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PMID: 17183729 Published · epublish English Journal Article Randomized Controlled Trial Research Support, Non-U.S. Gov't

A systems biology strategy reveals biological pathways and plasma biomarker candidates for potentially toxic statin-induced changes in muscle.

PloS one ·Vol. 1 ·2006-12-20 ·Pages e97

Laaksonen R, Katajamaa M, Päivä H, Sysi-Aho M, Saarinen L, Junni P, Lütjohann D, Smet J, Van Coster R, Seppänen-Laakso T, Lehtimäki T, Soini J, Oresic M

Abstract

Aggressive lipid lowering with high doses of statins increases the risk of statin-induced myopathy. However, the cellular mechanisms leading to muscle damage are not known and sensitive biomarkers are needed to identify patients at risk of developing statin-induced serious side effects. We performed bioinformatics analysis of whole genome expression profiling of muscle specimens and UPLC/MS based lipidomics analyses of plasma samples obtained in an earlier randomized trial from patients either on high dose simvastatin (80 mg), atorvastatin (40 mg), or placebo. High dose simvastatin treatment resulted in 111 differentially expressed genes (1.5-fold change and p-value<0.05), while expression of only one and five genes was altered in the placebo and atorvastatin groups, respectively. The Gene Set Enrichment Analysis identified several affected pathways (23 gene lists with False Discovery Rate q-value<0.1) in muscle following high dose simvastatin, including eicosanoid synthesis and Phospholipase C pathways. Using lipidomic analysis we identified previously uncharacterized drug-specific changes in the plasma lipid profile despite similar statin-induced changes in plasma LDL-cholesterol. We also found that the plasma lipidomic changes following simvastatin treatment correlate with the muscle expression of the arachidonate 5-lipoxygenase-activating protein. High dose simvastatin affects multiple metabolic and signaling pathways in skeletal muscle, including the pro-inflammatory pathways. Thus, our results demonstrate that clinically used high statin dosages may lead to unexpected metabolic effects in non-hepatic tissues. The lipidomic profiles may serve as highly sensitive biomarkers of statin-induced metabolic alterations in muscle and may thus allow us to identify patients who should be treated with a lower dose to prevent a possible toxicity.

MeSH Terms
Atorvastatin Biomarkers/blood Computational Biology Gene Expression/drug effects Gene Expression Profiling Heptanoic Acids/administration & dosage,adverse effects Humans Hydroxymethylglutaryl-CoA Reductase Inhibitors/administration & dosage,adverse effects Lipids/blood Muscle, Skeletal/drug effects,metabolism Muscular Diseases/blood,chemically induced,genetics Pyrroles/administration & dosage,adverse effects Simvastatin/administration & dosage,adverse effects Systems Biology
Chemicals
Biomarkers Heptanoic Acids Hydroxymethylglutaryl-CoA Reductase Inhibitors Lipids Pyrroles Atorvastatin Simvastatin
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Laaksonen Reijo
Research Unit, University Hospital of Tampere, Tampere, Finland. [email protected]
Katajamaa Mikko
Päivä Hannu
Sysi-Aho Marko
Saarinen Lilli
Junni Päivi
Lütjohann Dieter
Smet Joél
Van Coster Rudy
Seppänen-Laakso Tuulikki
Lehtimäki Terho
Soini Juhani
Oresic Matej
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Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2006-12-20
Epub
2006-00-20
Pages
e97
Language
English
Region
United States
NLM ID
101285081
PMCID
PMC1762369
Subset
IM
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