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芪珀生脉颗粒通过调节心肌细胞钙稳态改善 Ach-CaCl2 诱导的心房颤动。

Qi-Po-Sheng-Mai granule ameliorates Ach-CaCl -induced atrial fibrillation by regulating calcium homeostasis in cardiomyocytes.

机构信息

Department of Internal Medicine, Guang'anmen Hospital, China Academy of Chinese Medical Sciences, 5 Beixiange Street Xicheng District, Beijing 100053, China.

Department of Cardiovascular, Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, China.

出版信息

Phytomedicine. 2023 Oct;119:155017. doi: 10.1016/j.phymed.2023.155017. Epub 2023 Aug 7.

Abstract

BACKGROUND

Atrial fibrillation (AF) is one of the most common arrhythmias encountered in clinical settings. Currently, the pathophysiology of AF remains unclear, which severely limits the effectiveness and safety of medical therapies. The Chinese herbal formula Qi-Po-Sheng-Mai Granule (QPSM) has been widely used in China to treat AF. However, its pharmacological and molecular mechanisms remain unknown.

PURPOSE

The purpose of this study was to investigate the molecular mechanisms and potential targets of QPSM for AF.

STUDY DESIGN AND METHODS

The AF model was induced by Ach (66 μg/ml) and CaCl (10 mg/kg), and the dose of 0.1 ml/100 g was injected into the tail vein for 5 weeks. QPSM was administered daily at doses of 4.42 and 8.84 g/kg, and amiodarone (0.18 g/kg) was used as the positive control. The effect of QPSM on AF was assessed by electrocardiogram, echocardiography, and histopathological analysis. Then, we employed network pharmacology with single nucleus RNA sequencing (snRNA-Seq) to investigate the molecular mechanisms and potential targets of QPSM for AF. Furthermore, high performance liquid chromatography (HPLC) method was used for component analysis of QPSM, and molecular docking was used to verify the potential targets. Using the IonOptix single cell contraction and ion synchronization test equipment, single myocyte length and calcium ion variations were observed in real time. The expression levels of calcium Transporter-related proteins were detected by western blot and immunohistochemistry.

RESULTS

Based on an Ach-CaCl-induced AF model, we found that QPSM treatment significantly reduced atrial electrical remodeling-related markers, such as AF inducibility and duration, and attenuated atrial dilation and fibrosis. Network pharmacology identified 52 active ingredients and 119 potential targets for QPSM in the treatment of AF, and 45 Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways were enriched, among which calcium pathway had the greatest impact. Using single nucleus sequencing (snRNA-seq), we identified cardiomyocytes as the most differentially expressed in response to drug treatment, with nine differentially expressed genes enriched in calcium signaling pathways. High performance liquid chromatography and molecular docking confirmed that the core components of QPSM strongly bind to the key factors in the calcium signaling pathway. Additional experiments have shown that QPSM increases calcium transients (CaT) and contractility in the individual cardiomyocyte. This was accomplished by increasing the expression of CACNA1C and SERCA2a and decreasing the expression of CAMK2B and NCX1.

CONCLUSION

The present study has systematically elucidated the role of QPSM in maintaining calcium homeostasis in cardiomyocytes through the regulation of calcium transporters, which could lead to new drug development ideas for AF.

摘要

背景

心房颤动(AF)是临床中最常见的心律失常之一。目前,AF 的病理生理学仍不清楚,这严重限制了医学治疗的有效性和安全性。中药配方七珀生脉颗粒(QPSM)已在中国广泛用于治疗 AF。然而,其药理和分子机制尚不清楚。

目的

本研究旨在探讨 QPSM 治疗 AF 的分子机制和潜在靶点。

研究设计和方法

采用 Ach(66μg/ml)和 CaCl(10mg/kg)诱导 AF 模型,尾静脉注射 0.1ml/100g,每周 5 次。QPSM 以 4.42 和 8.84g/kg 的剂量给药,胺碘酮(0.18g/kg)作为阳性对照。通过心电图、超声心动图和组织病理学分析评估 QPSM 对 AF 的影响。然后,我们采用网络药理学结合单细胞 RNA 测序(snRNA-Seq)研究 QPSM 治疗 AF 的分子机制和潜在靶点。此外,采用高效液相色谱(HPLC)法对 QPSM 进行成分分析,并用分子对接验证潜在靶点。使用 IonOptix 单细胞收缩和离子同步测试设备实时观察单个心肌细胞长度和钙离子变化。通过 Western blot 和免疫组织化学检测钙转运体相关蛋白的表达水平。

结果

基于 Ach-CaCl 诱导的 AF 模型,我们发现 QPSM 治疗可显著降低心房电重构相关标志物,如 AF 易感性和持续时间,并减轻心房扩张和纤维化。网络药理学鉴定出 QPSM 治疗 AF 的 52 种活性成分和 119 个潜在靶点,富集了 45 个京都基因与基因组百科全书(KEGG)通路,其中钙通路影响最大。采用单细胞测序(snRNA-seq),我们发现心肌细胞是对药物治疗反应最具差异表达的细胞类型,其中 9 个差异表达基因富集在钙信号通路中。高效液相色谱和分子对接证实,QPSM 的核心成分可与钙信号通路的关键因子紧密结合。进一步的实验表明,QPSM 通过增加 CACNA1C 和 SERCA2a 的表达和降低 CAMK2B 和 NCX1 的表达来增加单个心肌细胞的钙瞬变(CaT)和收缩力。

结论

本研究系统阐明了 QPSM 通过调节钙转运体在维持心肌细胞钙稳态中的作用,为 AF 的新药研发提供了新思路。

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