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Structural features and bioavailability of four flavonoids and their implications for lifespan-extending and antioxidant actions in C. elegans

机译:四种类黄酮的结构特征和生物利用度及其对秀丽隐杆线虫寿命延长和抗氧化作用的影响

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摘要

Various studies have demonstrated longevity effects of flavonoids, a major sub-group of plant polyphenolic compounds, in Caenorhabditis elegans. To better understand their structure-activity relationship in vivo we have used a comparative approach by exposing C. elegans to the structurally related flavonoids myricetin, quercetin, kaempferol and naringenin, and assessed their impact on lifespan and on putative modes of action. The bioavailability of the tested flavonoids was demonstrated by high-performance liquid chromatography with diode-array detection (HPLC/DAD) and a 2-aminoethyl diphenyl borate-based in vivo approach. While all flavonols increased lifespan in wild-type, only myricetin elongated the mev-1(kn1) lifespan, suggesting that the flavonols antioxidant action alone is not sufficient for longevity. Structural prerequisites of high antioxidant action in vitro were also essential to reduce the reactive oxygen species (ROS) load in vivo in C. elegans and were tested in isolated mouse muscle mitochondria. Since the insulin/IGF-like signaling (IIS) cascade is a key regulator of lifespan, all compounds were tested for the ability to cause nuclear translocation of the FOXO transcription factor DAF-16 and changes in target gene expression. An increased DAF-16 translocation and sod-3 promoter activity were observed with all flavonoids but was independent of their ROS scavenging capability and their effects on lifespan.
机译:各种研究表明,类黄酮(Caenorhabditis elegans)是植物多酚化合物的主要亚类,其寿命长。为了更好地了解它们在体内的构效关系,我们采用了一种比较方法,将秀丽隐杆线虫暴露于结构相关的类黄酮杨梅素,槲皮素,山奈酚和柚皮素中,并评估它们对寿命和推定作用方式的影响。通过具有二极管阵列检测(HPLC / DAD)的高效液相色谱法和基于2-氨基乙基二苯基硼酸酯的体内方法证明了所测试类黄酮的生物利用度。虽然所有黄酮醇类均能延长野生型的寿命,但只有杨梅素才能延长mev-1(kn1)的寿命,这表明仅黄酮醇类的抗氧化作用不足以延长其寿命。体外高抗氧化作用的结构先决条件对于降低秀丽隐杆线虫体内的活性氧(ROS)负载也是必不可少的,并已在分离的小鼠肌肉线粒体中进行了测试。由于胰岛素/ IGF样信号传导(IIS)级联是生命的关键调节器,因此对所有化合物进行了测试,以测定引起FOXO转录因子DAF-16核转位和靶基因表达变化的能力。观察到所有类黄酮都有增加的DAF-16易位和sod-3启动子活性,但与它们的ROS清除能力及其对寿命的影响无关。

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