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囊性纤维化基因突变可减轻酸灌注小鼠十二指肠上皮细胞的酸化及损伤。

Cystic fibrosis gene mutation reduces epithelial cell acidification and injury in acid-perfused mouse duodenum.

作者信息

Hirokawa Masahiko, Takeuchi Tetsu, Chu Sahaoyou, Akiba Yasutada, Wu Vincent, Guth Paul H, Engel Eli, Montrose Marshall H, Kaunitz Jonathan D

机构信息

Greater Los Angeles Veterans Affairs Healthcare System, California 90073, USA.

出版信息

Gastroenterology. 2004 Oct;127(4):1162-73. doi: 10.1053/j.gastro.2004.06.057.

Abstract

BACKGROUND & AIMS: Dysfunction of the cystic fibrosis transmembrane regulator (CFTR) is associated with diminished duodenal HCO3- secretion, despite a reported lack of clinical duodenal ulceration in affected subjects. We hypothesized that duodenal epithelial cells expressing a mutant CFTR have enhanced resistance to acid-induced injury. To test this hypothesis, we measured duodenal epithelial cell intracellular pH (pHi), injury, and acid back-diffusion in response to a luminal acid challenge in transgenic mice.

METHODS

A murine colony was established for the CFTR DeltaF508 (DeltaF) mutation. Epithelial cell pH i was measured by microscopy with a trapped, fluorescent pH-sensitive dye in living C57BL/6 and DeltaF/DeltaF, +/DeltaF, and +/+ mice. In vivo confocal microscopy confirmed the localization of the dye in the cytoplasm of the epithelial cells. Epithelial injury was measured fluorometrically using propidium iodide. Duodenal epithelial bicarbonate secretion and proton permeability were measured by back-titration. Bicarbonate secretion and acid back-diffusion were measured in a perfused duodenal loop.

RESULTS

Basal and post-acid exposure bicarbonate secretion were reduced in DeltaF/DeltaF mice, although acid back-diffusion was similar to controls. Epithelial pHi of CFTR DeltaF/DeltaF mice during luminal acid exposure was significantly higher than pHi in +/DeltaF, +/+, or C57BL/6 mice. Acid-related epithelial injury was markedly less in DeltaF/DeltaF mice in comparison with the other groups.

CONCLUSIONS

Increased cellular buffering power of the epithelial cells of DeltaF/DeltaF mice likely protects against acidification and injury during acid exposure. We speculate that this protective mechanism partially underlies the perceived relative lack of peptic ulceration in patients affected by cystic fibrosis.

摘要

背景与目的

尽管有报道称受影响的个体缺乏临床十二指肠溃疡,但囊性纤维化跨膜传导调节因子(CFTR)功能障碍与十二指肠HCO3-分泌减少有关。我们假设表达突变型CFTR的十二指肠上皮细胞对酸诱导的损伤具有增强的抵抗力。为了验证这一假设,我们在转基因小鼠中测量了管腔酸刺激后十二指肠上皮细胞的细胞内pH(pHi)、损伤情况以及酸反向扩散。

方法

建立了携带CFTR DeltaF508(DeltaF)突变的小鼠群体。通过显微镜使用捕获的荧光pH敏感染料在活体C57BL/6、DeltaF/DeltaF、+/DeltaF和+/+小鼠中测量上皮细胞的pHi。体内共聚焦显微镜检查证实了染料在上皮细胞质中的定位。使用碘化丙啶通过荧光法测量上皮损伤。通过回滴法测量十二指肠上皮碳酸氢盐分泌和质子通透性。在灌注的十二指肠环中测量碳酸氢盐分泌和酸反向扩散。

结果

DeltaF/DeltaF小鼠的基础和酸暴露后碳酸氢盐分泌减少,尽管酸反向扩散与对照组相似。在管腔酸暴露期间,CFTR DeltaF/DeltaF小鼠的上皮pHi显著高于+/DeltaF、+/+或C57BL/6小鼠。与其他组相比,DeltaF/DeltaF小鼠中与酸相关的上皮损伤明显较少。

结论

DeltaF/DeltaF小鼠上皮细胞增加的细胞缓冲能力可能在酸暴露期间防止酸化和损伤。我们推测这种保护机制部分解释了囊性纤维化患者中相对缺乏消化性溃疡的现象。

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