摘要:ß-catenin和Notch信号在哮喘气道粘膜细胞分化增加中的作用

V. Kuchibhotla, Jane Read, I. Heijink, M. Nawijn, A. Reid, D. Knight
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引用次数: 1

摘要

体内β-catenin和Notch信号通路的激活增加导致气道粘膜细胞分化增加,这是哮喘的共同特征。这两种通路在气道上皮的正常发育和维持中发挥关键作用,但在哮喘中似乎失调。虽然增加的β-catenin激活肠上皮中的Notch信号,但尚不清楚这种情况是否发生在哮喘气道上皮中。我们假设在哮喘气道中,升高的β-catenin信号激活Notch导致粘液细胞分化增加。为了验证这一点,我们使用气液界面(ALI)培养模型模拟了哮喘(n=10)和健康气道(n=10)上皮,并比较了β-catenin、Notch的活性及其各自靶点的表达。在上皮细胞发育的不同阶段进行免疫组织化学(IHC)和qPCR分析;0、11、20和28天。免疫组化染色显示健康组和哮喘组的支气管上皮细胞(PBECs)在发育过程中具有不同水平的活性β-catenin和Notch1。β-catenin和Notch靶点mRNA表达量差异无统计学意义;健康组和哮喘组发育过程中Cyclin D1和Hes1的差异。此外,分化标志物FOXJ1、FOXA2和MUC5AC在健康组和哮喘组中无显著差异。因此,我们的数据显示哮喘和健康供体PBECs之间β-catenin和Notch信号没有显著差异。我们目前正在激活/抑制健康PBECs中的β-catenin和/或Notch通路,以更好地了解粘液细胞分化的机制。
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Late Breaking Abstract - Role of ß-catenin and Notch signalling in increased airway mucous cell differentiation in asthma
Increased activation of β-catenin and Notch signalling pathways in vivo leads to increased airway mucous cell differentiation, a common feature of asthma. Both these pathways play key roles in the normal development and maintenance of airway epithelium but appear to be dysregulated in asthma. While increased β-catenin activates Notch signalling in intestinal epithelium, it is not clear whether this occurs in asthmatic airway epithelium. We hypothesise that in the asthmatic airway, elevated β-catenin signalling activates Notch resulting in increased mucous cell differentiation. To test this, we modelled asthmatic (n=10) and healthy airway (n=10) epithelium using air-liquid interface (ALI) cultures and compared the activities of β-catenin, Notch, and the expression of their respective targets. Immunohistochemistry (IHC) and qPCR analyses were performed at different stages of epithelial development; 0, 11, 20, and 28 days. IHC staining revealed varying levels of active β-catenin and Notch1 in primary bronchial epithelial cells (PBECs) from healthy and asthma groups during development. There was no significant difference in mRNA expression of β-catenin and Notch targets; Cyclin D1 and Hes1 between healthy and asthma groups during development. Additionally, differentiation markers FOXJ1, FOXA2 and MUC5AC were not found to be significantly different in healthy and asthma groups. Therefore, our data shows that there was no significant difference in β-catenin and Notch signalling between PBECs from asthma and healthy donors. We are currently activating/inhibiting β-catenin and/or Notch pathways in healthy PBECs to get a better understanding of the mechanism of mucous cell differentiation.
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