Epidemiology
Lp(a) tracks worsening kidney function and predicts advanced CKD stage in 224 patients with diabetic kidney disease (J Diabetes Complications 2023)
Original title: Study on the relationship between lipoprotein (a) and diabetic kidney disease
In a retrospective study of 224 patients with pathologically confirmed diabetic kidney disease (74 further evaluated by pathological grade), Lp(a) levels differed significantly across chronic kidney disease (CKD) stages (P=0.002) and glomerular grades (P=0.005), and correlated with serum creatinine, blood urea nitrogen, estimated glomerular filtration rate, 24-hour proteinuria, urine microalbumin, urine albumin-creatinine ratio, and glomerular basement membrane thickness (all P<=0.039). Lp(a) showed good performance for identifying CKD stage 4-5 (AUC 0.684, P=0.000), proteinuria above 3.5 g/24h (AUC 0.720, P=0.000), and glomerular grade III-IV (AUC 0.695, P=0.012). The findings suggest Lp(a) tracks declining kidney function and worsening pathology in diabetic kidney disease and could help monitor disease progression.
Original abstract
Objective: Little is currently known about the role of lipid metabolism in diabetic kidney disease (DKD), warranting further study. The present study sought to investigate the correlation between lipid metabolism and renal function as well as renal pathological grade/score in DKD patients.
Methods: A total of 224 patients diagnosed with DKD by pathological examination were retrospectively analyzed, of which 74 patients were further evaluated by DKD pathological grade/score. ANOVA was used to investigate serum lipoprotein (a) [Lp (a)] levels in DKD patients with different chronic kidney disease (CKD) stages. Spearman correlation analysis was used to evaluate the relationship between Lp (a) and renal function-related indicators. The DKD pathological grade/score was also evaluated with this method. The receiver operating characteristic (ROC) curve was used to analyze the value of Lp (a) in assessing renal function and pathological changes.
Results: There were significant differences in Lp (a) levels among different CKD stages (H = 17.063, p = 0.002) and glomerular grades (H = 12.965, p = 0.005). Lp (a) levels correlated with serum creatinine (p = 0.000), blood urea nitrogen (p = 0.000), estimated glomerular filtration rate (p = 0.000), 24-h proteinuria (24hUPro, p = 0.000), urine microalbumin (p = 0.000), urine albumin creatinine ratio (p = 0.000), glomerular basement membrane thickness (p = 0.003), and glomerular grade (p = 0.039). ROC curve demonstrated good performance of Lp (a) as an indicator to assess CKD stage 4-5 (AUC = 0.684, p = 0.000), 24hUPro > 3.5 g (AUC = 0.720, p = 0.000), and glomerular grade III-IV (AUC = 0.695, p = 0.012).
Conclusions: Elevated levels of Lp (a) are associated with decreased GFR, increased proteinuria, and renal pathological progression, suggesting they could be used to monitor changes in DKD patients.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.