18β-Glycyrrhetinic acid ameliorates endoplasmic reticulum stress-induced inflammation in pulmonary arterial hypertension through PERK/eIF2α/NF-κB signaling.

IF 1.4 4区 医学 Q4 PHYSIOLOGY Chinese Journal of Physiology Pub Date : 2022-07-01 DOI:10.4103/0304-4920.354801
Jia-Ling Wang, Hui Liu, Zhi-Cheng Jing, Fang Zhao, Ru Zhou
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引用次数: 1

Abstract

Endoplasmic reticulum stress (ERS)-induced inflammation participates in the occurrence of pulmonary arterial hypertension (PAH) by promoting pulmonary vascular remodeling, which involved in the activation of PERK/eIF2α/NF-κB signaling pathway. 18β-Glycyrrhetinic acid (18β-GA) has been found efficacious for attenuating PAH through its anti-remodeling effects in our previous research and it remains unclear whether 18β-GA has an effect on the remodeling caused by ERS-induced inflammation. In this study, we made observations in monocrotaline-induced PAH rats and found improvement of hemodynamic and histopathological parameters, decreases in the right ventricular hypertrophy index, and alleviation of pulmonary vascular remodeling after 18β-GA administration in vivo. Moreover, 18β-GA could significantly inhibit the proliferation and DNA synthesis of human pulmonary arterial smooth muscle cells (HPASMCs) induced by platelet-derived growth factor BB. At the cellular and molecular levels, we found that 18β-GA could significantly reduce the accumulation of misfolded protein in rat lung tissue, inhibit ERS activation, reduce the expression of GRP78, p-PERK, p-eIF2α, and p-NF-κB p65, and increase IκB protein expression. 18β-GA could inhibit the migration of NF-κB into the nucleus, reduce the contents of tumor necrosis factor-α (TNF-α), interleukin (IL)-6, and monocyte chemoattractant protein-1 (MCP-1) in the culture supernatant of HPASMCs, and reduce GRP78, p-PERK, p-eIF2α, p-NF-κB p65, TNF-α, IL-6, and MCP-1 protein expression, increase IκB protein expression in HPASMCs. According to what we observed, this study indicated that 18β-GA could treat PAH, which is related to the inhibition of PERK/eIF2α/NF-κB signaling pathway.

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18β-甘草次酸通过PERK/eIF2α/NF-κB信号通路改善内质网应激性肺动脉高压炎症。
内质网应激(Endoplasmic reticulum stress, ERS)诱导的炎症通过促进肺血管重构参与肺动脉高压(pulmonary arterial hypertension, PAH)的发生,并参与PERK/eIF2α/NF-κB信号通路的激活。我们前期研究发现18β-甘草酸(18β-GA)通过其抗重构作用对PAH有减弱作用,但18β-GA是否对ers诱导炎症引起的重构有影响尚不清楚。在本研究中,我们对单罗塔林诱导的PAH大鼠进行了观察,发现18β-GA在体内给药后,血流动力学和组织病理学参数得到改善,右心室肥厚指数下降,肺血管重构得到缓解。此外,18β-GA能显著抑制血小板源性生长因子BB诱导的人肺动脉平滑肌细胞(HPASMCs)的增殖和DNA合成。在细胞和分子水平上,我们发现18β-GA可以显著减少大鼠肺组织中错误折叠蛋白的积累,抑制ERS的激活,降低GRP78、p-PERK、p-eIF2α和p-NF-κB p65的表达,增加i -κB蛋白的表达。18β-GA能抑制NF-κB向细胞核的迁移,降低HPASMCs培养上清中肿瘤坏死因子-α (TNF-α)、白细胞介素(IL)-6和单核细胞趋化蛋白-1 (MCP-1)的含量,降低GRP78、p-PERK、p-eIF2α、p-NF-κB p65、TNF-α、IL-6和MCP-1蛋白的表达,增加i -κB蛋白的表达。根据我们的观察,本研究提示18β-GA可治疗PAH,其作用与抑制PERK/eIF2α/NF-κB信号通路有关。
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来源期刊
CiteScore
2.30
自引率
5.60%
发文量
36
审稿时长
6-12 weeks
期刊介绍: Chinese Journal of Physiology is a multidisciplinary open access journal. Chinese Journal of Physiology (CJP) publishes high quality original research papers in physiology and pathophysiology by authors all over the world. CJP welcomes submitted research papers in all aspects of physiology science in the molecular, cellular, tissue and systemic levels. Multidisciplinary sciences with a focus to understand the role of physiology in health and disease are also encouraged. Chinese Journal of Physiology accepts fourfold article types: Original Article, Review Article (Mini-Review included), Short Communication, and Editorial. There is no cost for readers to access the full-text contents of publications.
期刊最新文献
Corrigendum: Action of the natural compound gomisin a on Ca2+ movement in human prostate cancer cells. Dose-dependent effect of retrieval-extinction on preventing reinstatement of cocaine-associated memory in mice. Spectral analysis of cardiovascular oscillations in the 7-day regimen of losartan administration with and without cold stress. Prazosin improves neurogenic acute heart failure through downregulation of fibroblast growth factor 23 in rat hearts. 18β-Glycyrrhetinic acid ameliorates endoplasmic reticulum stress-induced inflammation in pulmonary arterial hypertension through PERK/eIF2α/NF-κB signaling.
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