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首页> 外文期刊>Hormone and Metabolic Research >Lonidamine extends lifespan of adult Caenorhabditis elegans by increasing the formation of mitochondrial reactive oxygen species.
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Lonidamine extends lifespan of adult Caenorhabditis elegans by increasing the formation of mitochondrial reactive oxygen species.

机译:洛尼达明可通过增加线粒体活性氧的形成来延长成人秀丽隐杆线虫的寿命。

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Compounds that delay aging in model organisms may be of significant interest to antiaging medicine, since these substances potentially provide pharmaceutical approaches to promote healthy lifespan in humans. The aim of the study was to test whether pharmaceutical concentrations of the glycolytic inhibitor lonidamine are capable of extending lifespan in a nematodal model organism for aging processes, the roundworm Caenorhabditis elegans. Several hundreds of adult C. elegans roundworms were maintained on agar plates and fed E. coli strain OP50 bacteria. Lonidamine was applied to test whether it may promote longevity by quantifying survival in the presence and absence of the compound. In addition, several biochemical and metabolic assays were performed with nematodes exposed to lonidamine. Lonidamine significantly extends both median and maximum lifespan of C. elegans when applied at a concentration of 5 micromolar by 8% each. Moreover, the compound increases paraquat stress resistance, and promotes mitochondrial respiration, culminating in increased formation of reactive oxygen species (ROS). Extension of lifespan requires activation of pmk-1, an orthologue of p38 MAP kinase, and is abolished by co-application of an antioxidant, indicating that increased ROS formation is required for the extension of lifespan by lonidamine. Consistent with the concept of mitohormesis, lonidamine is capable of promoting longevity in a pmk-1 sensitive manner by increasing formation of ROS.
机译:延缓模型生物衰老的化合物可能是抗衰老医学的重要兴趣,因为这些物质可能提供药物途径来促进人类健康的寿命。该研究的目的是测试糖酵解抑制剂lonidamine的药物浓度是否能够延长线虫模型秀丽线虫秀丽隐杆线虫的线虫模型生物的寿命。将数百个成年秀丽隐杆线虫round虫维持在琼脂平板上,并饲喂大肠杆菌菌株OP50细菌。通过定量在存在和不存在该化合物的情况下,将洛尼达明用于测试其是否可以延长寿命。另外,用暴露于lonidamine的线虫进行了几种生化和代谢测定。当以5微摩尔浓度分别以8%的浓度施用时,洛尼达明可显着延长线虫的中位寿命和最大寿命。此外,该化合物提高了对百草枯的抗逆性,并促进线粒体呼吸,最终导致活性氧(ROS)形成增加。延长寿命需要激活p38 MAP激酶的直向同源基因pmk-1,并通过共用抗氧化剂而被废除,这表明通过长效多巴胺延长寿命需要增加ROS的形成。与线粒体增生的概念一致,lonidamine能够通过增加ROS的形成,以pmk-1敏感方式延长寿命。

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