Predictive value of TG/HDL-C and GFR-adjusted uric acid levels on cardiovascular mortality: the URRAH study.

IF 3.9 2区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Lipids in Health and Disease Pub Date : 2025-01-24 DOI:10.1186/s12944-025-02440-w
Elisa Russo, Francesca Viazzi, Roberto Pontremoli, Fabio Angeli, Carlo Maria Barbagallo, Bruno Berardino, Michele Bombelli, Federica Cappelli, Edoardo Casiglia, Rosario Cianci, Michele Ciccarelli, Arrigo F G Cicero, Massimo Cirillo, Pietro Cirillo, Lanfranco D'Elia, Giovambattista Desideri, Claudio Ferri, Ferruccio Galletti, Loreto Gesualdo, Cristina Giannattasio, Guido Grassi, Guido Iaccarino, Egidio Imbalzano, Luciano Lippa, Francesca Mallamaci, Alessandro Maloberti, Stefano Masi, Maria Masulli, Alberto Mazza, Alessandro Mengozzi, Maria Lorenza Muiesan, Pietro Nazzaro, Paolo Palatini, Gianfranco Parati, Fosca Quarti-Trevano, Marcello Rattazzi, Gianpaolo Reboldi, Giulia Rivasi, Massimo Salvetti, Valerie Tikhonoff, Giuliano Tocci, Andrea Ungar, Paolo Verdecchia, Agostino Virdis, Massimo Volpe, Claudio Borghi
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Abstract

Background: Insulin resistance (IR) and serum uric acid (SUA) are closely interconnected: SUA contributes to adversely affects the insulin signaling pathway and contributes to IR, while IR is a known predictor for the development of hyperuricemia. The triglyceride (TG) to high-density lipoprotein cholesterol (HDL-C) ratio has been proposed as an easily obtainable marker for IR. This research aimed to investigate the interaction between IR and glomerular filtration rate (GFR)-adjusted uricemia (SUA/GFR ratio) in determining CV risk in a large population cohort study.

Methods: Data from 18,694 subjects were analyzed from Uric acid Right foR heArt Healt (URRAH) database. The study evaluated the association between TG/HDL-C ratio and SUA/GFR ratio, as well as their impact on the development of outcomes during the follow-up study period. The primary endpoint was CV mortality.

Results: After a mean follow-up of 124 ± 64 months, 2,665 (14.2%) CV deaths occurred. The incidence of fatal and non-fatal CV events increased in parallel with the increase of TG/HDL-C quintiles. TG/HDL-C ratio showed a positive association with increasing of SUA/GFR ratio, even in non-diabetic patients. Multivariate analysis showed that the TG/HDL-C ratio increases the mortality risk even after adjustment for potential confounding factors. Finally, IR and GFR-adjusted hyperuricemia showed an additive effect on CV mortality.

Conclusions: Both IR and SUA/GFR ratio independently predict CV mortality, regardless of age, gender, BMI, diabetes, hypertension and statin use. The joint effect of the TG/HDL-C ratio and the elevated SUA/GFR ratio was greater than the presence of each single risk factor on CV mortality. This highlights the importance of monitoring these markers to better assess cardiovascular risk.

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TG/HDL-C和gfr校正尿酸水平对心血管死亡率的预测价值:URRAH研究
背景:胰岛素抵抗(IR)和血清尿酸(SUA)密切相关:SUA会对胰岛素信号通路产生不利影响并导致IR,而IR是已知的高尿酸血症发展的预测因子。甘油三酯(TG)与高密度脂蛋白胆固醇(HDL-C)之比被认为是一种容易获得的IR标记物。本研究旨在探讨IR和肾小球滤过率(GFR)调整尿酸血症(SUA/GFR比率)在确定CV风险中的相互作用。方法:从尿酸心脏健康数据库(URRAH)中分析18,694名受试者的数据。本研究评估了TG/HDL-C比值和SUA/GFR比值之间的关系,以及它们对随访研究期间结局发展的影响。主要终点是CV死亡率。结果:平均随访124±64个月后,发生2665例(14.2%)CV死亡。致死性和非致死性CV事件的发生率随着TG/HDL-C五分位数的增加而增加。TG/HDL-C比值与SUA/GFR比值升高呈正相关,非糖尿病患者亦是如此。多因素分析显示,即使校正了潜在的混杂因素,TG/HDL-C比值也会增加死亡风险。最后,IR和gfr调整的高尿酸血症显示出CV死亡率的累加效应。结论:IR和SUA/GFR比值独立预测CV死亡率,与年龄、性别、BMI、糖尿病、高血压和他汀类药物使用无关。TG/HDL-C比值和SUA/GFR比值升高对CV死亡率的共同影响大于单个危险因素的存在。这突出了监测这些标志物以更好地评估心血管风险的重要性。
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来源期刊
Lipids in Health and Disease
Lipids in Health and Disease 生物-生化与分子生物学
CiteScore
7.70
自引率
2.20%
发文量
122
审稿时长
3-8 weeks
期刊介绍: Lipids in Health and Disease is an open access, peer-reviewed, journal that publishes articles on all aspects of lipids: their biochemistry, pharmacology, toxicology, role in health and disease, and the synthesis of new lipid compounds. Lipids in Health and Disease is aimed at all scientists, health professionals and physicians interested in the area of lipids. Lipids are defined here in their broadest sense, to include: cholesterol, essential fatty acids, saturated fatty acids, phospholipids, inositol lipids, second messenger lipids, enzymes and synthetic machinery that is involved in the metabolism of various lipids in the cells and tissues, and also various aspects of lipid transport, etc. In addition, the journal also publishes research that investigates and defines the role of lipids in various physiological processes, pathology and disease. In particular, the journal aims to bridge the gap between the bench and the clinic by publishing articles that are particularly relevant to human diseases and the role of lipids in the management of various diseases.
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