition caused by diclofenac treatment of the mast cells was concordant with the degree of inhibition of chemotactic responses afforded by CRTH2 blockade. These data suggest that PGD2, or closely related metabolites of arachidonic acid, produced from mast cells may play a central role in the activation of CRTH2+ CD4+ Th2 lymphocytes through a CRTH2-dependent mechanism.
机译:人类培养的肥大细胞被免疫球蛋白E(IgE)/抗IgE免疫激活,释放出促进人类CRTH2 + CD4 + T辅助类型趋化性的因子2(Th2)淋巴细胞。激活后20分钟,1小时,2小时和4小时收集的肥大细胞上清液引起Th2细胞迁移的浓度依赖性增加。肥大细胞条件培养基的亚最大稀释液的作用受到剂量依赖性方式的抑制作用,即雷马替班(血栓烷样前列腺素(TP)受体和趋化因子受体同源分子的双重拮抗剂)(IC50 = 96 nm)在TH2细胞(CRTH2)上表达CRTH2,但不是由选择性TP拮抗剂SQ29548表达,暗示CRTH2介导这些Th2细胞的趋化反应。肥大细胞条件培养基的作用被前列腺素D2(PGD2)模仿,并且在条件培养基中从活化的肥大细胞中检测到的类花生酸含量足以说明肥大细胞上清液的活性。用环加氧酶抑制剂双氯芬酸(10μm)处理肥大细胞会抑制PGD2和CRTH2 + CD4 + Th2-刺激活性的产生,同时增加来自双氯芬酸处理的肥大细胞的条件培养基中的外源PGD2恢复了上清液促进这些Th2细胞趋化性的能力。双氯芬酸治疗肥大细胞所引起的抑制程度与CRTH2阻断所提供的趋化反应抑制程度一致。这些数据表明,肥大细胞产生的PGD2或花生四烯酸的密切相关代谢产物可能在CRTH2 + CD4 + Th2淋巴细胞通过CRTH2活化中起着核心作用。依赖机制。

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