Decreased Adipose Lipid Turnover Associates With Cardiometabolic Risk and the Metabolic Syndrome.

IF 7.4 1区 医学 Q1 HEMATOLOGY Arteriosclerosis, Thrombosis, and Vascular Biology Pub Date : 2025-02-01 Epub Date: 2024-12-12 DOI:10.1161/ATVBAHA.124.321760
Daniel P Andersson, Peter Arner
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Abstract

Background: Disturbed white adipose tissue function is important for cardiometabolic risk and metabolic syndrome (MetS). Whether this involves adipose lipid turnover (lipolysis and synthesis of triglycerides) is unknown and was presently investigated in subcutaneous adipose tissue, the body's largest fat depot.

Methods: In cross-sectional studies in 78 subjects, adipose lipid age, representing overall lipid turnover (mobilization and storage), and lipid storage capacity were assessed by the incorporation of atmospheric 14C into adipose lipids. Adipose lipid age from an algorithm of adipocyte lipolysis and clinical parameters was also determined in 185 subjects. Adult Treatment Panel III (ATPIII) scoring defined MetS (scores 3-5) or healthy (score 0). ANOVA or ANCOVA and t test were used for statistical comparison. Because there was no method interaction to determine lipid age, the 2 groups were combined.

Results: Lipid age increased by incremental ATPIII score (F=42; P<0.0001) and was 2-fold advanced in MetS (t=11.3; P<0.0001). The correlation with lipid age was independent of age, sex, body mass index, waist-to-hip ratio, sedentary lifestyle, absence of obesity, and adipose insulin resistance (F=10.7; P<0.0001). Lipid storage capacity was not related to the ATPIII score (F=1.0; P=0.44) or MetS (t=-0.9; P=0.35). Adipocyte lipolysis activation was decreased in MetS and inversely related to incremental ATPIII score, suggesting that decreased lipid mobilization is the major factor behind high lipid age in these conditions.

Conclusions: Despite normal lipid assimilation capacity, abdominal subcutaneous adipose lipid turnover is decreased in MetS and high ATPIII score because of impaired ability to mobilize lipids involving low adipocyte lipolysis activation.

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脂肪脂质转换减少与心脏代谢风险和代谢综合征相关。
背景:白色脂肪组织功能紊乱对心脏代谢风险和代谢综合征(MetS)很重要。这是否涉及脂肪脂质转化(脂肪分解和甘油三酯合成)尚不清楚,目前在皮下脂肪组织中进行了研究,皮下脂肪组织是人体最大的脂肪储存库。方法:在78名受试者的横断面研究中,通过将大气中的14C纳入脂肪脂质来评估脂肪脂质年龄(代表总体脂质周转(动员和储存))和脂质储存能力。通过脂肪细胞脂解算法和临床参数测定了185名受试者的脂质年龄。成人治疗组III (ATPIII)评分定义MetS(得分3-5)或健康(得分0)。采用方差分析或ANCOVA和t检验进行统计比较。由于没有方法相互作用测定脂质年龄,因此两组合并。结果:脂质年龄随着ATPIII评分的增加而增加(F=42;ppp =0.44)或MetS (t=-0.9;P = 0.35)。脂肪细胞脂解激活在MetS中降低,并且与ATPIII评分的增加呈负相关,这表明脂质动员降低是这些条件下高脂年龄背后的主要因素。结论:尽管脂质同化能力正常,但在MetS和ATPIII评分高的情况下,腹部皮下脂肪脂质周转减少,因为脂质动员能力受损,涉及低脂肪细胞脂解激活。
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来源期刊
CiteScore
15.60
自引率
2.30%
发文量
337
审稿时长
2-4 weeks
期刊介绍: The journal "Arteriosclerosis, Thrombosis, and Vascular Biology" (ATVB) is a scientific publication that focuses on the fields of vascular biology, atherosclerosis, and thrombosis. It is a peer-reviewed journal that publishes original research articles, reviews, and other scholarly content related to these areas. The journal is published by the American Heart Association (AHA) and the American Stroke Association (ASA). The journal was published bi-monthly until January 1992, after which it transitioned to a monthly publication schedule. The journal is aimed at a professional audience, including academic cardiologists, vascular biologists, physiologists, pharmacologists and hematologists.
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