组学
微生物群
计算生物学
代谢组学
生物标志物发现
系统生物学
老化
生物
健康衰老
仿形(计算机编程)
基因组学
生物标志物
精密医学
蛋白质组
表观遗传学
蛋白质组学
生物信息学
人类遗传学
个性化医疗
健康老龄化
诊断生物标志物
生物网络
基因组
蛋白质基因组学
物候学
生物途径
转化研究
人体微生物群
人体生理学
代谢组
模式生物
数据科学
计算机科学
作者
Eva Kočar,Robert Šket,Ana Halužan Vasle,Gorazd Avguštin,Evgen Benedik,Barbara Koroušić Seljak,Pavle Simić,Antonio Martinko,Shawnda A. Morrison,Maroje Sorić,Mihaela Skrt,Tomaž Polak,Tine Tesovnik,Barbara Jenko Bizjan,Jernej Kovač,Tadej Battelino,Damjana Rozman,Nataša Poklar Ulrih,Bojana Bogovič Matijašić,Gregor Jurak
标识
DOI:10.1016/j.arr.2025.102988
摘要
Biological ageing is a systemic, multifactorial process driven by progressive molecular and cellular alterations whose complexity necessitates systems-level approaches. Advances in high-throughput omics technologies now allow simultaneous quantification of millions of biomolecules from a single specimen, enabling longitudinal, integrative profiling across multiple molecular layers. This review synthesizes recent progress in applying genomics, epigenomics, metabolomics and microbiomics to ageing research, highlighting their contributions to biomarker discovery, mechanistic insight, and translational opportunities. Genomic studies reveal genetic variants that promote extreme longevity, while epigenetic clocks provide robust predictors of biological age. The blood proteome can be used to calculate proteome-based scores and evaluate temporal changes in ageing trajectories in an organ- and sex-specific manner. Metabolomic signatures identify key metabolites reflecting ageing trajectories, and microbiome research demonstrates that gut microbial composition mirrors and modulates biological ageing, with microbiome clocks emerging. The omics approaches have further elucidated the impact of exercise and diet providing evidence that interventions can reduce biological age. The integration of multi-omics with clinical and lifestyle data, powered by machine learning and artificial intelligence, is paving the way for a holistic definition of biological age and the development of personalized healthy ageing strategies. This review highlights how the omics technologies and computational modelling are transforming ageing biology into strategies for personalized healthy ageing.
科研通智能强力驱动
Strongly Powered by AbleSci AI