首页> 外文期刊>Rejuvenation research >Curcumin extends life span, improves health span, and modulates the expression of age-associated aging genes in Drosophila melanogaster.
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Curcumin extends life span, improves health span, and modulates the expression of age-associated aging genes in Drosophila melanogaster.

机译:姜黄素可延长果蝇的寿命,改善健康状况并调节与年龄相关的衰老基因的表达。

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BACKGROUND: Curcumin, an extract from the rhizome of the plant Curcuma longa (turmeric), has been widely used as a spice and herbal medicine in Asia. It has been suggested to have many biological activities, such as antioxidative, antiinflammatory, anticancer, chemopreventive, and antineurodegenerative properties. We evaluated the impact of curcumin on life span, fecundity, feeding rate, oxidative stress, locomotion, and gene expression in two different wild-type Drosophila melanogaster strains, Canton-S and Ives, under two different experimental conditions. RESULTS: We report that curcumin extended the life span of two different strains of D. melanogaster, an effect that was accompanied by protection against oxidative stress, improvement in locomotion, and chemopreventive effects. Life span extension was gender and genotype specific. Curcumin also modulated the expression of several aging-related genes, including mth, thor, InR, and JNK. CONCLUSIONS: The observed positive effects of curcumin on life span and health span in two different D. melanogaster strains demonstrate a potential applicability of curcumin treatment in mammals. The ability of curcumin to mitigate the expression levels of age-associated genes in young flies suggests that the action of curcumin on these genes is a cause, rather than an effect, of its life span-extending effects.
机译:背景:姜黄素是一种植物姜黄(姜黄)的根茎提取物,在亚洲已广泛用作香料和草药。已经提出具有许多生物活性,例如抗氧化,抗炎,抗癌,化学预防和抗神经变性。我们评估了姜黄素在两种不同的实验条件下,对两种不同的野生果蝇果蝇菌株Canton-S和Ives的寿命,繁殖力,摄食率,氧化应激,运动和基因表达的影响。结果:我们报告姜黄素延长了D. melanogaster的两个不同菌株的寿命,这一作用伴随着对氧化应激的保护,运动能力的改善和化学预防作用。寿命延长是性别和基因型特有的。姜黄素还调节了一些衰老相关基因的表达,包括mth,thor,InR和JNK。结论:观察到姜黄素对两种不同D. melanogaster菌株的寿命和健康期的积极影响表明姜黄素治疗哺乳动物具有潜在的适用性。姜黄素减轻年轻果蝇中与年龄相关的基因表达水平的能力表明,姜黄素对这些基因的作用是其寿命延长作用的原因,而不是作用。

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