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用于减轻子痫前期线粒体氧化应激的二芳基腙的研发

Development of Diaryl Hydrazones for Alleviation of Mitochondrial Oxidative Stress in Preeclampsia.

作者信息

Mastyugin Maxim, Vlocskó R Bernadett, Zsengellér Zsuzsanna K, Török Béla, Török Marianna

机构信息

Department of Chemistry, University of Massachusetts Boston, 100 Morrissey Blvd., Boston, Massachusetts 02125, United States.

Department of Medicine, Beth Israel Deaconess Medical Center, Boston, Massachusetts 02215, United States.

出版信息

J Med Chem. 2025 May 22;68(10):10075-10091. doi: 10.1021/acs.jmedchem.5c00010. Epub 2025 May 7.

DOI:10.1021/acs.jmedchem.5c00010
PMID:40333076
Abstract

Preeclampsia is a pregnancy-specific syndrome, linked to oxidative stress, affecting 5-8% of pregnancies, with no effective treatment available. Here, diaryl-hydrazones have been designed, synthesized, and investigated as mitochondria-targeting antioxidants to reduce placental oxidative stress and mitigate preeclampsia symptoms. The design, based on density functional theory studies, revealed that conjugated electron structure with the NH-motif appeared to explain their effect. Thirty compounds were synthesized and tested in three assays, where they exhibited excellent radical scavenging activity, significantly greater than that of the standard, Trolox. Based on the data, eight compounds were selected for cell-based assays. Oxidative stress was induced in human trophoblast cells and assessed whether the compounds reduced downstream antiangiogenic responses using ascorbic acid and MitoTEMPO as standards. The pretreatment with the hydrazones reduced mitochondrial superoxide and sFLT-1 production in HO-exposed trophoblast cells, indicating that mitochondrial oxidative stress and the anti-angiogenic response can be alleviated by these compounds.

摘要

子痫前期是一种与妊娠相关的综合征,与氧化应激有关,影响5%至8%的妊娠,目前尚无有效的治疗方法。在此,二芳基腙已被设计、合成并作为线粒体靶向抗氧化剂进行研究,以减轻胎盘氧化应激并缓解子痫前期症状。基于密度泛函理论研究的设计表明,具有NH基序的共轭电子结构似乎可以解释它们的作用。合成了30种化合物并在三种测定中进行测试,它们表现出优异的自由基清除活性,明显高于标准品Trolox。根据这些数据,选择了8种化合物进行细胞试验。在人滋养层细胞中诱导氧化应激,并以抗坏血酸和MitoTEMPO作为标准评估这些化合物是否减少下游抗血管生成反应。用腙预处理可降低HO暴露的滋养层细胞中的线粒体超氧化物和sFLT-1的产生,表明这些化合物可减轻线粒体氧化应激和抗血管生成反应。

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