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- W2000263957 abstract "Several decades of molecular biology research have delivered a wealth of detailed descriptions of molecular interactions in normal and tumour cells. This knowledge has been functionally organised and assembled into dedicated biological pathway resources that serve as an invaluable tool, not only for structuring the information about molecular interactions but also for making it available for biological, clinical and computational studies. With the advent of high-throughput molecular profiling of tumours, close to complete molecular catalogues of mutations, gene expression and epigenetic modifications are available and require adequate interpretation. Taking into account the information about biological signalling machinery in cells may help to better interpret molecular profiles of tumours. Making sense out of these descriptions requires biological pathway resources for functional interpretation of the data. In this review, we describe the available biological pathway resources, their characteristics in terms of construction mode, focus, aims and paradigms of biological knowledge representation. We present a new resource that is focused on cancer-related signalling, the Atlas of Cancer Signalling Networks. We briefly discuss current approaches for data integration, visualisation and analysis, using biological networks, such as pathway scoring, guilt-by-association and network propagation. Finally, we illustrate with several examples the added value of data interpretation in the context of biological networks and demonstrate that it may help in analysis of high-throughput data like mutation, gene expression or small interfering RNA screening and can guide in patients stratification. Finally, we discuss perspectives for improving precision medicine using biological network resources and tools. Taking into account the information about biological signalling machinery in cells may help to better interpret molecular patterns of tumours and enable to put precision oncology into general clinical practice." @default.
- W2000263957 created "2016-06-24" @default.
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- W2000263957 creator A5090834732 @default.
- W2000263957 creator A5091794519 @default.
- W2000263957 date "2015-02-16" @default.
- W2000263957 modified "2023-09-25" @default.
- W2000263957 title "The shortest path is not the one you know: application of biological network resources in precision oncology research" @default.
- W2000263957 cites W1963912235 @default.
- W2000263957 cites W1965930610 @default.
- W2000263957 cites W1969325859 @default.
- W2000263957 cites W1981289215 @default.
- W2000263957 cites W1981358906 @default.
- W2000263957 cites W1982301696 @default.
- W2000263957 cites W1984675437 @default.
- W2000263957 cites W1985638918 @default.
- W2000263957 cites W1985928174 @default.
- W2000263957 cites W1986672866 @default.
- W2000263957 cites W1994075309 @default.
- W2000263957 cites W2003516452 @default.
- W2000263957 cites W2009720434 @default.
- W2000263957 cites W2011356131 @default.
- W2000263957 cites W2012622320 @default.
- W2000263957 cites W2015407742 @default.
- W2000263957 cites W2017138237 @default.
- W2000263957 cites W2017569895 @default.
- W2000263957 cites W2023098599 @default.
- W2000263957 cites W2034109467 @default.
- W2000263957 cites W2038122249 @default.
- W2000263957 cites W2040676413 @default.
- W2000263957 cites W2041289840 @default.
- W2000263957 cites W2044433401 @default.
- W2000263957 cites W2046434400 @default.
- W2000263957 cites W2052926507 @default.
- W2000263957 cites W2057626690 @default.
- W2000263957 cites W2058451329 @default.
- W2000263957 cites W2062259606 @default.
- W2000263957 cites W2062533676 @default.
- W2000263957 cites W2072761001 @default.
- W2000263957 cites W2079187345 @default.
- W2000263957 cites W2080719056 @default.
- W2000263957 cites W2096283457 @default.
- W2000263957 cites W2096766502 @default.
- W2000263957 cites W2098493765 @default.
- W2000263957 cites W2103017472 @default.
- W2000263957 cites W2103033592 @default.
- W2000263957 cites W2104343339 @default.
- W2000263957 cites W2105325784 @default.
- W2000263957 cites W2105924489 @default.
- W2000263957 cites W2110992797 @default.
- W2000263957 cites W2111413836 @default.
- W2000263957 cites W2111709677 @default.
- W2000263957 cites W2115070704 @default.
- W2000263957 cites W2117692326 @default.
- W2000263957 cites W2119220491 @default.
- W2000263957 cites W2119876770 @default.
- W2000263957 cites W2122863289 @default.
- W2000263957 cites W2125118217 @default.
- W2000263957 cites W2125414037 @default.
- W2000263957 cites W2128916321 @default.
- W2000263957 cites W2129042929 @default.
- W2000263957 cites W2130410032 @default.
- W2000263957 cites W2133465414 @default.
- W2000263957 cites W2134394193 @default.
- W2000263957 cites W2134508297 @default.
- W2000263957 cites W2135857985 @default.
- W2000263957 cites W2142302575 @default.
- W2000263957 cites W2143969914 @default.
- W2000263957 cites W2144510218 @default.
- W2000263957 cites W2154947819 @default.
- W2000263957 cites W2158384363 @default.
- W2000263957 cites W2159183769 @default.
- W2000263957 cites W2159482845 @default.
- W2000263957 cites W2162143298 @default.
- W2000263957 cites W2164298117 @default.
- W2000263957 cites W2168673205 @default.
- W2000263957 cites W2171756499 @default.
- W2000263957 cites W2172279754 @default.
- W2000263957 cites W2396491656 @default.
- W2000263957 cites W4230962320 @default.
- W2000263957 cites W4237335579 @default.
- W2000263957 cites W4242404314 @default.
- W2000263957 cites W4256409604 @default.
- W2000263957 cites W74841586 @default.
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- W2000263957 doi "https://doi.org/10.1093/mutage/geu078" @default.
- W2000263957 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/25688112" @default.
- W2000263957 hasPublicationYear "2015" @default.
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