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首页> 外文期刊>The journal of asthma >Th2 cytokine-primed airway smooth muscle cells induce mast cell chemotaxis via secretion of ATP
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Th2 cytokine-primed airway smooth muscle cells induce mast cell chemotaxis via secretion of ATP

机译:Th2细胞因子引发的气道平滑肌细胞通过ATP的分泌诱导肥大细胞趋化

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Objective: Mast cell infiltration into airway smooth muscle (ASM) bundle is an important feature of asthma. Extracellular adenosine triphosphate (eATP) contributes to the initiation of airway inflammation. eATP induces mast cells migration by acting through purinergic receptors. CD39 is an ectonucleotidase that degrades ATP to ADP and AMP. Whether eATP participates in the migration of mast cell towards ASM cells is still unknown. Methods: Airway smooth muscle cells (ASMCs) were isolated from C57/BL6J mice sensitized and challenged with OVA. ASMCs were in vitro cultured and stimulated with IL-4 + IL-13 in the presence or absence of exogenous CD39 or CD39 inhibitor ARL67156. ATP level in the supernatants was measured with ATP content determination kit. CXCL10 concentration in the ASMCs supernatants was measured by ELISA, the mRNA expression of CXCL10 in ASMCs was determined with real-time PCR. Human mast cell line HMC-1 was cultured in Iscove's-Modified Dubecco's Medium. The expression of CXCR3 in HMC-1 cells was determined with flow cytometry and real-time PCR, respectively. HMC-1 migration rates were determined with transwell system. Results: In the supernatants of Th2 cytokine-stimulated ASMCs, ATP level was higher than that without stimulation. CD39 decreased, whereas ARL67156 increased ATP level in the supernatants. Both ATP and the supernatants of Th2 cytokine-stimulated ASMCs induced migration of HMC-1 cells. The surface and mRNA expression of CXCR3 in HMC-1 cells, and the mRNA expression and secretion of CXCL10 in ASMCs were increased after stimulation with ATP or Th2 cytokines. All these effects were partially inhibited by CD39. Conclusion: Our data suggested ASMCs in the asthma microenvironment promoted the migration of mast cells via secretion of ATP and the expression of CXCL10/CXCR3 axis. CD39 could reverse this effect and may be a new target for the treatment of asthma.
机译:目的:肥大细胞浸润到气道平滑肌(ASM)束中是哮喘的重要特征。细胞外三磷酸腺苷(eATP)有助于气道炎症的发生。 eATP通过嘌呤能受体起作用诱导肥大细胞迁移。 CD39是一种外切核苷酸酶,可将ATP降解为ADP和AMP。 eATP是否参与肥大细胞向ASM细胞的迁移仍是未知的。方法:从OVA致敏和攻击的C57 / BL6J小鼠中分离出气道平滑肌细胞(ASMC)。在有或没有外源CD39或CD39抑制剂ARL67156的情况下,体外培养ASMC并用IL-4 + IL-13刺激。用ATP含量测定试剂盒测量上清液中的ATP水平。 ELISA法检测ASMCs上清液中CXCL10的浓度,实时荧光定量PCR检测ASMCs中CXCL10的mRNA表达。人类肥大细胞系HMC-1在Iscove's-Modified Dubecco's培养基中培养。用流式细胞仪和实时荧光定量PCR分别检测HMC-1细胞中CXCR3的表达。用transwell系统测定HMC-1迁移率。结果:Th2细胞因子刺激的ASMCs上清液中的ATP水平高于无刺激的ATP水平。 CD39减少,而ARL67156增加上清液中的ATP水平。 ATP和Th2细胞因子刺激的ASMC上清液均诱导HMC-1细胞迁移。 ATP或Th2细胞因子刺激后,HMC-1细胞中CXCR3的表面和mRNA表达以及ASMC中CXCL10的mRNA表达和分泌增加。所有这些作用都被CD39部分抑制。结论:我们的数据表明哮喘微环境中的ASMC通过ATP的分泌和CXCL10 / CXCR3轴的表达促进肥大细胞迁移。 CD39可以逆转这种作用,可能成为治疗哮喘的新靶标。

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