Cellular Neurophysiology, Hanover Medical School, Carl-Neuberg-Straße 1, 30625, Hannover, Germany.
Preclinical Molecular Imaging, Department of Nuclear Medicine, Hanover Medical School, Carl-Neuberg-Straße 1, 30625, Hannover, Germany.
Geroscience. 2021 Apr;43(2):673-690. doi: 10.1007/s11357-020-00310-0. Epub 2021 Jan 31.
Ageing provokes a plethora of molecular, cellular and physiological deteriorations, including heart failure, neurodegeneration, metabolic maladaptation, telomere attrition and hair loss. Interestingly, on the molecular level, the capacity to induce autophagy, a cellular recycling and cleaning process, declines with age across a large spectrum of model organisms and is thought to be responsible for a subset of age-induced changes. Here, we show that a 6-month administration of the natural autophagy inducer spermidine in the drinking water to aged mice is sufficient to significantly attenuate distinct age-associated phenotypes. These include modulation of brain glucose metabolism, suppression of distinct cardiac inflammation parameters, decreased number of pathological sights in kidney and liver and decrease of age-induced hair loss. Interestingly, spermidine-mediated age protection was associated with decreased telomere attrition, arguing in favour of a novel cellular mechanism behind the anti-ageing effects of spermidine administration.
衰老会引发大量的分子、细胞和生理恶化,包括心力衰竭、神经退行性变、代谢适应不良、端粒磨损和脱发。有趣的是,在分子水平上,诱导自噬的能力——一种细胞回收和清洁过程——在很大范围的模式生物中随着年龄的增长而下降,并且被认为是导致一部分与年龄相关变化的原因。在这里,我们表明,在饮用水中连续 6 个月给老年小鼠施用天然自噬诱导剂 spermidine,足以显著减轻多种与年龄相关的表型。这些表型包括调节大脑葡萄糖代谢、抑制特定的心脏炎症参数、减少肾脏和肝脏的病理部位数量以及减少与年龄相关的脱发。有趣的是,spermidine 介导的抗衰老作用与端粒磨损减少有关,这支持了 spermidine 给药抗衰老作用背后存在一种新的细胞机制。