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首页> 外文期刊>Food Chemistry >Extension of life-span using a RNAi model and in vivo antioxidant effect of Opuntia fruit extracts and pure betalains in Caenorhabditis elegans
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Extension of life-span using a RNAi model and in vivo antioxidant effect of Opuntia fruit extracts and pure betalains in Caenorhabditis elegans

机译:使用线虫(RNAi)模型延长寿命,以及秀丽隐杆线虫中仙人掌果实提取物和纯甜菜碱的体内抗氧化作用

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摘要

Betalains are nitrogenous plant pigments known for their high antioxidant capacity. For the first time, this antioxidant nature has been studied in an in vivo system using the model organism Caenorhabditis elegans. The oxidative stress caused in the fluorescent strain TJ375 (hsp-16.2::GFP) was reversed by the presence of both natural and semi-synthetic betalains, with an ED50 value around 25 mu M for betacyanins and up to 10 mu M for betaxanthins, with indicaxanthin, the major pigments in prickly pear fruits, as the most effective betalain. The effect of model betalains on the lifespan of the wild-type N2 strain was carefully studied using the automatic platform "Lifespan Machine". In a search for different approaches to suppress progeny, pop-1 RNAi was used to avoid FUdR use. The presence of betalains in the medium, both as pure compounds and as enriched Opuntia extracts significantly increased the lifespan of C. elegans.
机译:甜菜素是含氮植物色素,以其高抗氧化能力而闻名。首次使用模型生物秀丽隐杆线虫(Caenorhabditis elegans)在体内系统中研究了这种抗氧化剂的性质。天然和半合成甜菜碱的存在可逆转荧光菌株TJ375(hsp-16.2 :: GFP)引起的氧化应激,甜菜碱的ED50值约为25μM,虾青素的ED50值高达10μM,含洋花黄素是刺梨果实中的主要色素,是最有效的甜菜碱。使用自动平台“ Lifespan Machine”仔细研究了模型甜菜碱对野生型N2菌株寿命的影响。为了寻找抑制后代的不同方法,使用了pop-1 RNAi来避免使用FUdR。培养基中既有纯化合物又有丰富的仙人掌提取物,甜菜碱的存在显着提高了秀丽隐杆线虫的寿命。

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