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发现十五种新的具有老年保护作用的植物提取物,并鉴定它们所影响的细胞过程,这些过程可延长出芽酵母的时序寿命。

Discovery of fifteen new geroprotective plant extracts and identification of cellular processes they affect to prolong the chronological lifespan of budding yeast.

作者信息

Dakik Pamela, Rodriguez Monica Enith Lozano, Junio Jennifer Anne Baratang, Mitrofanova Darya, Medkour Younes, Tafakori Tala, Taifour Tarek, Lutchman Vicky, Samson Eugenie, Arlia-Ciommo Anthony, Rukundo Belise, Simard Éric, Titorenko Vladimir I

机构信息

Department of Biology, Concordia University, Montreal, Quebec H4B 1R6, Canada.

Idunn Technologies Inc., Rosemere, Quebec J7A 4A5, Canada.

出版信息

Oncotarget. 2020 Jun 9;11(23):2182-2203. doi: 10.18632/oncotarget.27615.

Abstract

In a quest for previously unknown geroprotective natural chemicals, we used a robust cell viability assay to search for commercially available plant extracts that can substantially prolong the chronological lifespan of budding yeast. Many of these plant extracts have been used in traditional Chinese and other herbal medicines or the Mediterranean and other customary diets. Our search led to a discovery of fifteen plant extracts that significantly extend the longevity of chronologically aging yeast not limited in calorie supply. We show that each of these longevity-extending plant extracts is a geroprotector that decreases the rate of yeast chronological aging and promotes a hormetic stress response. We also show that each of the fifteen geroprotective plant extracts mimics the longevity-extending, stress-protecting, metabolic and physiological effects of a caloric restriction diet but if added to yeast cultured under non-caloric restriction conditions. We provide evidence that the fifteen geroprotective plant extracts exhibit partially overlapping effects on a distinct set of longevity-defining cellular processes. These effects include a rise in coupled mitochondrial respiration, an altered age-related chronology of changes in reactive oxygen species abundance, protection of cellular macromolecules from oxidative damage, and an age-related increase in the resistance to long-term oxidative and thermal stresses.

摘要

为了寻找此前未知的具有老年保护作用的天然化学物质,我们采用了一种可靠的细胞活力检测方法,来寻找能够显著延长出芽酵母时序寿命的市售植物提取物。这些植物提取物中有许多已被用于传统中药和其他草药,或地中海及其他传统饮食中。我们的研究发现了15种植物提取物,它们能显著延长不受热量供应限制的时序老化酵母的寿命。我们表明,这些延长寿命的植物提取物中的每一种都是一种老年保护剂,可降低酵母时序老化的速率,并促进一种应激性应激反应。我们还表明,这15种具有老年保护作用的植物提取物中的每一种都能模拟热量限制饮食对寿命延长、应激保护、代谢和生理的影响,但前提是添加到在非热量限制条件下培养的酵母中。我们提供的证据表明,这15种具有老年保护作用的植物提取物对一组不同的决定寿命的细胞过程表现出部分重叠的作用。这些作用包括耦合线粒体呼吸的增加、活性氧丰度变化的与年龄相关的时间顺序改变、保护细胞大分子免受氧化损伤,以及与年龄相关的对长期氧化和热应激抵抗力的增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df06/7289529/ff30a612cdec/oncotarget-11-2182-g001.jpg

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