TY - JOUR
T1 - Association of novel triglyceride-glucose index-derived indices with hyperuricemia among oilfield workers
AU - Liu, Haobiao
AU - Li, Qingsong
AU - Wali, Husna
AU - Cai, Yingjie
AU - Tang, Jing
AU - Yang, Licheng
AU - Yu, Xuefeng
AU - Li, Jinsong
AU - Yang, Bowei
AU - Guo, Ziwei
AU - Han, Jing
AU - Du, Zhiyong
N1 - Publisher Copyright:
Copyright © 2026 Liu, Li, Wali, Cai, Tang, Yang, Yu, Li, Yang, Guo, Han and Du.
PY - 2026
Y1 - 2026
N2 - Objectives: The association and predictive value of newer triglyceride-glucose (TyG)-derived anthropometric indices for hyperuricemia have not been systematically evaluated. Methods: Logistic regression, restricted cubic spline (RCS) modeling, subgroup analyses, and multiple sensitivity assessments were used to evaluate dose-response patterns and the robustness of findings. Discriminatory performance was further assessed using receiver operating characteristic curves. Results: All five TyG-derived indicators showed positive associations with hyperuricemia. Each one-standard deviation increase in triglyceride-glucose-a body shape index (TyG-ABSI), triglyceride-glucose-weight-adjusted waist index (TyG-WWI), triglyceride-glucose-conicity index (TyG-CI), triglyceride-glucose-body roundness index (TyG-BRI), and triglyceride-glucose-Chinese visceral adiposity index (TyG-CVAI) corresponded to 62, 45, 68, 82, and 88% higher odds, respectively. Similar trends appeared in categorical analyses, where the highest quartile exhibited markedly elevated risks compared with the lowest, ranging from 1.61-fold for TyG-WWI to 2.29-fold for TyG-CVAI. RCS analyses confirmed non-linear patterns, and subgroup findings across age, sex, and shift-work strata were largely consistent. Sensitivity analyses further supported the robustness of the results. Among all indicators, TyG-CVAI provided the greatest discriminative ability, with an AUC of 0.735 and statistically superior performance relative to the other indices. Conclusion: TyG-derived anthropometric metrics, particularly TyG-CVAI, exhibit robust associations with hyperuricemia and demonstrate promising utility for metabolic risk stratification.
AB - Objectives: The association and predictive value of newer triglyceride-glucose (TyG)-derived anthropometric indices for hyperuricemia have not been systematically evaluated. Methods: Logistic regression, restricted cubic spline (RCS) modeling, subgroup analyses, and multiple sensitivity assessments were used to evaluate dose-response patterns and the robustness of findings. Discriminatory performance was further assessed using receiver operating characteristic curves. Results: All five TyG-derived indicators showed positive associations with hyperuricemia. Each one-standard deviation increase in triglyceride-glucose-a body shape index (TyG-ABSI), triglyceride-glucose-weight-adjusted waist index (TyG-WWI), triglyceride-glucose-conicity index (TyG-CI), triglyceride-glucose-body roundness index (TyG-BRI), and triglyceride-glucose-Chinese visceral adiposity index (TyG-CVAI) corresponded to 62, 45, 68, 82, and 88% higher odds, respectively. Similar trends appeared in categorical analyses, where the highest quartile exhibited markedly elevated risks compared with the lowest, ranging from 1.61-fold for TyG-WWI to 2.29-fold for TyG-CVAI. RCS analyses confirmed non-linear patterns, and subgroup findings across age, sex, and shift-work strata were largely consistent. Sensitivity analyses further supported the robustness of the results. Among all indicators, TyG-CVAI provided the greatest discriminative ability, with an AUC of 0.735 and statistically superior performance relative to the other indices. Conclusion: TyG-derived anthropometric metrics, particularly TyG-CVAI, exhibit robust associations with hyperuricemia and demonstrate promising utility for metabolic risk stratification.
KW - hyperuricemia
KW - insulin resistance
KW - occupational health
KW - oilfield worker
KW - triglyceride-glucose index
UR - https://www.scopus.com/pages/publications/105030611789
U2 - 10.3389/fnut.2026.1766524
DO - 10.3389/fnut.2026.1766524
M3 - 文章
AN - SCOPUS:105030611789
SN - 2296-861X
VL - 13
JO - Frontiers in Nutrition
JF - Frontiers in Nutrition
M1 - 1766524
ER -