Different Protein Sources Enhance 18FDG-PET/MR Uptake of Brown Adipocytes in Male Subjects

不同蛋白质来源增强男性受试者棕色脂肪细胞的 18FDG-PET/MR 摄取

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作者:Katarzyna Maliszewska, Edyta Adamska-Patruno, Katarzyna Miniewska, Witold Bauer, Angelika Buczyńska, Małgorzata Mojsak, Adam Kretowski

Background

The unique ability of brown adipocytes to increase metabolic rate suggests that they could be targeted as an obesity treatment.

Conclusion

The outcomes of our study suggest that different macronutrient consumption may be a new way to modulate BAT activity leading to weight reduction.

Methods

The study group comprised 28 healthy non-smoking males, aged 21-42 years old. All volunteers underwent a physical examination and a 75 g oral glucose tolerance test (75g-OGTT). Serum atrial and brain natriuretic peptide (ANP, BNP), PRD1-BF1-RIZ1 homologous domain containing 16 (PRDM16) and eukaryotic translation initiation factor 4E (eIF4E) measurements were taken, and 3-day food intake diaries were completed. Body composition measurements were assessed using dual-energy X-ray absorptiometry (DXA) scanning and bioimpedance methods. An fluorodeoxyglucose-18 (FDG-18) uptake in BAT was assessed by positron emission tomography/magnetic resonance (PET/MR) in all participants after 2 h cold exposure. The

Objective

The objective of the study was to search for new dietary factors that may enhance brown adipose tissue (BAT) activity.

Results

Subjects with detectable BAT (BAT(+)) were characterized by a higher percentage of energy obtained from dietary protein and fat and higher muscle mass (p = 0.01, p = 0.02 and p = 0.04, respectively). In the BAT(+) group, animal protein intake was positively associated (p= 0.04), whereas the plant protein intake negatively correlated with BAT activity (p = 0.03). Additionally, the presence of BAT was inversely associated with BNP concentration in the 2 h of cold exposure (p = 0.002).

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