Key result
Visceral adipose tissue had significantly lower proportions of non-essential polyunsaturated fatty acids with ≥20 carbons compared to subcutaneous depots, which displayed similar fatty acid profiles.
Cross-Sectional (n=75)
No
p-value: p=<0.05
Subcutaneous and visceral adipose tissues exhibit distinct fatty acid compositions and lipogenic gene expression patterns, highlighting metabolic heterogeneity between fat depots in obesity.
Highlights metabolic heterogeneity between fat depots in obesity without altering clinical practice; leaves open how.
Cardiometabolic diseases are primarily linked to enlarged visceral adipose tissue (VAT). However, some data suggest heterogeneity within the subcutaneous adipose tissue (SAT) depot with potential metabolic differences between the superficial SAT (sSAT) and deep SAT (dSAT) compartments. We aimed to investigate the heterogeneity of these three depots with regard to fatty acid (FA) composition and gene expression. Adipose tissue biopsies were collected from 75 obese women undergoing laparoscopic gastric bypass surgery. FA composition and gene expression were determined with gas chromatography and quantitative real-time-PCR, respectively. Stearoyl CoA desaturase-1 (SCD-1) activity was estimated by product-to-precursor FA ratios. All polyunsaturated FAs (PUFA) with 20 carbons were consistently lower in VAT than either SAT depots, whereas essential PUFA (linoleic acid, 18:2n-6 and α-linolenic acid, 18:3n-3) were similar between all three depots. Lauric and palmitic acid were higher and lower in VAT, respectively. The SCD-1 product palmitoleic acid as well as estimated SCD-1 activity was higher in VAT than SAT. Overall, there was a distinct association pattern between lipid metabolizing genes and individual FAs in VAT. In conclusion, SAT and VAT are two distinct depots with regard to FA composition and expression of key lipogenic genes. However, the small differences between sSAT and dSAT suggest that FA metabolism of SAT is rather homogenous.
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Petrus et al. (2017) conducted a cross-sectional in Obesity (n=75). Adipose tissue depot location (visceral vs subcutaneous) vs. Subcutaneous adipose tissue (sSAT and dSAT) was evaluated on Fatty acid composition and lipogenic gene expression differences between adipose tissue depots (p=<0.05). Visceral adipose tissue had significantly lower proportions of non-essential polyunsaturated fatty acids with ≥20 carbons compared to subcutaneous depots, which displayed similar fatty acid profiles.
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