组学
再生(生物学)
代谢组学
表观遗传学
计算生物学
蛋白质组学
数据科学
基因组学
计算机科学
生物
神经科学
生物信息学
基因组
遗传学
基因表达
基因
DNA甲基化
作者
Liuxi Chu,Wenjia Wang,Xinpei Gu,Ping Wu,Chen Gao,Q. Y. Zhang,Jia Wu,Dawei Jiang,Junqing Huang,Xinwang Ying,Jiamen Shen,Yiyi Jiang,Lihua Luo,Jun‐Peng Xu,Yi-Bo Ying,Haoman Chen,Ao Fang,Zunyong Feng,Shuhong An,Xiaokun Li
标识
DOI:10.1186/s40779-024-00537-4
摘要
Aging and regeneration represent complex biological phenomena that have long captivated the scientific community. To fully comprehend these processes, it is essential to investigate molecular dynamics through a lens that encompasses both spatial and temporal dimensions. Conventional omics methodologies, such as genomics and transcriptomics, have been instrumental in identifying critical molecular facets of aging and regeneration. However, these methods are somewhat limited, constrained by their spatial resolution and their lack of capacity to dynamically represent tissue alterations. The advent of emerging spatiotemporal multi-omics approaches, encompassing transcriptomics, proteomics, metabolomics, and epigenomics, furnishes comprehensive insights into these intricate molecular dynamics. These sophisticated techniques facilitate accurate delineation of molecular patterns across an array of cells, tissues, and organs, thereby offering an in-depth understanding of the fundamental mechanisms at play. This review meticulously examines the significance of spatiotemporal multi-omics in the realms of aging and regeneration research. It underscores how these methodologies augment our comprehension of molecular dynamics, cellular interactions, and signaling pathways. Initially, the review delineates the foundational principles underpinning these methods, followed by an evaluation of their recent applications within the field. The review ultimately concludes by addressing the prevailing challenges and projecting future advancements in the field. Indubitably, spatiotemporal multi-omics are instrumental in deciphering the complexities inherent in aging and regeneration, thus charting a course toward potential therapeutic innovations.
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