基础医学与临床 ›› 2026, Vol. 46 ›› Issue (10): 1375-1383.doi: 10.16352/j.issn.1001-6325.2026.10.1375

• 研究论文 • 上一篇    下一篇

心衰合剂对缺氧心肌细胞能量代谢、自噬流及PYGM/Thbs1表达的影响

彭天洁1,2, 张梓萌1,2, 仇盛蕾1*, 杨丹3*, 尚菊菊1, 李思耐1,4, 张振民1   

  1. 1.首都医科大学附属北京中医医院 心血管疾病诊疗中心,北京 100010;
    2.北京中医药大学 研究生院,北京 100029;
    3.中国医学科学院北京协和医学院 北京协和医院 中医科 转化医学中心,北京 100730;
    4.北京市中医药研究所 脑心同治实验室,北京 100010
  • 收稿日期:2026-07-02 修回日期:2026-08-13 出版日期:2026-10-05 发布日期:2026-09-18
  • 通讯作者: *choushenglei@bjzhongyi.com;jsj000jsj@163.com
  • 基金资助:
    北京医药健康协同中医药高质量研发工程(YJS-2025-院所融合-01);北京市属医院科研培育计划(PZ2025015);河北省中医药管理局科研计划(B2025051)

Effects of Xinshuai Heji on energy metabolism, autophagic flux and PYGM/Thbs1 expression in hypoxia-exposed cardiomyocytes

PENG Tianjie1,2, ZHANG Zimeng1,2, QIU Shenglei1*, YANG Dan3*, SHANG Juju1, LI Sinai1,4, ZHANG Zhenmin1   

  1. 1. Department of Cardiology, Beijing Hospital of Traditional Chinese Medicine, Capital Medical University, Beijing 100010;
    2. Graduate School, Beijing University of Chinese Medicine, Beijing 100029;
    3. Department of Traditional Chinese Medicine, Centre for Translational Medicine, Peking Union Medical College Hospital, CAMS & PUMC, Beijing 100730;
    4. Department of Brain and Heart Co-treatment, Beijing Institute of Traditional Chinese Medicine, Beijing 100010, China
  • Received:2026-07-02 Revised:2026-08-13 Online:2026-10-05 Published:2026-09-18
  • Contact: *choushenglei@bjzhongyi.com;jsj000jsj@163.com

摘要: 目的 探讨心衰合剂(XSHJ)对缺氧HL-1心肌细胞能量代谢及自噬流障碍的影响,并观察该过程中骨骼肌糖原磷酸化酶(PYGM)及血小板反应蛋白-1(Thbs1)的表达水平。方法 构建HL-1细胞缺氧损伤模型,设不同浓度XSHJ组及恩格列净阳性对照组。检测细胞活力与凋亡率;荧光染色观察线粒体网络形态及膜电位;应用Seahorse分析仪测定耗氧率(OCR),并检测能量与氧化还原代谢相关生化指标;采用双荧光探针法评估细胞自噬流状态;Western blot检测PYGM、Thbs1及自噬相关蛋白表达水平。结果 与模型组相比,XSHJ呈剂量依赖性地提高缺氧细胞活力、降低凋亡率,改善受损的线粒体网络结构,提升细胞基础OCR水平及ATP、NADPH、GSH含量,减少ROS蓄积。同时,XSHJ能够逆转LC3-Ⅱ/Ⅰ比值的下降及p62蛋白的异常堆积,增加自噬小体与自噬溶酶体数量。蛋白表达分析显示,XSHJ组PYGM表达上调,Thbs1表达下调。XSHJ的上述保护效应与恩格列净组趋势一致。结论 XSHJ能减轻缺氧所致的心肌细胞损伤,改善能量代谢稳态并促进自噬流的恢复。该保护效应可能与PYGM、Thbs1的参与相关,具体机制有待进一步验证。

关键词: 心衰合剂, 缺血性心力衰竭, PYGM, 自噬流, 能量代谢

Abstract: Objective To investigate the effects of Xinshuai Heji (XSHJ) on energy metabolism and autophagic flux disruption in hypoxia-exposed HL-1 cardiomyocytes, and to observe the concomitant changes in the expression of glycogen phosphorylase, muscle-associated(PYGM) and thrombospondin-1(Thbs1). Methods A hypoxia- induced injury model was established in HL-1 cells with interventions of XSHJ at various concentrations and empagliflozin as a positive control. Cell viability and apoptosis were assessed. Mitochondrial network morphology and membrane potential were observed by fluorescence staining. The oxygen consumption rate (OCR) was measured using a Seahorse analyzer, along with biochemical markers of energy and redox metabolism. Autophagic flux was evaluated utilizing a tandem fluorescent reporter assay. Furthermore, the protein expression levels of PYGM, Thbs1, and autophagy-related markers were determined via Western blot analysis. Results Compared with the model group, XSHJ dose-dependently increased cell viability, reduced apoptosis, and ameliorated the damaged mitochondrial network structure. XSHJ also elevated basal OCR and intracellular levels of ATP, NADPH, and GSH, while decreasing reactive oxygen species (ROS) accumulation. Concurrently, XSHJ reversed the hypoxia-induced reduction in the LC3-Ⅱ/Ⅰ ratio and the abnormal accumulation of p62 protein, accompanied by increased numbers of autophagosomes and autolysosomes. Protein expression profiling revealed that XSHJ upregulated PYGM and downregulated Thbs1 expression. These protective effects were comparable to those of empagliflozin. Conclusions XSHJ alleviated hypoxia-induced cardiomyocyte injury, improved energy metabolism, and promoted the restoration of autophagic flux. These protective effects may be associated with the involvement of PYGM and Thbs1, though the underlying mechanisms require further investigation.

Key words: Xinshuai Heji, ischemic heart failure, PYGM, autophagic flux, energy metabolism

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