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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Piquiá Shells (Caryocar villosum): A Fruit by-Product with Antioxidant and Antiaging Properties in Caenorhabditis elegans
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Piquiá Shells (Caryocar villosum): A Fruit by-Product with Antioxidant and Antiaging Properties in Caenorhabditis elegans

机译:Piquiá贝壳(Caryocar Villosum):具有抗氧化和援引秀丽隐杆线虫的抗氧化和抗氧化性能的果实副产物

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摘要

In a context of rising demand for sustainable antiaging interventions, fruit processing by-products are a promising source of bioactive compounds for the production of antiaging dietary supplements. Piquiá (Caryocar villosum) is a native Amazonian fruit consisting of 65% nonedible shells. In the present study, the phytochemical profile of a hydroalcoholic extract of piquiá shells (CV) was characterized by LC-MS/MS analysis. Its antioxidant and antiaging activities were investigated using the nematode Caenorhabditis elegans as an in vivo model. CV is mainly composed by hydrolysable tannins and triterpenoid saponins. The extract enhanced stress resistance of wild-type and mutant worms by reducing the intracellular levels of reactive oxygen species (ROS) and by increasing their survival against a lethal dose of the prooxidant juglone. These effects involved the upregulation of sod-3 and downregulation of gst-4 and hsp-16.2, studied through the GFP fluorescent reporter intensity and at the transcriptional level by qRT-PCR analysis. CV extended the lifespan of wild-type worms in a DAF-16/FoxO- and SKN-1/Nrf-dependent manner. Taken together, our findings indicate piquiá shells as potential candidates for nutraceutical applications. Further studies are needed to validate the relevance of our findings to antiaging interventions in humans.
机译:在对可持续的抗衰血干预的需求上升的背景下,果实加工副产品是用于生产抗衰液膳食补充剂的生物活性化合物的有希望的源。 Piquiá(Caryocar Villosum)是一个本土的亚马逊水果,包括65%的非洲壳。在本研究中,通过LC-MS / MS分析表征了Piquiá壳(CV)的水醇提取物的植物化学分布。通过在体内模型中使用Nematode caenorhabdise elegans来研究其抗氧化和抗氧化活性。 CV主要由可水解的单宁和三萜类皂苷组成。通过降低反应性氧物质(ROS)的细胞内水平并通过增加致死剂量的致致死juglone的致命剂量来提高野生型和突变虫的应力阻力。这些效果涉及通过GFP荧光报告机强度和通过QRT-PCR分析研究SOD-3和HSP-16.2的SOD-3和HSP-16.2的下调和下调。 CV以DAF-16 / FOXO和SKN-1 / NRF依赖性方式延伸野生型蠕虫的寿命。我们的研究结果结合在一起,表明Piquiá贝壳是营养保健型应用的潜在候选者。需要进一步的研究来验证我们对人类的对抗干预措施的结果的相关性。

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