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Regulation of airway epithelial cell migration by the cystic fibrosis transmembrane conductance regulator.

机译:囊性纤维化跨膜电导调节剂调节气道上皮细胞迁移。

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摘要

The airway epithelium is a critical barrier between the noxious particles in inspired air and the lung tissue. Mucociliary clearance is an essential function of the airway epithelium to protect against infection and airway damage. By this process, inhaled particles are trapped in the mucus lining the airway and propelled out of the airways by ciliary movement. Transport of Cl- and Na+ ions controls fluid secretion in the airways and the depth and viscosity of the periciliary liquid layer essential for cilia movement. The ion channel cystic fibrosis transmembrane conductance regulator (CFTR), transports Cl- and HCO3 - in the airways and other tissues, and controls the depth of the periciliary liquid layer. Cystic fibrosis is a fatal genetic disease in which CFTR is dysfunctional. As a result, mucociliary clearance is impaired and airways become chronically infected with microorganisms. Microorganism colonization results in recurrent inflammation and cycles of damage to the epithelial barrier followed by wound repair, eventually resulting in airway remodeling and ultimately respiratory failure. It has recently been demonstrated that the loss of CFTR function impairs epithelial restitution in the absence of infection. This suggests the CFTR plays a direct role in airway wound repair.;To test this hypothesis, the role of CFTR in the initial step of epithelial wound repair---cell migration---was assessed. An impedance based assay was used to objectively measure cell migration rates of human bronchial epithelial cells. Inhibition of CFTR transport and silencing of CFTR protein expression were used to assess the effect of the loss of functional CFTR on cell migration rate. The migration rate of an airway epithelial cell line isolated from a cystic fibrosis patient was also compared to that of an airway epithelial cell line isolated from a healthy lung. A functional effect of CFTR on the process of lamellipodia protrusion during cell migration was also assessed morphometrically. Time lapse video images were also captured during wound closure of airway epithelial cells to assess how cell migration occurs. Additionally, the dependence of airway epithelial cell migration on Cl- and HCO3- transport was assessed using ion substitution and selective inhibitors of CFTR and other transporters of these ions. Further, the effect of changes in extracellular pH on migration rate was assessed.;The results of these studies revealed a role for CFTR transport of Cl - and HCO3- to regulate airway epithelial cell migration. These studies contribute to the basic understanding of the repair process of the airways following damage and may potentially be important for the design of new treatments to limit airway damage in cystic fibrosis.
机译:气道上皮是吸入的空气中有害颗粒与肺组织之间的关键屏障。粘膜纤毛清除是气道上皮防止感染和气道损伤的基本功能。通过该过程,吸入的颗粒被捕获在气道内衬的粘液中,并通过睫状运动被推出气道。 Cl-和Na +离子的运输控制了气道中的液体分泌以及纤毛运动必不可少的睫状液层的深度和粘度。离子通道囊性纤维化跨膜电导调节器(CFTR)在气道和其他组织中转运Cl-和HCO3-并控制周周液层的深度。囊性纤维化是一种致命的遗传病,其中CFTR功能异常。结果,粘膜纤毛清除受损并且气道被微生物长期感染。微生物定植会导致炎症反复发作,并破坏上皮屏障,然后进行伤口修复,最终导致气道重塑,最终导致呼吸衰竭。最近已经证明,在没有感染的情况下,CFTR功能的丧失会损害上皮恢复原状。这表明CFTR在气道伤口修复中起直接作用。为了检验该假设,评估了CFTR在上皮伤口修复的初始步骤中的作用-细胞迁移-。基于阻抗的分析用于客观测量人支气管上皮细胞的细胞迁移速率。 CFTR运输的抑制和CFTR蛋白表达的沉默被用来评估功能性CFTR丢失对细胞迁移速率的影响。还比较了从囊性纤维化患者中分离出的气道上皮细胞系与从健康肺中分离出的气道上皮细胞系的迁移速率。还通过形态计量学评估了CFTR对细胞迁移期间片状脂膜突出过程的功能作用。在气道上皮细胞伤口闭合期间还捕获了延时视频图像,以评估细胞迁移的发生方式。此外,使用离子取代和CFTR的选择性抑制剂以及这些离子的其他转运蛋白,评估了气道上皮细胞迁移对Cl-和HCO3-转运的依赖性。此外,评估了细胞外pH变化对迁移速率的影响。这些研究结果揭示了CFTR转运Cl-和HCO3-对调节气道上皮细胞迁移的作用。这些研究有助于对损伤后气道修复过程的基本理解,并且对于设计新的治疗方法以限制囊性纤维化中的气道损伤可能具有重要意义。

著录项

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Biology Cell.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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