Abstract
Progranulin is an important molecule in inflammatory response. Chronic inflammation is frequently associated with central obesity and associated disturbances; however, the role of circulating progranulin in human obesity, type 2 diabetes, and dyslipidemia is unknown. For the measurement of progranulin serum concentrations, we developed an enzyme-linked immunosorbent assay (ELISA). Using this ELISA, we assessed circulating progranulin in a cross-sectional study of 209 subjects with a wide range of obesity, body fat distribution, insulin sensitivity, and glucose tolerance and in 60 individuals with normal (NGT) or impaired (IGT) glucose tolerance or type 2 diabetes before and after a 4-week physical training program. Progranulin mRNA and protein expression was measured in paired samples of omental and subcutaneous adipose tissue (adipocytes and cells of the stromal vascular fraction) from 55 lean or obese individuals. Measurement of Erk activation and chemotactic activity induced by progranulin in vitro was performed using THP-1-based cell migration assays. Progranulin serum concentrations were significantly higher in individuals with type 2 diabetes compared with NGT and in obese subjects with predominant visceral fat accumulation. Circulating progranulin significantly correlates with BMI, macrophage infiltration in omental adipose tissue, C-reactive protein (CRP) serum concentrations, A1C values, and total cholesterol. Multivariable linear regression analyses revealed CRP levels as the strongest independent predictor of circulating progranulin. The extent of in vitro progranulin-mediated chemotaxis is similar to that of monocyte chemoattractant protein-1 but independent of Galpha. Moreover, in type 2 diabetes, but not in IGT and NGT individuals, physical training for 4 weeks resulted in significantly decreased circulating progranulin levels. Elevated progranulin serum concentrations are associated with visceral obesity, elevated plasma glucose, and dyslipidemia. We identified progranulin as a novel marker of chronic inflammation in obesity and type 2 diabetes that closely reflects omental adipose tissue macrophage infiltration. Physical training significantly reduces elevated circulating progranulin in patients with type 2 diabetes.
MeSH Terms
Adiponectin/blood
Adipose Tissue/physiopathology
Adult
Cohort Studies
Diabetes Mellitus, Type 2/blood,genetics,physiopathology
Fatty Acids, Nonesterified/blood
Female
Glucose Intolerance/blood,genetics
Humans
Inflammation/blood,genetics
Intercellular Signaling Peptides and Proteins/blood,genetics
Leptin/blood
Lipids/blood
Macrophages/physiology
Male
Middle Aged
Obesity/blood,genetics,physiopathology
Omentum/physiology
Progranulins
RNA, Messenger/genetics
Reference Values
Chemicals
Adiponectin
Fatty Acids, Nonesterified
GRN protein, human
Intercellular Signaling Peptides and Proteins
Leptin
Lipids
Progranulins
RNA, Messenger
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Youn Byung-Soo
AdipoGen, College of Life Science and Biotechnology, Korea University, Seoul, Korea.
[email protected]
Bang Sa-Ik
Klöting Nora
Park Ji Woo
Lee Namseok
Oh Ji-Eun
Pi Kyung-Bae
Lee Tae Hee
Ruschke Karen
Fasshauer Mathias
Stumvoll Michael
Blüher Matthias
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