医学
预期寿命
危险系数
糖化血红素
队列
糖尿病
比例危险模型
代谢组学
内科学
长寿
队列研究
血糖性
四分位数
置信区间
糖尿病性视网膜病变
老年学
健康衰老
逻辑回归
生理学
糖尿病前期
2型糖尿病
低风险
混淆
生物标志物
优势比
生存分析
生命银行
作者
Jun Yu,Yue Lan Gao,Y S Zhang,J Xu,Haoyu Chen,Mary Ho,Ka Wai Kam,Alvin L. Young,Chi Pui Pang,Clement C. Tham,Jason C. Yam,Le Chen
摘要
Purpose: To investigate the associations of omics-based biological aging with diabetic retinopathy (DR) and life expectancy among individuals with DR. Methods: We included 68,672 UK Biobank participants with prediabetes or diabetes in the metabolomic cohort and 8716 in the proteomic cohort, from which biological age was estimated using a metabolomic aging score and proteomic age (ProtAgeGap), respectively. Associations with prevalent and incident DR were assessed using logistic regression and Cox proportional hazards models, respectively. Life expectancy was estimated from survival curves. Results: Cross-sectionally, both the higher metabolomic aging score and ProtAgeGap were associated with a higher risk of prevalent DR. Prospectively, during a median follow-up of 13.40 years, 2491 participants (3.7%) developed DR among those free of DR at baseline in the metabolomic cohort and 358 (4.14%) in the proteomic cohort. Higher biological aging was associated with increased DR risk, with hazard ratios of 1.73 (95% confidence interval [CI], 1.59-1.88) for the metabolomic aging score and 1.12 (95% CI, 1.07-1.17) for ProtAgeGap. These associations were independent of and additive to glycated hemoglobin levels and diabetes duration. At age 45 years, individuals with DR had reduced life expectancy compared with those without DR. Among those with DR, the highest quartile of metabolomic aging was associated with a reduced life expectancy compared with the lowest quartile. Conclusions: Advanced metabolomic and proteomic aging were associated with a higher risk of DR, particularly in individuals with poor glycemic control or longer diabetes duration, while advanced metabolomic aging was associated with reduced life expectancy among those with DR.
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