Department of Experimental Medicine, University of Lleida-Lleida Biomedical Research Institute (UdL-IRBLleida), Lleida, Spain.
Research Support Unit (USR) Lleida, Primary Care Services, Catalan Health Institute (ICS), Lleida, Spain.
Aging Cell. 2023 Jun;22(6):e13821. doi: 10.1111/acel.13821. Epub 2023 Mar 23.
Aging biology entails a cell/tissue deregulated metabolism that affects all levels of biological organization. Therefore, the application of "omic" techniques that are closer to phenotype, such as metabolomics, to the study of the aging process should be a turning point in the definition of cellular processes involved. The main objective of the present study was to describe the changes in plasma metabolome associated with biological aging and the role of sex in the metabolic regulation during aging. A high-throughput untargeted metabolomic analysis was applied in plasma samples to detect hub metabolites and biomarkers of aging incorporating a sex/gender perspective. A cohort of 1030 healthy human adults (45.9% females, and 54.1% males) from 50 to 98 years of age was used. Results were validated using two independent cohorts (1: n = 146, 53% females, 30-100 years old; 2: n = 68, 70% females, 19-107 years old). Metabolites related to lipid and aromatic amino acid (AAA) metabolisms arose as the main metabolic pathways affected by age, with a high influence of sex. Globally, we describe changes in bioenergetic pathways that point to a decrease in mitochondrial β-oxidation and an accumulation of unsaturated fatty acids and acylcarnitines that could be responsible for the increment of oxidative damage and inflammation characteristic of this physiological process. Furthermore, we describe for the first time the importance of gut-derived AAA catabolites in the aging process describing novel biomarkers that could contribute to better understand this physiological process but also age-related diseases.
衰老生物学涉及细胞/组织代谢失调,影响生物组织的各个层次。因此,将更接近表型的“组学”技术(如代谢组学)应用于衰老过程的研究,应该是定义所涉及细胞过程的一个转折点。本研究的主要目的是描述与生物衰老相关的血浆代谢组学变化,以及性别在衰老过程中的代谢调节中的作用。本研究采用高通量非靶向代谢组学分析方法,检测纳入性别视角的与衰老相关的血浆代谢组学变化的关键代谢物和生物标志物。研究使用了一个由 1030 名健康成年人组成的队列(女性占 45.9%,男性占 54.1%),年龄在 50 至 98 岁之间。使用两个独立的队列(1:n=146,女性占 53%,年龄在 30-100 岁之间;2:n=68,女性占 70%,年龄在 19-107 岁之间)对结果进行了验证。研究结果表明,与脂质和芳香族氨基酸(AAA)代谢相关的代谢物是受年龄影响最大的主要代谢途径,性别对其影响很大。总体而言,我们描述了生物能量途径的变化,这些变化表明线粒体β-氧化减少,不饱和脂肪酸和酰基肉碱积累,这可能是导致这种生理过程中氧化损伤和炎症增加的原因。此外,我们首次描述了肠道衍生的 AAA 分解代谢物在衰老过程中的重要性,描述了一些新的生物标志物,这些标志物有助于更好地理解这一生理过程,也有助于了解与年龄相关的疾病。