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Biomolecule and Bioentity Interaction Databases in Systems Biology: A Comprehensive Review

期刊

BIOMOLECULES
卷 11, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/biom11081245

关键词

biomedical networks; associations; biological interactions; network biology; databases; data integration

资金

  1. Hellenic Foundation for Research and Innovation (H.F.R.I) [1855-BOLOGNA]
  2. project The Greek Research Infrastructure for Personalised Medicine (pMedGR) - Operational Programme Competitiveness, Entrepreneurship and Innovation (NSRF 2014-2020) [MIS 5002802]
  3. European Union (European Regional Development Fund)

向作者/读者索取更多资源

The advances in high-throughput technologies have led to a significant growth in complex biological datasets which provide evidence of various biomolecular interactions. To manage this data flood, computational methods, web services, and databases have been developed. However, as the number of datasets increase, it becomes harder for end users to understand the scope and focus of each repository and the level of redundancy between them.
Technological advances in high-throughput techniques have resulted in tremendous growth of complex biological datasets providing evidence regarding various biomolecular interactions. To cope with this data flood, computational approaches, web services, and databases have been implemented to deal with issues such as data integration, visualization, exploration, organization, scalability, and complexity. Nevertheless, as the number of such sets increases, it is becoming more and more difficult for an end user to know what the scope and focus of each repository is and how redundant the information between them is. Several repositories have a more general scope, while others focus on specialized aspects, such as specific organisms or biological systems. Unfortunately, many of these databases are self-contained or poorly documented and maintained. For a clearer view, in this article we provide a comprehensive categorization, comparison and evaluation of such repositories for different bioentity interaction types. We discuss most of the publicly available services based on their content, sources of information, data representation methods, user-friendliness, scope and interconnectivity, and we comment on their strengths and weaknesses. We aim for this review to reach a broad readership varying from biomedical beginners to experts and serve as a reference article in the field of Network Biology.

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