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首页> 外文期刊>American Journal of Physiology >Electrolyte transport properties in distal small airways from cystic fibrosis pigs with implications for host defense
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Electrolyte transport properties in distal small airways from cystic fibrosis pigs with implications for host defense

机译:来自囊性纤维化猪远端小气道的电解质传输性能,具有寄主防御的影响

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While pathological and clinical data suggest that small airways are involved in early cystic fibrosis (CF) lung disease development, little is known about how the lack of cystic fibrosis transmembrane conductance regulator (CFTR) function contributes to disease pathogenesis in these small airways. Large and small airway epithelia are exposed to different airflow velocities, temperatures, humidity, and CO_2 concentrations. The cellular composition of these two regions is different, and small airways lack submucosal glands. To better understand the ion transport properties and impacts of lack of CFTR function on host defense function in small airways, we adapted a novel protocol to isolate small airway epithelial cells from CF and non-CF pigs and established an organo-typic culture model. Compared with non-CF large airways, non-CF small airway epithelia cultures had higher Cl~- and bicarbonate (HCO_3~-) short-circuit currents and higher airway surface liquid (ASL) pH under 5% CO_2 conditions. CF small airway epithelia were characterized by minimal Cl~- and HCO_3~- transport and decreased ASL pH, and had impaired bacterial killing compared with non-CF small airways. In addition, CF small airway epithelia had a higher ASL viscosity than non-CF small airways. Thus, the activity of CFTR is higher in the small airways, where it plays a role in alkalinization of ASL, enhancement of antimicrobial activity, and lowering of mucus viscosity. These data provide insight to explain why the small airways are a susceptible site for the bacterial colonization.
机译:虽然病理和临床数据表明,小型气道参与早期囊性纤维化(CF)肺病发育,但如何了解如何缺乏囊性纤维化跨膜电导调节调节剂(CFTR)功能有助于这些小型气道中的疾病发病机制。大型和小气道上皮细胞暴露于不同的气流速度,温度,湿度和CO_2浓度。这两个地区的细胞组成是不同的,小型气道缺乏粘膜腺。为了更好地了解小型气道中宿主防御功能缺乏CFTR功能的离子传输性能和影响,我们适应了一种新的协议,将来自CF和非CF猪的小气道上皮细胞分离并建立有机典型培养模型。与非CF大气道相比,非CF小气道上皮培养物具有更高的Cl〜 - 和碳酸氢盐(HCO_3〜 - )短路电流和较高的呼吸道表面液(ASL)pH值为5%CO_2条件。 CF小气道上皮细胞的特征在于最小的Cl〜 - 和HCO_3〜 - 转运和降低的pH值,与非CF小气道相比,细菌杀死受损。此外,CF小气道上皮细胞比非CF小气道的粘度较高。因此,CFTR的活性在小型气道中较高,在那里它在ASL的碱化中发挥作用,增强抗菌活性,降低粘液粘度。这些数据提供了解解释为什么小型气道是细菌定植的易感位点。

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