Positive Effects of a Mediterranean Diet Supplemented with Almonds on Female Adipose Tissue Biology in Severe Obesity.
Óscar Osorio-ConlesRomina OlbeyraVioleta MoizéAinitze IbarzabalOriol GiróJudith ViaplanaAmanda JiménezJosep VidalAna de HollandaPublished in: Nutrients (2022)
It has been suggested that weight-loss-independent Mediterranean diet benefits on cardiometabolic health and diabetes prevention may be mediated, at least in part, through the modulation of white adipose tissue (WAT) biology. This study aimed to evaluate the short-term effects of a dietary intervention based on the Mediterranean diet supplemented with almonds (MDSA) on the main features of obesity-associated WAT dysfunction. A total of 38 women with obesity were randomly assigned to a 3-month intervention with MDSA versus continuation of their usual dietary pattern. Subcutaneous (SAT) and visceral adipose tissue (VAT) biopsies were obtained before and after the dietary intervention, and at the end of the study period, respectively. MDSA favored the abundance of small adipocytes in WAT. In SAT, the expression of angiogenesis genes increased after MDSA intervention. In VAT, the expression of genes implicated in adipogenesis, angiogenesis, autophagy and fatty acid usage was upregulated. In addition, a higher immunofluorescence staining for PPARG, CD31+ cells and M2-like macrophages and increased ADRB1 and UCP2 protein contents were found compared to controls. Changes in WAT correlated with a significant reduction in circulating inflammatory markers and LDL-cholesterol levels. These results support a protective effect of a Mediterranean diet supplemented with almonds on obesity-related WAT dysfunction.
Keyphrases
- insulin resistance
- adipose tissue
- weight loss
- high fat diet induced
- randomized controlled trial
- type diabetes
- metabolic syndrome
- high fat diet
- bariatric surgery
- weight gain
- poor prognosis
- roux en y gastric bypass
- skeletal muscle
- glycemic control
- oxidative stress
- fatty acid
- healthcare
- gastric bypass
- endothelial cells
- genome wide
- cell death
- binding protein
- signaling pathway
- early onset
- gene expression
- vascular endothelial growth factor
- dna methylation
- antibiotic resistance genes
- cell cycle arrest
- protein protein
- low density lipoprotein