甘草酸二钾对肺成纤维细胞的抗组胺作用及其治疗肺纤维化的机制。

Wenwen Huang, Xiaoying Zhou
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引用次数: 2

摘要

目的:探讨甘草酸二钾盐甘草酸二钾(DG)对组胺介导的肺成纤维细胞活化、分化和增殖的抗组胺作用;探讨肺纤维化(PF)治疗的潜在机制。方法:提取大鼠原代肺成纤维细胞,建立细胞模型;组胺、DG和氯雷他定(一种组胺受体拮抗剂)。探讨细胞增殖、迁移和细胞周期;检测细胞内信号蛋白;检测线粒体膜电位。主要发现:DG对肺成纤维细胞的抗组胺作用与LTD相似。DG抑制组胺诱导的细胞活化、增殖和迁移;DG改变了组胺介导的线粒体膜电位。DG降低组胺诱导的PAR-2(一种胰蛋白酶受体)的表达,损害肥大细胞胰蛋白酶的协同作用。DG使组胺诱导的MMP-2、FAK、TNF-α、P38、iNOS表达降低,Bax、caspase-3、P53表达升高。组胺使细胞从G0/G1期进入S期,而DG通过抑制G0/G1期和G2/M期使细胞休息。结论:本研究表明,DG可抑制组胺诱导的肺成纤维细胞凋亡,促进异常活化的肺成纤维细胞凋亡,提示其治疗PF及组胺相关疾病的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anti-histamine effects of dipotassium glycyrrhizinate on lung fibroblasts, implicating its therapeutic mechanism for pulmonary fibrosis.

Objectives: To examine the possible anti-histamine effects of dipotassium glycyrrhizinate (DG), a dipotassium salt of glycyrrhizic acid, on histamine-mediated lung fibroblast activation, differentiation and proliferation; to investigate the potential and underlying mechanisms for pulmonary fibrosis (PF) treatment.

Methods: Rat primary lung fibroblasts were extracted to establish cell models; histamine, DG and loratadine (LTD, a histamine receptor antagonist) were applied. Cell proliferation, migration and cell cycle were explored; intracellular signal proteins were detected; mitochondrial membrane potential was examined.

Key findings: The anti-histamine effects of DG were found in a similar pattern of LTD on lung fibroblasts. DG inhibited histamine-induced cell activation, proliferation and migration; DG altered histamine-mediated mitochondrial membrane potentials. DG reduced the histamine-induced PAR-2 (a tryptase receptor) expression to impair mast cell tryptase co-working. Histamine-induced expressions of MMP-2, FAK, TNF-α, P38, iNOS were decreased by DG, while Bax and caspase-3, P53 were increased by DG against histamine effects. Histamine drove cells from G0/G1 to S phases, whereas DG rested cells by inhibiting G0/G1 and G2/M phases.

Conclusions: This study provided the evidences that DG can inhibit histamine-induced effects on lung fibroblasts and promote apoptosis of abnormally activated lung fibroblasts, implicating its potential therapeutic mechanisms against PF development, also for those histamine-related diseases.

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