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PMID: 12145147 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Impairment of insulin signaling in human skeletal muscle cells by co-culture with human adipocytes.

Diabetes ·Vol. 51 ·No. 8 ·2002-08-00 ·Pages 2369-76

Dietze D, Koenen M, Röhrig K, Horikoshi H, Hauner H, Eckel J

Abstract

Adipocyte factors play a major role in the induction of insulin resistance in skeletal muscle. To analyze this cross-talk, we established a system of co-culture of human fat and skeletal muscle cells. Cells of three muscle donors were kept in co-culture with cells of various fat cell donors, and insulin signaling was subsequently analyzed in myocytes. Insulin-induced tyrosine phosphorylation of insulin receptor substrate (IRS)-1 was completely blocked, with unaltered expression of IRS-1. Troglitazone increased insulin action on IRS-1 phosphorylation, in both the absence and presence of co-culture. Insulin-regulated activation of Akt kinase in the myocytes was significantly reduced after co-culture, with troglitazone restoring insulin action. Addition of tumor necrosis factor (TNF)-alpha (2.5 nmol/l) to myocytes for 48 h reduced IRS-1 expression and inhibited IRS-1 and Akt phosphorylation comparable to the effect of co-culture. Lower doses of TNF-alpha were ineffective. After co-culture, TNF-alpha in the culture medium was below the detection limit of 0.3 pmol/l. A very low level of resistin was detected in the supernatant of myocytes, but not of adipocytes. In conclusion, the release of fat cell factors induces insulin resistance in human skeletal muscle cells; however, TNF-alpha and resistin appear not to be involved in this process.

MeSH Terms
Adipocytes/cytology,drug effects,physiology Adipose Tissue/cytology,physiology Cell Culture Techniques/methods Cells, Cultured Coculture Techniques Enzyme Activation/drug effects Humans Insulin/pharmacology Insulin Receptor Substrate Proteins Kinetics Muscle, Skeletal/cytology,drug effects,physiology Phosphoproteins/genetics,metabolism Protein Serine-Threonine Kinases Proto-Oncogene Proteins/metabolism Proto-Oncogene Proteins c-akt Signal Transduction/drug effects,physiology
Chemicals
IRS1 protein, human Insulin Insulin Receptor Substrate Proteins Phosphoproteins Proto-Oncogene Proteins AKT1 protein, human Protein Serine-Threonine Kinases Proto-Oncogene Proteins c-akt
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Dietze Daniela
Department of Clinical Biochemistry and Pathobiochemistry, German Diabetes Research Institute, Düsseldorf, Germany.
Koenen Marlis
Röhrig Karin
Horikoshi Hiroyoshi
Hauner Hans
Eckel Jürgen
Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
0012-1797
Published
2002-08-00
Pages
2369-76
Language
English
Region
United States
NLM ID
0372763
Subset
IM
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