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中国临床药理学与治疗学 ›› 2026, Vol. 31 ›› Issue (7): 875-884.doi: 10.12092/j.issn.1009-2501.2026.07.002

• 基础研究 • 上一篇    下一篇

硫化氢对低氧性肺动脉高压大鼠FDX1-铜死亡途径的干预

王淑远1(), 黄曼2(), 陈思安2, 韩丛美3, 程缘2, 袁琳波3, 叶环1,*(), 王万铁2,*()   

  1. 1. 温州市人民医院呼吸与危重症医学科,温州 325400,浙江
    2. 温州医科大学基础医学院病理学与病理生理学系,温州 325035,浙江
    3. 温州医科大学基础医学院机能学系,温州 325035,浙江
  • 收稿日期:2025-12-04 修回日期:2026-03-27 出版日期:2026-07-26 发布日期:2026-08-04
  • 通讯作者: 叶环,王万铁 E-mail:944372370@qq.com;1440480267@qq.com;wsyyehuan@126.com;wwt@wmu.edu.cn
  • 作者简介:王淑远,女,主治医师,研究方向:肺动脉高压及缺血再灌注损伤。E-mail:944372370@qq.com|黄曼,共同第一作者,女,硕士研究生,研究方向:肺动脉高压。E-mail:1440480267@qq.com
  • 基金资助:
    浙江省介入肺脏病重点实验室建设项目(2019E10014)

Intervention of hydrogen sulfide on FDX1-cuproptosis pathway in rats with hypoxemic pulmonary hypertension

Shuyuan WANG1(), Man HUANG2(), Sian CHEN2, Congmei HAN3, Yuan CHENG2, Linbo YUAN3, Huan YE1,*(), Wantie WANG2,*()   

  1. 1. Department of Respiratory and Critical Care Medicine, Wenzhou People's Hospital, Wenzhou 325400, Zhejiang, China
    2. Department of Pathology and Pathophysiology, School of Basic Medical Sciences, Wenzhou Medical University, Wenzhou 325035, Zhejiang, China
    3. Department of Functional Medicine, School of Basic Medicine, Wenzhou Medical University, Wenzhou 325035, Zhejiang, China
  • Received:2025-12-04 Revised:2026-03-27 Online:2026-07-26 Published:2026-08-04
  • Contact: Huan YE,Wantie WANG E-mail:944372370@qq.com;1440480267@qq.com;wsyyehuan@126.com;wwt@wmu.edu.cn

摘要:

目的: 探究硫化氢(hydrogen sulfide,H2S)是否通过铁氧化还原蛋白1(ferredoxin 1,FDX1)-铜死亡途径来改善大鼠低氧性肺动脉高压(hypoxic pulmonary hypertension,HPH)。方法: 雄性Sprague Dawley(SD)大鼠随机分为Control组、Hypoxia组和Hypoxia+NaHS组,每组各10只。Control组大鼠置于常氧(21% O2)环境中,每天腹腔注射等体积生理盐水;Hypoxia组大鼠和Hypoxia+NaHS组大鼠置于低氧箱中,每天腹腔注射14 μmol/kg的NaHS。造模21 d结束后,用右心导管法检测各组大鼠的平均肺动脉压(mPAP),称重并计算右心室肥厚指数(RVHI);ELISA法检测内皮素-1(ET-1)、一氧化氮(NO)和前列环素(PGI2)的含量;电感耦合等离子体质谱(ICP-MS)法检测铜离子浓度;Western blot法检测铜转运蛋白1(CTR1)、铜转运ATP酶α(ATP7A)、铜转运ATP酶β(ATP7B)、FDX1、硫辛酸合成酶(LIAS)、二氢硫辛酸转乙酰基酶(DLAT)、二氢硫辛酸转乙酰基酶二聚体(DLAT Dimer)、二氢硫辛酰胺S-琥珀酰转移酶(DLST);RT-qPCR法检测FDX1、LIAS、DLAT、二氢硫辛酰胺脱氢酶(DLD)mRNA表达水平;JC-1试剂盒检测线粒体膜电位变化;化学发光法检测ATP含量;ELISA法检测丙酮酸脱氢酶E1亚基α1(PDHA1)含量;磺基水杨酸法检测柠檬酸(CA)含量。结果: 与Control组比较,Hypoxia组中mPAP和RVHI显著上升;ET-1的浓度显著升高而NO和PGI2的浓度显著降低;铜离子浓度显著升高;铜转运蛋白1表达含量显著升高,铜外排蛋白ATP7A、ATP7B表达含量显著降低;铜死亡相关蛋白FDX1、LIAS、DLAT、DLST表达含量均显著降低而DLAT二聚体蛋白表达含量显著升高;FDX1LIASDLATDLD基因mRNA表达水平显著降低;线粒体功能指标JC-1和ATP表达水平显著降低;三羧酸循环指标PDHA1和CA表达含量显著降低(均P<0.05)。与Hypoxia组比较,Hypoxia+NaHS组中的上述指标的变化均可被治疗药物NaHS显著逆转。结论: H2S可能通过调控FDX1-铜死亡途径影响肺组织细胞线粒体功能、代谢,从而缓解肺血管收缩,改善肺动脉高压。

关键词: 铜离子, 肺动脉高压, 铜死亡, 硫化氢

Abstract:

AIM: To investigate whether hydrogen sulfide (H2S) improves hypoxic pulmonary hypertension (HPH) in rats through the FDX1-cuproptosis pathway. METHODS: Male Sprague-Dawley (SD) rats were randomly assigned to the Control group; Hypoxia group and Hypoxia+NaHS group, with 10 rats in each group. Rats in the Control group were housed in a normoxic environment (21% O2) and received a daily intraperitoneal injection of an equal volume of normal saline; rats in the Hypoxia group and Hypoxia+NaHS group were placed in hypoxic chambers and received a daily intraperitoneal injection of 14 μmol/kg NaHS. After 21 days of model establishment, the mean pulmonary arterial pressure (mPAP) of each group was measured by right heart catheterization and the right ventricular hypertrophy index (RVHI) was calculated after weighing. The levels of endothelin-1 (ET-1), nitric oxide (NO) and prostacyclin (PGI2) were measured by ELISA. Copper ion concentration was detected by inductively coupled plasma mass spectrometry (ICP-MS). The protein levels of copper transporter 1 (CTR1), copper-transporting ATPase α (ATP7A), copper-transporting ATPase β (ATP7B), ferredoxin 1 (FDX1), lipoic acid synthase (LIAS), dihydrolipoamide S-acetyltransferase (DLAT), dihydrolipoamide S-acetyltransferase dimer (DLAT Dimer) and dihydrolipoamide S-succinyltransferase (DLST) were detected by Western blot. The mRNA expression levels of FDX1, LIAS, DLAT and dihydrolipoamide dehydrogenase (DLD) were detected by RT-qPCR. Mitochondrial membrane potential was assessed using the JC-1 kit. ATP content was measured by chemiluminescence. The level of pyruvate dehydrogenase E1 subunit alpha 1 (PDHA1) was measured by ELISA. Citric acid (CA) content was measured by the sulfosalicylic acid method. RESULTS: Compared with the Control group, the Hypoxia group showed significantly increased mPAP and RVHI; significantly elevated ET-1 concentration while NO and PGI2 concentrations were significantly decreased; significantly increased copper ion concentration; significantly elevated expression of copper transporter 1 while the expressions of copper efflux proteins ATP7A and ATP7B were significantly decreased; the expressions of cuproptosis-related proteins FDX1, LIAS, DLAT and DLST were all significantly decreased, whereas the expression of DLAT dimer is significantly increased; the mRNA expression levels of FDX1, LIAS, DLAT and DLD were significantly decreased; the mitochondrial function indicators JC-1 and ATP levels were significantly decreased and the tricarboxylic acid cycle indicators PDHA1 and CA levels were significantly decreased (all P<0.05). Compared with the Hypoxia group, all the above changes in the Hypoxia+NaHS group were significantly reversed by the therapeutic agent NaHS. CONCLUSION: H2S may regulate the FDX1-cuproptosis pathway, thereby affecting mitochondrial function and metabolism in lung tissue cells, alleviating pulmonary vasoconstriction and ameliorating pulmonary hypertension.

Key words: copper ion, pulmonary arterial hypertension, cuproptosis, hydrogen sulfide

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