Beaudoin-Chabot Caroline, Wang Lei, Smarun Alexey V, Vidović Dragoslav, Shchepinov Mikhail S, Thibault Guillaume
School of Biological Sciences, Nanyang Technological University, Singapore, Singapore.
Retrotope Inc., Los Altos, CA, United States.
Front Physiol. 2019 May 28;10:641. doi: 10.3389/fphys.2019.00641. eCollection 2019.
Chemically reinforced essential fatty acids (FAs) promise to fight numerous age-related diseases including Alzheimer's, Friedreich's ataxia and other neurological conditions. The reinforcement is achieved by substituting the atoms of hydrogen at the bis-allylic methylene of these essential FAs with the isotope deuterium. This substitution leads to a significantly slower oxidation due to the kinetic isotope effect, inhibiting membrane damage. The approach has the advantage of preventing the harmful accumulation of reactive oxygen species (ROS) by inhibiting the propagation of lipid peroxidation while antioxidants potentially neutralize beneficial oxidative species. Here, we developed a model system to mimic the human dietary requirement of omega-3 in to study the role of deuterated polyunsaturated fatty acids (D-PUFAs). Deuterated trilinolenin [D-TG(54:9)] was sufficient to prevent the accumulation of lipid peroxides and to reduce the accumulation or ROS. Moreover, D-TG(54:9) significantly extended the lifespan of worms under normal and oxidative stress conditions. These findings demonstrate that D-PUFAs can be used as a food supplement to decelerate the aging process, resulting in extended lifespan.
化学强化的必需脂肪酸(FAs)有望对抗多种与年龄相关的疾病,包括阿尔茨海默病、弗里德赖希共济失调和其他神经疾病。这种强化是通过用同位素氘取代这些必需脂肪酸双烯丙基亚甲基上的氢原子来实现的。由于动力学同位素效应,这种取代导致氧化显著减慢,从而抑制膜损伤。该方法的优点是通过抑制脂质过氧化的传播来防止活性氧(ROS)的有害积累,而抗氧化剂可能会中和有益的氧化物质。在此,我们开发了一个模型系统来模拟人体对ω-3的饮食需求,以研究氘代多不饱和脂肪酸(D-PUFAs)的作用。氘代三亚麻酸[D-TG(54:9)]足以防止脂质过氧化物的积累并减少ROS的积累。此外,D-TG(54:9)在正常和氧化应激条件下显著延长了蠕虫的寿命。这些发现表明,D-PUFAs可以用作食品补充剂来减缓衰老过程,从而延长寿命。