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KATP和KvLQT1钾通道参与表皮生长因子刺激的肺泡上皮细胞修复过程。

Involvement of KATP and KvLQT1 K+ channels in EGF-stimulated alveolar epithelial cell repair processes.

作者信息

Trinh Nguyen Thu Ngan, Privé Anik, Kheir Lina, Bourret Jean-Charles, Hijazi Tiba, Amraei Mohammad Gholi, Noël Josette, Brochiero Emmanuelle

机构信息

Centre de Recherche, Centre Hospitalier de l'Université de Montréal-Hôtel-DieuMontréal, Québec, Canada H2W 1T7.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2007 Oct;293(4):L870-82. doi: 10.1152/ajplung.00362.2006. Epub 2007 Jul 13.

Abstract

Several respiratory diseases are associated with extensive damage of lung epithelia, and the regulatory mechanisms involved in their regeneration are not clearly defined. Growth factors released by epithelial cells or fibroblasts from injured lungs are important regulators of alveolar repair by stimulating cell motility, proliferation, and differentiation. In addition, K(+) channels regulate cell proliferation/migration and are coupled with growth factor signaling in several tissues. We decided to explore the hypothesis, never investigated before, that K(+) could play a prominent role in alveolar repair. We employed a model of mechanical wounding of rat alveolar type II epithelia, in primary culture, to study their response to injury. Wound healing was suppressed by one-half upon epidermal growth factor (EGF) titration with EGF-antibody (Ab) or erbB1/erbB2 tyrosine-kinase inhibition with AG-1478/AG-825. The addition of exogenous EGF slightly stimulated the alveolar wound healing and enhanced, by up to five times, alveolar cell migration measured in a Boyden-type chamber. Conditioned medium collected from injured alveolar monolayers also stimulated cell migration; this effect was abolished in the presence of EGF-Ab. The impact of K(+) channel modulators was examined in basal and EGF-stimulated conditions. Wound healing was stimulated by pinacidil, an ATP-dependent K(+) channel (K(ATP)) activator, which also increased cell migration, by twofold, in basal conditions and potentiated the stimulatory effect of EGF. K(ATP) or KvLQT1 inhibitors (glibenclamide, clofilium) reduced EGF-stimulated wound healing, cell migration, and proliferation. Finally, EGF stimulated K(ATP) and KvLQT1 currents and channel expression. In summary, stimulation of K(+) channels through autocrine activation of EGF receptors could play a crucial role in lung epithelia repair processes.

摘要

几种呼吸系统疾病与肺上皮的广泛损伤相关,而其再生过程中涉及的调节机制尚不清楚。受损肺组织中的上皮细胞或成纤维细胞释放的生长因子,通过刺激细胞运动、增殖和分化,是肺泡修复的重要调节因子。此外,钾离子通道调节细胞增殖/迁移,并在多个组织中与生长因子信号传导相关联。我们决定探索一个此前从未研究过的假说,即钾离子在肺泡修复中可能发挥重要作用。我们采用原代培养的大鼠肺泡II型上皮细胞机械损伤模型,来研究它们对损伤的反应。用表皮生长因子(EGF)抗体(Ab)滴定EGF或用AG-1478/AG-825抑制erbB1/erbB2酪氨酸激酶,可使伤口愈合抑制一半。添加外源性EGF可轻微刺激肺泡伤口愈合,并使在博伊登室中测量的肺泡细胞迁移增强达五倍。从受损肺泡单层收集的条件培养基也能刺激细胞迁移;在存在EGF-Ab的情况下,这种效应被消除。在基础条件和EGF刺激条件下,研究了钾离子通道调节剂的影响。吡那地尔是一种ATP依赖性钾离子通道(KATP)激活剂,可刺激伤口愈合,在基础条件下还可使细胞迁移增加两倍,并增强EGF的刺激作用。KATP或KvLQT1抑制剂(格列本脲、氯非铵)可降低EGF刺激的伤口愈合、细胞迁移和增殖。最后,EGF刺激KATP和KvLQT1电流及通道表达。总之,通过EGF受体的自分泌激活来刺激钾离子通道,可能在肺上皮修复过程中起关键作用。

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