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PMID: 16077086 Published · epublish English Journal Article Review

Embracing complexity, inching closer to reality.

Science's STKE : signal transduction knowledge environment ·Vol. 2005 ·No. 295 ·2005-08-02 ·Pages pe40

Schadt EE, Sachs A, Friend S

Abstract

Drugs designed against targets in presumably simple linear signaling pathways found to be associated with disease are often less effective than predicted. One reason for this is the overly simplistic view of the molecular mechanisms underlying common human diseases. This viewpoint is a consequence of biological reductionism, brought about by the need to form a basic understanding of the fundamental attributes of biological systems and by limitations in the set of tools available for analysis of biological systems. However, complex biological systems are best modeled as highly modular, fluid systems exhibiting a plasticity that allows them to adapt to a vast array of conditions. Historically, this viewpoint has long represented the ideal, but the tools needed to examine and describe this complexity were often lacking. Here we argue that the tools of biological science now allow for a more network-oriented view of biological systems and for explaining the underlying causes of disease, as well as the best ways to target disease. Ultimately, this will help to ensure that the right drug is administered to the right patient at the right time. Focusing on well-studied signaling pathways, refining the definition of disease, and identifying disease subtypes, we demonstrate a more holistic approach to elucidating common human diseases, with the potential to revolutionize treatment of these diseases.

MeSH Terms
Animals Crosses, Genetic Drug Design Drug Evaluation, Preclinical/methods Gene Expression Profiling Gene Expression Regulation/drug effects,physiology Genotype Humans Liver/metabolism Mice Mice, Inbred Strains Models, Biological Obesity/genetics Protein Serine-Threonine Kinases Receptor, Transforming Growth Factor-beta Type II Receptors, Transforming Growth Factor beta/drug effects,physiology Signal Transduction Smad Proteins/physiology Transforming Growth Factor beta/physiology
Chemicals
Receptors, Transforming Growth Factor beta Smad Proteins Transforming Growth Factor beta Protein Serine-Threonine Kinases Receptor, Transforming Growth Factor-beta Type II
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Schadt Eric E
Rosetta Inpharmatics, 401 Terry Avenue North, Seattle, WA 98109, USA. eric_schadt@merck.com
Sachs Alan
Friend Stephen
Article Info
Journal
Science's STKE : signal transduction knowledge environment
Abbr.
Sci STKE
ISSN
1525-8882
Published
2005-08-02
Epub
2005-00-02
Pages
pe40
Language
English
Region
United States
NLM ID
100964423
Subset
IM
Corrections
CommentIn
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