从机制上理解地塞米松介导的对雷米替韦所致肝毒性的保护作用。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-06-18 DOI:10.1124/molpharm.124.000894
Kaiyan Liu, Zhihui Li, Linhao Li, Scott Heyward, Shelley R Wang, Ling He, Hongbing Wang
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引用次数: 0

摘要

雷米替韦(RDV)是一种广谱抗病毒药物,通常与地塞米松(DEX)一起用于需要呼吸支持的住院 COVID-19 患者。潜在的肝脏药物不良反应是与使用 RDV 相关的一个安全问题。我们曾报道过,在培养的人原代肝细胞(HPH)和住院的 COVID-19 患者中,DEX 联合治疗可有效减轻 RDV 引起的肝毒性,并分别降低血清 ALT 和 AST 水平的升高。然而,这种保护性药物-药物相互作用背后的确切机制在很大程度上仍然未知。我们在此表明,通过激活 p38、c-Jun N 端激酶(JNK)和细胞外信号调节激酶 1 和 2(ERK1/2)信号,RDV 可诱导细胞凋亡(裂解 caspases 8、9 和 3)、自噬(自噬体和 LC3-II 增加)和线粒体损伤(膜电位、呼吸、ATP 水平降低,Bax 和释放的细胞色素 C 表达增加)。重要的是,联合使用 DEX 可部分逆转 RDV 诱导的细胞凋亡、自噬和细胞死亡。从机理上讲,DEX通过增强双特异性蛋白磷酸酶1(DUSP1)(一种丝裂原活化蛋白激酶(MAPK)磷酸酶)的表达,以糖皮质激素受体(GR)依赖的方式使p38、JNK和ERK1/2信号失活/去磷酸化。在 HPH 中敲除 GR 可减弱 DEX 介导的 DUSP1 诱导、MAPK 去磷酸化以及对 RDV 引起的肝毒性的保护作用。总之,我们的研究结果表明了一种分子机制,即DEX通过调节GR-DUSP1-MAPK调控轴来减轻RDV对肝脏的不良影响。意义声明 该研究揭示了地塞米松在COVID-19治疗中抵御雷米替韦相关肝损伤的分子机制。
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Mechanistic Understanding of Dexamethasone-Mediated Protection against Remdesivir-Induced Hepatotoxicity.

Remdesivir (RDV), a broad-spectrum antiviral agent, is often used together with dexamethasone (DEX) for hospitalized COVID-19 patients requiring respiratory support. Potential hepatic adverse drug reaction is a safety concern associated with the use of RDV. We previously reported that DEX cotreatment effectively mitigates RDV-induced hepatotoxicity and reduces elevated serum alanine aminotransferase and aspartate aminotransferase levels in cultured human primary hepatocytes (HPH) and hospitalized COVID-19 patients, respectively. Yet, the precise mechanism behind this protective drug-drug interaction remains largely unknown. Here, we show that through the activation of p38, c-Jun N-terminal kinase (JNK), and extracellular signal-regulated kinases 1 and 2 (ERK1/2) signaling, RDV induces apoptosis (cleavage of caspases 8, 9, and 3), autophagy (increased autophagosome and LC3-II), and mitochondrial damages (decreased membrane potential, respiration, ATP levels, and increased expression of Bax and the released cytosolic cytochrome C) in HPH. Importantly, cotreatment with DEX partially reversed RDV-induced apoptosis, autophagy, and cell death. Mechanistically, DEX deactivates/dephosphorylates p38, JNK, and ERK1/2 signaling by enhancing the expression of dual specificity protein phosphatase 1 (DUSP1), a mitogen-activated protein kinase (MAPK) phosphatase, in a glucocorticoid receptor (GR)-dependent manner. Knockdown of GR in HPH attenuates DEX-mediated DUSP1 induction, MAPK dephosphorylation, as well as protection against RDV-induced hepatotoxicity. Collectively, our findings suggest a molecular mechanism by which DEX modulates the GR-DUSP1-MAPK regulatory axis to alleviate the adverse actions of RDV in the liver. SIGNIFICANCE STATEMENT: The research uncovers the molecular mechanisms by which dexamethasone safeguards against remdesivir-associated liver damage in the context of COVID-19 treatment.

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