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甘草酸通过抑制 Hippo/YAP 信号通路减轻 MI/R 引起的损伤。

Glycyrrhizic acid alleviated MI/R-induced injuries by inhibiting Hippo/YAP signaling pathways.

机构信息

The Third Central Clinical College of Tianjin Medical University, Tianjin 300170, China; Department of Heart Center, The Third Central Hospital of Tianjin, 83 Jintang Road, Hedong District, Tianjin 300170, China; Tianjin Key Laboratory of Extracorporeal Life Support for Critical Diseases, Tianjin, China; Nankai University Affiliated Third Center Hospital, No. 83, Jintang Road, Hedong District, Tianjin 300170, China; Tianjin ECMO Treatment and Training Base, Tianjin 300170, China; Artificial Cell Engineering Technology Research Center, Tianjin, China.

The Third Central Clinical College of Tianjin Medical University, Tianjin 300170, China; Department of Heart Center, The Third Central Hospital of Tianjin, 83 Jintang Road, Hedong District, Tianjin 300170, China; Tianjin Key Laboratory of Extracorporeal Life Support for Critical Diseases, Tianjin, China; Nankai University Affiliated Third Center Hospital, No. 83, Jintang Road, Hedong District, Tianjin 300170, China; Tianjin ECMO Treatment and Training Base, Tianjin 300170, China; Artificial Cell Engineering Technology Research Center, Tianjin, China.

出版信息

Cell Signal. 2024 Mar;115:111036. doi: 10.1016/j.cellsig.2024.111036. Epub 2024 Jan 5.

Abstract

BACKGROUND

Previous research has demonstrated that glycyrrhizic acid (GA) exhibits antioxidant, anti-inflammatory, and antiapoptotic characteristics. Using myocardial ischemia/reperfusion injury as a case study, this study aims to clarify the functional significance of GA and to elucidate the mechanisms involved.

MATERIALS AND METHODS

In this study, an MI/R injury model was established both in vivo and in vitro to investigate the impact of GA on MI/R injury. The viability of H9c2 cells was evaluated using the Cell Counting Kit-8. Myocardial damage was assessed through the measurement of creatine kinase myocardial band (CK-MB) levels and lactate dehydrogenase (LDH), HE staining, and MASSON staining. Inflammatory cytokine levels (IL-6, IL-1β, IL-10, and TNF-α) were measured to determine the presence of inflammation. Cellular oxidative stress was evaluated by measuring ROS and MMP levels, while cardiac function was assessed using cardiac color Doppler ultrasound. Immunofluorescence staining to determine the nuclear translocation of YAP, TUNEL to determine apoptosis, and western blotting to determine gene expression.

RESULTS

GA treatment effectively alleviated myocardial injury induced by MI/R, as evidenced by reduced levels of inflammatory cytokines (IL-1β, IL-6, IL-10, and TNF-α) and cardiac biomarkers (CK-MB, LDH) in MI/R rats. Moreover, There was a significant increase in cell viability in vitro after GA treatment and inhibited reactive oxygen species (ROS) during oxidative stress, while also increasing mitochondrial membrane potential (MMP) in vitro. The Western blot findings indicate that GA treatment effectively suppressed apoptosis in both in vivo and in vitro settings. Additionally, GA demonstrated inhibitory effects on the activation of the Hippo/YAP signaling pathway triggered by MI/R and facilitated YAP nuclear translocation both in vitro and in vivo. It has been found, however, in vitro, that silencing the YAP gene negates GA's protective effect against hypoxia/reoxygenation-induced myocardial injury.

CONCLUSION

This study suggests that GA regulates YAP nuclear translocation by inhibiting the Hippo/YAP signaling pathway, which protects ists against MI/R injury. This finding may present a novel therapeutic approach for the treatment of MI/R.

摘要

背景

已有研究表明,甘草酸(GA)具有抗氧化、抗炎和抗凋亡作用。本研究以心肌缺血/再灌注损伤为研究对象,旨在阐明 GA 的功能意义,并阐明其相关机制。

材料与方法

本研究采用体内和体外 MI/R 损伤模型,探讨 GA 对 MI/R 损伤的影响。采用细胞计数试剂盒-8 评估 H9c2 细胞活力。通过测量肌酸激酶同工酶 MB(CK-MB)和乳酸脱氢酶(LDH)、HE 染色和马松染色来评估心肌损伤。通过测量炎症细胞因子(IL-6、IL-1β、IL-10 和 TNF-α)水平来确定是否存在炎症。通过测量 ROS 和 MMP 水平来评估细胞氧化应激,同时使用心脏彩色多普勒超声评估心功能。通过免疫荧光染色确定 YAP 的核转位,通过 TUNEL 检测确定细胞凋亡,通过 Western blot 检测基因表达。

结果

GA 治疗可有效减轻 MI/R 诱导的心肌损伤,表现为 MI/R 大鼠炎症细胞因子(IL-1β、IL-6、IL-10 和 TNF-α)和心脏标志物(CK-MB、LDH)水平降低。此外,GA 处理后体外细胞活力显著增加,在氧化应激时抑制活性氧(ROS),同时增加体外线粒体膜电位(MMP)。Western blot 结果表明,GA 治疗可有效抑制体内外细胞凋亡。此外,GA 还可抑制 MI/R 触发的 Hippo/YAP 信号通路激活,促进 YAP 核转位,体内外结果一致。然而,体外研究发现,沉默 YAP 基因可消除 GA 对缺氧/复氧诱导的心肌损伤的保护作用。

结论

本研究表明,GA 通过抑制 Hippo/YAP 信号通路调节 YAP 核转位,从而减轻 MI/R 损伤。这一发现可能为 MI/R 治疗提供新的治疗方法。

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