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August 1, 2003European Journal of Endocrinology214 citations

Expression of tumor necrosis factor (TNF)-alpha protein in the subcutaneous and visceral adipose tissue in correlation with adipocyte cell volume, serum TNF-alpha, soluble serum TNF-receptor-2 concentrations and C-peptide level

GWGábor WinklerSKSharmila KissLKL. Keszthelyi

Key Result

Obese patients had significantly higher serum TNF-alpha (5.58 vs 4.21 pg/ml, P<0.01) and sTNFR-2 levels than lean individuals, which correlated positively with adipocyte cell volume.

Study Design

Type

Cross-Sectional (n=43)

Structured PICO

P
Population
43 individuals undergoing planned surgical operation, comprising 28 overweight/obese probands with normal glucose tolerance (BMI >27 kg/m²) and 15 lean people (BMI <25 kg/m²).
C
Comparator
Lean people (BMI <25 kg/m²)
O
Outcome
Expression of TNF-alpha protein in subcutaneous and visceral adipose tissue, serum TNF-alpha, sTNFR-2, and fasting C-peptidesurrogate

Adipocyte cell volume in both subcutaneous and visceral fat depots correlates with TNF-alpha and sTNFR-2 production, suggesting a role in obesity-linked insulin resistance.

Main Result

Absolute Event Rate: 5.58% vs 4.21%

p-value: p=<0.01

Abstract

OBJECTIVE: The aim of the study was to evaluate the expression of tumor necrosis factor (TNF)-alpha protein in the subcutaneous and visceral adipose tIssue in correlation with adipocyte cell Volume, serum TNF-alpha, soluble TNF-receptor-2 (sTNFR-2) and indirect parameters of insulin resistance in overweight/obese and lean healthy persons. DESIGN: A cross-sectional case-control study was used. PATIENTS: Twenty-eight overweight/obese probands with normal glucose tolerance (BMI>27 kg/m(2)) and 15 lean people (BMI<25 kg/m(2)), all of them undergoing planned surgical operation, participated in the study. METHODS: Two to four grams of subcutaneous and visceral adipose tIssue were removed and studied using semi-quantitative immunohistochemical staining of the TNF-alpha protein. Serum TNF-alpha, sTNFR-2 (ELISA) and fasting C-peptide (RIA) were measured. RESULTS: TNF-alpha protein was expressed in adipocytes of both depots. The expression was evaluated visually and found to be greater in the obese patients. Significantly higher serum TNF-alpha (5.58+/-0.87 pg/ml vs 4.21+/-0.55, mean+/-s.d., P<0.01, Mann-Whitney) and sTNFR-2 levels (7.84+/-3.56 ng/ml vs 4.59+/-1.35, P=0.005) were found in the obese subgroup in correlation with the fasting C-peptide level (r=0.49, P=0.003; and r=0.74, P=0.001) and the C-peptide/ blood glucose ratio (r=0.47, Spearman, P=0.005; and r=0.70, P=0.001). The cell Volume of both adipocyte depots was found to have a significant positive correlation with serum TNF-alpha and sTNFR-2 levels in the total group of patients (subcutaneous: r=0.52, P=0.0003; r=0.69, P<0.0001; visceral: r=0.65, P<0.0001; r=0.63, P<0.0001) and in both subgroups. CONCLUSIONS: Adipocyte cell Volume of both the subcutaneous and visceral fat depots may be determinants of TNF-alpha, sTNFR-2 production and obesity-linked insulin resistance.

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Cite This Study

Winkler et al. (2003) conducted a cross-sectional in Overweight/obesity (n=43). Overweight/obese (BMI>27 kg/m2) vs. Lean people (BMI<25 kg/m2) was evaluated on Serum TNF-alpha (pg/ml) (p=<0.01). Obese patients had significantly higher serum TNF-alpha (5.58 vs 4.21 pg/ml, P<0.01) and sTNFR-2 levels than lean individuals, which correlated positively with adipocyte cell volume.

synapsesocial.com/papers/6a1d9455cc9f7df1b705a85bhttps://doi.org/10.1530/eje.0.1490129
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