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PMID: 19690064 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Interleukin-10 prevents diet-induced insulin resistance by attenuating macrophage and cytokine response in skeletal muscle.

Diabetes ·Vol. 58 ·No. 11 ·2009-11-00 ·Pages 2525-35

Hong EG, Ko HJ, Cho YR, Kim HJ, Ma Z, Yu TY, Friedline RH, Kurt-Jones E, Finberg R, Fischer MA, Granger EL, Norbury CC, Hauschka SD, Philbrick WM, Lee CG, Elias JA, Kim JK

Abstract

Insulin resistance is a major characteristic of type 2 diabetes and is causally associated with obesity. Inflammation plays an important role in obesity-associated insulin resistance, but the underlying mechanism remains unclear. Interleukin (IL)-10 is an anti-inflammatory cytokine with lower circulating levels in obese subjects, and acute treatment with IL-10 prevents lipid-induced insulin resistance. We examined the role of IL-10 in glucose homeostasis using transgenic mice with muscle-specific overexpression of IL-10 (MCK-IL10). MCK-IL10 and wild-type mice were fed a high-fat diet (HFD) for 3 weeks, and insulin sensitivity was determined using hyperinsulinemic-euglycemic clamps in conscious mice. Biochemical and molecular analyses were performed in muscle to assess glucose metabolism, insulin signaling, and inflammatory responses. MCK-IL10 mice developed with no obvious anomaly and showed increased whole-body insulin sensitivity. After 3 weeks of HFD, MCK-IL10 mice developed comparable obesity to wild-type littermates but remained insulin sensitive in skeletal muscle. This was mostly due to significant increases in glucose metabolism, insulin receptor substrate-1, and Akt activity in muscle. HFD increased macrophage-specific CD68 and F4/80 levels in wild-type muscle that was associated with marked increases in tumor necrosis factor-alpha, IL-6, and C-C motif chemokine receptor-2 levels. In contrast, MCK-IL10 mice were protected from diet-induced inflammatory response in muscle. These results demonstrate that IL-10 increases insulin sensitivity and protects skeletal muscle from obesity-associated macrophage infiltration, increases in inflammatory cytokines, and their deleterious effects on insulin signaling and glucose metabolism. Our findings provide novel insights into the role of anti-inflammatory cytokine in the treatment of type 2 diabetes.

MeSH Terms
Animals Creatine Kinase/genetics,metabolism Cytokines/antagonists & inhibitors,physiology Diabetes Mellitus, Type 2/metabolism,physiopathology Dietary Fats/pharmacology Disease Models, Animal Flow Cytometry Glucose Clamp Technique Hyperinsulinism Inflammation/physiopathology,prevention & control Insulin/physiology Insulin Resistance/physiology Interleukin-10/genetics,metabolism,pharmacology Macrophages/drug effects,physiology Male Mice Mice, Inbred C57BL Mice, Transgenic Muscle, Skeletal/drug effects,physiology,physiopathology
Chemicals
Cytokines Dietary Fats Insulin Interleukin-10 Creatine Kinase
Authors & Affiliations
17 authors, click to expand affiliations / ORCID
Hong Eun-Gyoung
Department of Cellular and Molecular Physiology, Pennsylvania State University College of Medicine, Hershey, Pennsylvania, USA.
Ko Hwi Jin
Cho You-Ree
Kim Hyo-Jeong
Ma Zhexi
Yu Tim Y
Friedline Randall H
Kurt-Jones Evelyn
Finberg Robert
Fischer Matthew A
Granger Erica L
Norbury Christopher C
Hauschka Stephen D
Philbrick William M
Lee Chun-Geun
Elias Jack A
Kim Jason K
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Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
1939-327X
Published
2009-11-00
Epub
2009-00-18
Pages
2525-35
Language
English
Region
United States
NLM ID
0372763
PMCID
PMC2768157
Subset
IM
Grants
NIAMS NIH HHS · R01 AR018860 · United States
NIDDK NIH HHS · R01 DK080756 · United States
NIDDK NIH HHS · R01-DK80756 · United States
NIAMS NIH HHS · R01-AR18860 · United States
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