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Integrative multi-omics and systems bioinformatics in translational neuroscience:A data mining perspective

摘要Bioinformatic analysis of large and complex omics datasets has become increasingly useful in modern day biology by providing a great depth of information,with its application to neuroscience termed neuroinformatics.Data mining of omics datasets has enabled the generation of new hypotheses based on differentially regulated biological molecules associated with disease mechanisms,which can be tested experimentally for improved diagnostic and therapeutic targeting of neurodegenerative diseases.Importantly,integrating multi-omics data using a systems bioinformatics approach will advance the understanding of the layered and interactive network of biological regulation that exchanges systemic knowledge to facilitate the development of a comprehensive human brain profile.In this review,we first summarize data mining studies utilizing datasets from the individual type of omics analysis,including epigenetics/epigenomics,transcriptomics,proteomics,metabolomics,lipidomics,and spatial omics,pertaining to Alzheimer's disease,Parkinson's disease,and multiple sclerosis.We then discuss multi-omics integration approaches,including independent biological integration and unsupervised integra-tion methods,for more intuitive and informative interpretation of the biological data obtained across different omics layers.We further assess studies that integrate multi-omics in data mining which provide convoluted biological insights and offer proof-of-concept proposition towards systems bioinformatics in the reconstruction of brain networks.Finally,we recommend a combination of high dimensional bio-informatics analysis with experimental validation to achieve translational neuroscience applications including biomarker discovery,therapeutic development,and elucidation of disease mechanisms.We conclude by providing future perspectives and opportunities in applying integrative multi-omics and systems bioinformatics to achieve precision phenotyping of neurodegenerative diseases and towards personalized medicine.

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作者 Lance M.O'Connor [1] Blake A.O'Connor [2] Su Bin Lim [3] Jialiu Zeng [4] Chih Hung Lo [4] 学术成果认领
作者单位 College of Biological Sciences,University of Minnesota,Minneapolis,MN,55455,USA [1] School of Pharmacy,University of Wisconsin,Madison,WI,53705,USA [2] Department of Biochemistry and Molecular Biology,Ajou University School of Medicine,Suwon,16499,South Korea [3] Lee Kong Chian School of Medicine,Nanyang Technological University,Singapore,308232,Singapore [4]
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DOI 10.1016/j.jpha.2023.06.011
发布时间 2023-11-13(万方平台首次上网日期,不代表论文的发表时间)
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药物分析学报(英文版)

药物分析学报(英文版)

2023年13卷8期

836-850页

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