Filippopoulou Konstantina, Papaevgeniou Nikoletta, Lefaki Maria, Paraskevopoulou Anna, Biedermann David, Křen Vladimír, Chondrogianni Niki
Institute of Biology, Medicinal Chemistry and Biotechnology, National Hellenic Research Foundation, 48 Vassileos Constantinou Ave., Athens 11635, Greece.
Institute of Biology, Medicinal Chemistry and Biotechnology, National Hellenic Research Foundation, 48 Vassileos Constantinou Ave., Athens 11635, Greece; Institute of Nutrition, Faculty of Biology and Pharmacy, Friedrich Schiller University of Jena, 25 Dornburger Str., 07743 Jena , Germany.
Free Radic Biol Med. 2017 Feb;103:256-267. doi: 10.1016/j.freeradbiomed.2016.12.042. Epub 2016 Dec 28.
Aging is an unavoidable process characterized by gradual failure of homeostasis that constitutes a critical risk factor for several age-related disorders. It has been unveiled that manipulation of various key pathways may decelerate the aging progression and the triggering of age-related diseases. As a consequence, the identification of compounds, preferably natural-occurring, administered through diet, with lifespan-extending, anti-aggregation and anti-oxidation properties that in parallel exhibit negligible side-effects is the main goal in the battle against aging. Here we analyze the role of 2,3-dehydrosilybin A/B (DHS A/B), a minor component of silymarin used in a plethora of dietary supplements. This flavonolignan is well-known for its anti-oxidative and neuroprotective properties, among others. We demonstrate that DHS A/B confers oxidative stress resistance not only in human primary cells but also in the context of a multi-cellular aging model, namely Caenorhabditis elegans (C. elegans) where it also promotes lifespan extension. We reveal that these DHS A/B outcomes are FGT-1 and DAF-16 dependent. We additionally demonstrate the anti-aggregation properties of DHS A/B in human cells of nervous origin but also in nematode models of Alzheimer's disease (AD), eventually leading to decelerated progression of AD phenotype. Our results identify DHS A/B as the active component of silymarin extract and propose DHS A/B as a candidate anti-aging and anti-aggregation compound.
衰老 是一个不可避免的过程,其特征是体内稳态逐渐失调,这是多种与年龄相关疾病的关键风险因素。据揭示,操纵各种关键途径可能会减缓衰老进程并引发与年龄相关的疾病。因此,确定化合物,最好是天然存在的、通过饮食摄入的、具有延长寿命、抗聚集和抗氧化特性且副作用可忽略不计的化合物,是抗衰老斗争的主要目标。在这里,我们分析了2,3-脱氢水飞蓟宾A/B(DHS A/B)的作用,它是水飞蓟素的一种次要成分,在大量膳食补充剂中使用。这种黄酮木脂素以其抗氧化和神经保护特性等而闻名。我们证明,DHS A/B不仅在人类原代细胞中赋予氧化应激抗性,而且在多细胞衰老模型秀丽隐杆线虫(C. elegans)的背景下也具有这种作用,在该模型中它还能延长寿命。我们发现这些DHS A/B的结果依赖于FGT-1和DAF-16。我们还证明了DHS A/B在神经源性人类细胞以及阿尔茨海默病(AD)线虫模型中的抗聚集特性,最终导致AD表型进展减缓。我们的结果确定DHS A/B为水飞蓟素提取物的活性成分,并提出DHS A/B作为一种抗衰老和抗聚集化合物的候选物。