Key result
Subcutaneous adipose tissue inflammation in obese young adults was associated with greater visceral adipose tissue (3.7 vs 2.6 L; P=0.04) and hepatic fat fraction (9.9% vs 5.8%; P=0.03).
Why the study?
Is subcutaneous adipose tissue inflammation associated with altered fat deposition and insulin resistance in obese young adults?
Cross-Sectional (n=36)
Is subcutaneous adipose tissue inflammation associated with altered fat deposition and insulin resistance in obese young adults?
Absolute Event Rate: 3.7% vs 2.6%
p-value: p=0.04
Subcutaneous adipose tissue inflammation in obese young adults is associated with increased visceral and hepatic fat deposition and altered β-cell function, independent of total adiposity.
Subcutaneous adipose tissue inflammation may mark ectopic fat risk in obese youth; leaves open causal links to insulin resistance, needing longitudinal studies.
OBJECTIVE: To examine in obese young adults the influence of ethnicity and subcutaneous adipose tissue (SAT) inflammation on hepatic fat fraction (HFF), visceral adipose tissue (VAT) deposition, insulin sensitivity (SI), β-cell function, and SAT gene expression. RESEARCH DESIGN AND METHODS: SAT biopsies were obtained from 36 obese young adults (20 Hispanics, 16 African Americans) to measure crown-like structures (CLS), reflecting SAT inflammation. SAT, VAT, and HFF were measured by magnetic resonance imaging, and SI and β-cell function (disposition index [DI]) were measured by intravenous glucose tolerance test. SAT gene expression was assessed using Illumina microarrays. RESULTS: Participants with CLS in SAT (n = 16) were similar to those without CLS in terms of ethnicity, sex, and total body fat. Individuals with CLS had greater VAT (3.7 ± 1.3 vs. 2.6 ± 1.6 L; P = 0.04), HFF (9.9 ± 7.3 vs. 5.8 ± 4.4%; P = 0.03), tumor necrosis factor-α (20.8 ± 4.8 vs. 16.2 ± 5.8 pg/mL; P = 0.01), fasting insulin (20.9 ± 10.6 vs. 9.7 ± 6.6 mU/mL; P < 0.001) and glucose (94.4 ± 9.3 vs. 86.8 ± 5.3 mg/dL; P = 0.005), and lower DI (1,559 ± 984 vs. 2,024 ± 829 × 10(-4) min(-1); P = 0.03). Individuals with CLS in SAT exhibited upregulation of matrix metalloproteinase-9 and monocyte antigen CD14 genes, as well as several other genes belonging to the nuclear factor-κB (NF-κB) stress pathway. CONCLUSIONS: Adipose tissue inflammation was equally distributed between sexes and ethnicities. It was associated with partitioning of fat toward VAT and the liver and altered β-cell function, independent of total adiposity. Several genes belonging to the NF-κB stress pathway were upregulated, suggesting stimulation of proinflammatory mediators.
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Lê et al. (2011) conducted a cross-sectional in Obesity (n=36). Subcutaneous adipose tissue inflammation (presence of crown-like structures) vs. Absence of crown-like structures in subcutaneous adipose tissue was evaluated on Visceral adipose tissue (VAT) deposition (p=0.04). Subcutaneous adipose tissue inflammation in obese young adults was associated with greater visceral adipose tissue (3.7 vs 2.6 L; P=0.04) and hepatic fat fraction (9.9% vs 5.8%; P=0.03).
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