医学
糖尿病前期
2型糖尿病
内科学
队列研究
队列
糖尿病
危险分层
空腹血糖受损
2型糖尿病
内分泌学
血甘油三酯
前瞻性队列研究
肿瘤科
空腹血糖值
病例对照研究
风险评估
作者
Jun-Xu Gu,Juan Huang,Aimin Zhang,Ziwei Wang,Huizhang Bao,Yue Yin,Shanshan Li,Na Zhang,Li Qin,Zhi-Hong Yue,Kun Wang,Mei Xiang Jia,Chunyan Wang,Lin Pei,Ming Su
摘要
AIMS: Oxidised lipoproteins-including oxidised high-density lipoprotein cholesterol (ox-HDL-C), oxidised low-density lipoprotein cholesterol (ox-LDL-C) and oxidised lipoprotein(a) [ox-Lp(a)]-are emerging biomarkers of oxidative stress and vascular inflammation. However, their roles in glycometabolic disorders and the progression from prediabetes to type 2 diabetes mellitus (T2DM) remain poorly defined. To prospectively assess the associations between plasma ox-HDL-C, ox-LDL-C and ox-Lp(a) levels and the future risk of T2DM among individuals with prediabetes. MATERIALS AND METHODS: This multi-centre, prospective cohort study enrolled 3056 participants, including 1521 individuals with prediabetes who were followed for 5 years. Baseline levels of ox-HDL-C, ox-LDL-C and ox-Lp(a) were quantified using ELISA. Glycaemic indices, insulin resistance markers and β-cell function were assessed. Associations with incident T2DM were evaluated using logistic regression, Cox proportional hazards models and restricted cubic spline analyses. RESULTS: Elevated baseline levels of ox-HDL-C, ox-LDL-C and ox-Lp(a) were independently associated with increased odds and hazard ratios for progression from prediabetes to T2DM. These associations were dose-dependent and remained significant across sex-specific subgroups. Additionally, oxidised lipoproteins correlated positively with FBG, HbA1c and HOMA-IR, and negatively with HOMA-β and HOMA-IS, suggesting a relationship with β-cell dysfunction and insulin resistance. CONCLUSIONS: Ox-HDL-C, ox-LDL-C and ox-Lp(a) are independent, dose-dependent predictors of T2DM development in individuals with prediabetes. Their close association with impaired β-cell function highlights their potential utility in early risk stratification and targeted prevention strategies for T2DM.
科研通智能强力驱动
Strongly Powered by AbleSci AI