Bridging the gap between systems biology and medicine

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作者
Gilles Clermont
Charles Auffray
Yves Moreau
David M Rocke
Daniel Dalevi
Devdatt Dubhashi
Dana R Marshall
Peter Raasch
Frank Dehne
Paolo Provero
Jesper Tegner
Bruce J Aronow
Michael A Langston
Mikael Benson
机构
[1] University of Pittsburgh School of Medicine,Department of Critical Care Medicine and CRISMA laboratory
[2] Functional Genomics and Systems Biology for Health,Department of Public Health Sciences
[3] CNRS Institute of Biological Sciences,Department of Computer Science and Engineering
[4] Villejuif,Department of Surgery
[5] K.U. Leuven,Department of Electrical Engineering and Computer Science
[6] ESAT/SCD,undefined
[7] University of California,undefined
[8] Chalmers and Göteborg University,undefined
[9] Meharry Medical College,undefined
[10] Systems Biology and Bioinformatics Group,undefined
[11] University of Rostock,undefined
[12] School of Computer Science,undefined
[13] Carleton University,undefined
[14] Computational Biology Unit Molecular Biotechnology Center,undefined
[15] University of Torino,undefined
[16] Institutionen för Medicin,undefined
[17] Karolinska Universitetssjukhuset,undefined
[18] Computational Medicine Center,undefined
[19] University of Cincinnati,undefined
[20] College of Engineering,undefined
[21] University of Tennessee,undefined
[22] The Unit for Clinical Systems Biology,undefined
[23] The Queen Silvia Children's Hospital,undefined
来源
关键词
Gene Ontology; System Biology; Knowledge Representation; Multiscale Model; System Medicine;
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摘要
Systems biology has matured considerably as a discipline over the last decade, yet some of the key challenges separating current research efforts in systems biology and clinically useful results are only now becoming apparent. As these gaps are better defined, the new discipline of systems medicine is emerging as a translational extension of systems biology. How is systems medicine defined? What are relevant ontologies for systems medicine? What are the key theoretic and methodologic challenges facing computational disease modeling? How are inaccurate and incomplete data, and uncertain biologic knowledge best synthesized in useful computational models? Does network analysis provide clinically useful insight? We discuss the outstanding difficulties in translating a rapidly growing body of data into knowledge usable at the bedside. Although core-specific challenges are best met by specialized groups, it appears fundamental that such efforts should be guided by a roadmap for systems medicine drafted by a coalition of scientists from the clinical, experimental, computational, and theoretic domains.
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