Department of Stem Cells and Regenerative Medicine, College of Basic Medical Science, China Medical University, Shenyang, China.
Department of Anesthesiology, the First Affiliated Hospital of China Medical University, Shenyang, China.
Curr Pharm Des. 2020;26(29):3601-3607. doi: 10.2174/1381612826666200131141732.
Airway epithelium plays an essential role in maintaining the homeostasis and function of respiratory system as the first line of host defense. Of note, epithelial sodium channel (ENaC) is one of the victims of LPS-induced airway injury. Regarding the great promise held by mesenchymal stem cells (MSCs) for regenerative medicine in the field of airway injury and the limitations of cell-based MSCs therapy, we focused on the therapeutic effect of MSCs conditioned medium (MSCs-CM) on the ENaC activity in mouse tracheal epithelial cells.
Ussing chamber apparatus was applied to record the short-circuit currents in primary cultured mouse tracheal epithelial cells, which reflects the ENaC activity. Expressions of α and γ ENaC were measured at the protein and mRNA levels by western blot and real-time PCR, respectively. The expression of with-no-lysinekinase- 4 (WNK4) and ERK1/2 were measured at protein levels, and the relationship between WNK4 and ERK1/2 was determined by WNK4 knockdown.
MSCs-CM restored the LPS-impaired ENaC activity, as well as enhanced the mRNA and protein expressions of ENaC in primary cultured mouse tracheal epithelial cells. Meanwhile, WNK4 and ERK1/2, both negative-regulators of ENaC, were suppressed accordingly after the administration of MSCs-CM in LPS-induced airway injury. After WNK4 gene was knocked down by siRNA, the level of ERK1/2 phosphorylation decreased.
In light of the key role of ENaC in fluid reabsorption and the beneficial effects of MSCs-CM in the injury of airway epithelium, our results suggest that MSCs-CM is effective in alleviating LPS-induced ENaC dysfunction through WNK4-ERK1/2 pathway, which will provide a potent direction for the therapy of airway injury.
气道上皮在维持呼吸系统的内环境稳定和功能方面发挥着重要作用,是宿主防御的第一道防线。值得注意的是,上皮钠通道(ENaC)是 LPS 诱导的气道损伤的受害者之一。鉴于间充质干细胞(MSCs)在气道损伤领域的再生医学中有很大的应用前景,以及细胞治疗的局限性,我们专注于 MSCs 条件培养基(MSCs-CM)对小鼠气管上皮细胞 ENaC 活性的治疗作用。
应用 Ussing 室仪记录原代培养的小鼠气管上皮细胞的短路电流,反映 ENaC 活性。通过 Western blot 和实时 PCR 分别在蛋白和 mRNA 水平测量α和γ ENaC 的表达。通过 Western blot 测量无赖氨酸激酶-4(WNK4)和 ERK1/2 的表达,并通过 WNK4 敲低确定 WNK4 和 ERK1/2 之间的关系。
MSCs-CM 恢复了 LPS 损伤的 ENaC 活性,并增强了原代培养的小鼠气管上皮细胞中 ENaC 的 mRNA 和蛋白表达。同时,在 LPS 诱导的气道损伤中给予 MSCs-CM 后,WNK4 和 ERK1/2(ENaC 的负调节因子)的表达相应受到抑制。用 siRNA 敲低 WNK4 基因后,ERK1/2 磷酸化水平降低。
鉴于 ENaC 在液体重吸收中的关键作用以及 MSCs-CM 在气道上皮损伤中的有益作用,我们的结果表明,MSCs-CM 通过 WNK4-ERK1/2 途径有效缓解 LPS 诱导的 ENaC 功能障碍,为气道损伤的治疗提供了有力的方向。