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Computational approaches for network-based integrative multi-omics analysis
DOI:10.3389/fmolb.2022.967205.png)
摘要
En 中文
Advances in omics technologies allow for holistic studies into biological systems. These studies rely on integrative data analysis techniques to obtain a comprehensive view of the dynamics of cellular processes, and molecular mechanisms. Network-based integrative approaches have revolutionized multi-omics analysis by providing the framework to represent interactions between multiple different omics-layers in a graph, which may faithfully reflect the molecular wiring in a cell. Here we review network-based multi-omics/multi-modal integrative analytical approaches. We classify these approaches according to the type of omics data supported, the methods and/or algorithms implemented, their node and/or edge weighting components, and their ability to identify key nodes and subnetworks. We show how these approaches can be used to identify biomarkers, disease subtypes, crosstalk, causality, and molecular drivers of physiological and pathological mechanisms. We provide insight into the most appropriate methods and tools for research questions as showcased around the aetiology and treatment of COVID-19 that can be informed by multi-omics data integration. We conclude with an overview of challenges associated with multi-omics network-based analysis, such as reproducibility, heterogeneity, (biological) interpretability of the results, and we highlight some future directions for network-based integration.
Keyword:
multi-omics
data integration
multi-modal network
machine learning
network diffusion
propagation
network causal inference
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期刊
IF:
4
论文数:
6.0K
被引数:
2.0W
机构
引用论文
Network approaches to systems biology analysis of complex disease: integrative methods for multi-omics data复杂疾病系统生物学分析的网络方法: 多组学数据的综合方法
MOTA: Network-Based Multi-Omic Data Integration for Biomarker DiscoveryMOTA: 用于生物标志物发现的基于网络的多组学数据集成
METABOLITES
IF3.7

