Crocus sativus tepals extract suppresses subcutaneous adipose tissue hypertrophy and improves systemic insulin sensitivity in mice on high‐fat diet

脂肪细胞 脂肪组织 内分泌学 内科学 生物 花被片 番红花 胰岛素抵抗 胰岛素 脂质代谢 医学 植物 花粉 雄蕊
作者
Biljana Bursać,Luisa Bellachioma,Ljupka Gligorovska,Mirna Jovanović,Ana Teofilović,Miloš Vratarić,Danijela Vojnović Milutinović,Alfonso Albacete,Purificación A. Martínez‐Melgarejo,Camilla Morresi,Elisabetta Damiani,Tiziana Bacchetti,Ana Djordjević
出处
期刊:Biofactors [Wiley]
标识
DOI:10.1002/biof.2043
摘要

Abstract Obesity is a pressing problem worldwide for which standard therapeutic strategies have limited effectiveness. The use of natural products seems to be a promising approach to alleviate obesity and its associated complications. The tepals of Crocus sativus (Cr) plant, usually wasted in saffron production, are an unexplored source of bioactive compounds. Our aim was to elucidate the mechanisms of Cr tepals extract in obesity by investigating its effects on adipocyte differentiation, visceral adipose tissue (VAT) and subcutaneous adipose tissue (SAT) hypertrophy, and lipid metabolism in an animal model of diet‐induced obesity. To this end, mouse 3T3‐F442A preadipocytes were treated with Cr tepals extract and the expression of adipocyte differentiation genes was determined. Caloric intake, body mass, triglycerides, systemic insulin sensitivity, histology, insulin signaling, and lipid metabolism in VAT and SAT were analyzed in mice fed a 60% fat diet for 14 weeks and treated orally with Cr tepals extract during the last 5 weeks of the diet. We demonstrated for the first time that Cr tepals extract inhibits adipocyte differentiation in vitro. The animal model confirmed that oral treatment with Cr tepals extract results in weight loss, improved systemic insulin sensitivity, lower triglycerides, and improved lipid peroxidation. The suppressive effect of Cr tepals extract on adipocyte hypertrophy and inflammation was observed only in SAT, which, together with preserved SAT insulin signaling, most likely contributed to improved systemic insulin sensitivity. Our results suggest the functionality of SAT as a possible target for the treatment of obesity and its complications.
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