PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 19, 2026Cardiovascular Diabetology0 citationsOpen Access

Longitudinal associations of cumulative and repeated-measure patterns of insulin resistance surrogate indices with biological age acceleration and incident cardiovascular disease across cardiovascular-kidney-metabolic syndrome stages 0–3: evidence from CHARLS 2011–2020

SHShu-Shu HanQLQin LiuZMZhou Min-Qi

Key Points

  • This research aims to explore the relationships between insulin resistance patterns, biological aging, and cardiovascular disease risk across stages of cardiovascular-kidney-metabolic syndrome.
  • Included 3948 participants from CHARLS, assessing 12 insulin resistance surrogates through cumulative exposure and pattern groups.
  • Evaluated associations with incident cardiovascular disease using Fine-Gray competing risk models and other statistical analyses.
  • Conducted mediation analyses to quantify the role of biological age acceleration on cardiovascular disease risk.
  • 19.1% (756) participants developed incident cardiovascular disease during the study period.
  • Higher cumulative levels of certain insulin resistance indices were linked to increased cardiovascular disease risk, while elevated eGDR was protective.
  • Cumulative eGDR provided superior predictive performance for cardiovascular disease risk with an AUC of 0.613.

Abstract

BACKGROUND: Cardiovascular-kidney-metabolic (CKM) syndrome stages 0-3 represent a critical window for preventing progression to overt cardiovascular disease (CVD). Insulin resistance (IR) is central to CKM pathophysiology, yet the comparative utility of longitudinal IR patterns (cumulative burden and longitudinal pattern groups) across multiple surrogates, and the mediating role of biological ageing, remain unexamined in this preclinical population. METHODS: We included 3948 participants with CKM stages 0-3 from the CHARLS 2011-2020. Twelve IR surrogates (TyG and derivatives, METS-IR, CTI, eGDR, TG/HDL-C) were assessed via cumulative exposure and K-means-derived pattern groups. Associations with incident CVD were evaluated using Fine-Gray competing risk models, spline regression, receiver operating characteristic analyses, and quantile-based models. Mediation analyses quantified the contribution of biological age acceleration. RESULTS: 756 (19.1%) of 3948 participants with CKM stages 0-3 developed incident CVD. Higher cumulative levels and the least favorable pattern groups of TyG-based indices, METS-IR, CTI, and TG/HDL-C were consistently associated with increased CVD risk, whereas elevated cumulative eGDR was protective. Cumulative eGDR demonstrated superior predictive performance for CVD risk (AUC: 0.613; all DeLong P < 0.05 vs. other indices) and was consistently identified as the top contributor by both WQS and Qgcomp analyses. Both KDM- and Light-BioAgeAccel partially mediated several IR-CVD associations (up to 45.8% and 25.9%, respectively). CONCLUSIONS: Sustained IR burden and unfavorable longitudinal IR patterns are linked to higher CVD risk in CKM stages 0-3, partly through accelerated biological aging. Integrating longitudinal IR profiling with aging metrics may sharpen early risk stratification and support scalable prevention targeting upstream metabolic drivers.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Han et al. (2026) studied this question.

synapsesocial.com/papers/6a0bfd7a166b51b53d378cb3https://doi.org/10.1186/s12933-026-03206-z
Ask AI
Helpful
Bookmark
Share
View Full Paper