Cholesterol–high-density lipoprotein–glucose index versus triglyceride–glucose-derived indices for predicting 10-year cardiovascular mortality in the MASHAD cohort

医学 单变量 比例危险模型 队列 多元统计 危险系数 接收机工作特性 内科学 队列研究 多元分析 糖尿病 生存分析 单变量分析 肥胖 死亡率 索引(排版) 冲程(发动机) 死亡风险 回归分析 心血管健康 体质指数 胰岛素抵抗 全国死亡指数 入射(几何) 混淆 风险评估 心脏病学 回顾性队列研究 切点 急诊医学 回归 统计 曲线下面积
作者
Ali Tajik,Majid Ghayour-Mobarhan,Susan Darroudi,Bahram Shahri,Habibollah Esmaily,Sara Saffar Soflaei,Gordon A. Ferns,Mohsen Moohebati,Hedieh Alimi
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:16 (1)
标识
DOI:10.1038/s41598-026-41569-1
摘要

Cardiovascular diseases (CVDs) remain a major global health challenge, accounting for substantial illness and death worldwide. Growing evidence suggests that insulin resistance (IR) has a substantial role in their development and progression. A recently introduced IR surrogate marker, the Cholesterol-HDL-Glucose (CHG) index, has been suggested as an index for identifying metabolic disturbances, but its value in predicting cardiovascular mortality has not been clearly established. This study set out to examine how well the CHG index predicts cardiovascular mortality when compared with the Triglyceride-Glucose (TyG) index and its variants combined with obesity measures. We analyzed data from middle-aged adults (35–65 years) in the Mashhad Stroke and Heart Atherosclerotic Disorder (MASHAD) cohort study, with data collected from 2011 to 2020. Cardiovascular and all-cause mortalities were tracked over at least 10-year follow-up. The CHG, TyG and its derived substitutes were calculated, and their associations with mortality outcomes were assessed using univariate and multivariate Cox regression models. Additionally, receiver operating characteristic (ROC) analysis, Harrell’s C-index, restricted cubic spline (RCS), net reclassification improvement (NRI) and integrated discrimination improvement (IDI), likelihood-based pseudo-R² and the share of explainable log-likelihood, decision curve analysis (DCA) for clinical utility, Kaplan-Meier survival curves, Fine and Grey subdistribution hazard models, E-value for robustness of associations, and subgroup analysis were performed in statistical analysis. Among 7467 participants who were analyzed, higher CHG values were strongly associated with a greater risk of both cardiovascular and all-cause mortality. Each standard deviation (SD) increase in CHG value, raise the risk of cardiovascular mortality by 35.4%, and 31.9% in competing-risk analysis, which was higher than TyG and its related markers. For all-cause mortality, 1-SD increase in CHG was associated with 21.4% higher risk. In predicting cardiovascular mortality, CHG outperformed TyG and its derivatives on ROC, C-index, IDI, pseudo-R², share of log-likelihood and DCA measures. For all-cause mortality, certain TyG-based indices performed better. RCS modeling indicated a linear relationship between CHG and cardiovascular mortality, and a non-linear relationship with all-cause mortality. Survival analysis, robustness checks, and subgroup analyses supported these findings, with no evidence of effect modification for cardiovascular mortality. Elevated CHG is independently associated with a higher risk of cardiovascular mortality and shows a consistent linear pattern. It provides stronger predictive value for cardiovascular death than TyG and its derivatives, supporting its role as a useful marker for assessing CVD risk.
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