[灵桂术甘汤通过调节 Wnt/β-catenin 通路抑制心肌纤维化的机制]

Q3 Pharmacology, Toxicology and Pharmaceutics Zhongguo Zhongyao Zazhi Pub Date : 2024-08-01 DOI:10.19540/j.cnki.cjcmm.20240415.701
Rui Ding, Xiang-Yang Li, Xiang Wang, Liang Wang, Peng Zhou, Jin-Ling Huang
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Except for the normal control group, all other groups were stimulated with hydrogen peroxide(H_2O_2) after pretreatment with 20% blank serum or 5%, 10%, 20% LGZGD-medicated serum for 12 hours to establish a model of fibrosis in primary CFs. Scratch healing assay was used to observe cell migration ability. ELISA was used to detect the content of collagen type Ⅰ(Col Ⅰ) and type Ⅲ(Col Ⅲ). Western blot was used to detect the protein expression of α-smooth muscle actin(α-SMA), Wnt1, glycogen synthase kinase 3β(GSK-3β), phosphorylated GSK-3β(p-GSK-3β), β-catenin, and nuclear β-catenin. RT-qPCR was used to detect the gene expression of β-catenin and matrix metalloproteinase 9(MMP9), and immunofluorescence technique was used to detect the expression and localization of key proteins α-SMA and β-catenin. CFs with Wnt1 overexpression were prepared and treated with H_2O_2. 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引用次数: 0

摘要

本研究旨在探讨灵桂术甘汤(LGZGD)药用血清对心脏成纤维细胞(CFs)纤维化及Wnt/β-catenin信号通路蛋白表达的调控机制。制备空白血清和LGZGD药用血清,采用胰蛋白酶-胶原酶消化法和差异粘附法分离培养原代CFs。免疫荧光标记用于鉴定原代 CFs。细胞被分为正常对照组、模型组、20% 空白血清组、5%、10% 和 20% LGZGD 添加血清组。除正常对照组外,其他各组均在 20% 空白血清或 5% 、10% 、20% LGZGD 药物血清预处理后用过氧化氢(H_2O_2)刺激 12 小时,以建立原代 CFs 纤维化模型。划痕愈合试验用于观察细胞迁移能力。ELISA 检测Ⅰ型胶原蛋白(Col Ⅰ)和Ⅲ型胶原蛋白(Col Ⅲ)的含量。用 Western blot 检测α-平滑肌肌动蛋白(α-SMA)、Wnt1、糖原合酶激酶 3β(GSK-3β)、磷酸化 GSK-3β(p-GSK-3β)、β-catenin 和核β-catenin 的蛋白表达。采用RT-qPCR技术检测β-catenin和基质金属蛋白酶9(MMP9)的基因表达,采用免疫荧光技术检测关键蛋白α-SMA和β-catenin的表达和定位。制备 Wnt1 过表达的 CFs 并用 H_2O_2 处理。分为以下几组:正常对照组、模型组、20% LGZGD-药用血清组、空质粒+20% LGZGD-药用血清组和 Wnt1 过表达+20% LGZGD-药用血清组。ELISA检测ColⅠ和ColⅢ的含量和比例。Western blot用于检测α-SMA、Wnt1、GSK-3β、p-GSK-3β、β-catenin和核β-catenin的蛋白表达。RT-qPCR 用于检测β-catenin 和 MMP9 的基因表达。免疫荧光染色显示,CFs阳性表达Vimentin,呈绿色,核蓝色,纯度大于90%,确定为原发性CFs。结果结果表明,与正常对照组相比,模型组 CFs 愈合率提高,Col Ⅰ、Col Ⅲ 含量增加,Col Ⅰ/Col Ⅲ 比值增高,α-SMA 蛋白表达上调、Wnt1、p-GSK-3β、β-catenin、核β-catenin 的蛋白表达上调,GSK-3β 表达下降,β-catenin 和 MMP9 的 mRNA 表达升高,β-catenin 和 α-SMA 的荧光强度和表达增强。与模型组相比,添加5%、10%、20% LGZGD的血清明显抑制了细胞迁移能力,降低了ColⅠ和ColⅢ的含量,降低了ColⅠ/ColⅢ的比值,下调了α-SMA的蛋白表达、Wnt1、p-GSK-3β、β-catenin、核β-catenin的蛋白表达下调,GSK-3β表达增加,β-catenin和MMP9的mRNA表达减少,β-catenin和α-SMA的荧光强度和表达降低。与空质粒+20% LGZGD添加血清组相比,过表达Wnt1后LGZGD添加血清组的效果明显逆转。LGZGD可以减少胶原纤维的过度沉积,抑制成纤维细胞的过度增殖,改善心肌纤维化的进程。LGZGD对心肌纤维化的改善与调节Wnt/β-catenin通路、减少胶原沉积和保护心肌细胞有关。
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[Mechanism of Linggui Zhugan Decoction in inhibiting myocardial fibrosis by regulating Wnt/β-catenin pathway].

This study aimed to investigate the regulatory mechanism of Linggui Zhugan Decoction(LGZGD)-medicated serum on the fibrosis of cardiac fibroblasts(CFs) and the protein expression of the Wnt/β-catenin signaling pathway. Blank serum and LGZGD-medicated serum were prepared, and primary CFs were isolated and cultured using trypsin-collagenase digestion and differential adhesion method. Immunofluorescence labeling was used to identify primary CFs. Cells were divided into normal control group, model group, 20% blank serum group, and 5%, 10%, and 20% LGZGD-medicated serum groups. Except for the normal control group, all other groups were stimulated with hydrogen peroxide(H_2O_2) after pretreatment with 20% blank serum or 5%, 10%, 20% LGZGD-medicated serum for 12 hours to establish a model of fibrosis in primary CFs. Scratch healing assay was used to observe cell migration ability. ELISA was used to detect the content of collagen type Ⅰ(Col Ⅰ) and type Ⅲ(Col Ⅲ). Western blot was used to detect the protein expression of α-smooth muscle actin(α-SMA), Wnt1, glycogen synthase kinase 3β(GSK-3β), phosphorylated GSK-3β(p-GSK-3β), β-catenin, and nuclear β-catenin. RT-qPCR was used to detect the gene expression of β-catenin and matrix metalloproteinase 9(MMP9), and immunofluorescence technique was used to detect the expression and localization of key proteins α-SMA and β-catenin. CFs with Wnt1 overexpression were prepared and treated with H_2O_2. The following groups were set up: normal control group, model group, 20% LGZGD-medicated serum group, empty plasmid+20% LGZGD-medicated serum group, and Wnt1 overexpression+20% LGZGD-medicated serum group. ELISA was used to detect the content and ratio of Col Ⅰ and Col Ⅲ. Western blot was used to detect the protein expression of α-SMA, Wnt1, GSK-3β, p-GSK-3β, β-catenin, and nuclear β-catenin. RT-qPCR was used to detect the gene expression of β-catenin and MMP9. Immunofluorescence staining showed that CFs expressed Vimentin positively, appearing green, with blue nuclei and purity greater than 90%, which were identified as primary CFs. RESULTS:: showed that compared with the normal control group, CFs in the model group had enhanced healing rate, increased content of Col Ⅰ and Col Ⅲ, increased ratio of Col Ⅰ/Col Ⅲ, upregulated protein expression of α-SMA, Wnt1, p-GSK-3β, β-catenin, nuclear β-catenin, decreased GSK-3β expression, elevated mRNA expression of β-catenin and MMP9, and enhanced fluorescence intensity and expression of β-catenin and α-SMA. Compared with the model group, 5%, 10%, 20% LGZGD-medicated serum significantly inhibited cell migration ability, reduced the content of Col Ⅰ and Col Ⅲ, decreased ratio of Col Ⅰ/Col Ⅲ, downregulated protein expression of α-SMA, Wnt1, p-GSK-3β, β-catenin, nuclear β-catenin, increased GSK-3β expression, decreased mRNA expression of β-catenin and MMP9, and reduced fluorescence intensity and expression of β-catenin and α-SMA. Compared with the empty plasmid+20% LGZGD-medicated serum group, the effect of LGZGD-medicated serum was significantly reversed after overexpression of Wnt1. LGZGD can reduce excessive deposition of collagen fibers, inhibit excessive proliferation of fibroblasts, and improve the process of myocardial fibrosis. The improvement of myocardial fibrosis by LGZGD is related to the regulation of the Wnt/β-catenin pathway, reduction of collagen deposition, and protection of myocardial cells.

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Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
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581
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