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Urinary podocyte mRNAs precede microalbuminuria as a progression risk marker in human type 2 diabetic nephropathy
Akihiro Fukuda1,2, Akihiro Minakawa3, Masao Kikuchi3
1Department of Endocrinology, Metabolism, Rheumatology and Nephrology, Faculty of Medicine, Oita University, 1-1 Idaigaoka, Hasama-machi, Yufu, Oita, 879-5593, Japan. akifukuda@oita-u.ac.jp.
Abstract:
Earlier detection of progression risk in diabetic nephropathy will allow earlier intervention to reduce progression. The hypothesis that urinary pellet podocyte mRNA is a more sensitive progression risk marker than microalbuminuria was tested. A cross sectional cohort of 165 type 2 diabetics and 41 age and sex-matched controls were enrolled. Podocyte stress (Urinary pellet podocin:nephrin mRNA ratio), podocyte detachment (Urinary pellet podocin mRNA:creatinine ratio: UPPod:CR) and a tubular marker (Urinary pellet aquaporin 2:creatinine ratio) were measured in macro-albuminuric, micro-albuminuric and norm-albuminuric groups. eGFR was reassessed after 4 years in 124 available diabetic subjects. Urinary pellet podocyte and tubular mRNA markers were increased in all diabetic groups in cross-sectional analysis. After 4 years of follow-up univariable and multivariate model analysis showed that the only urinary markers significantly related to eGFR slope were UPPod:CR (P < 0.01) and albuminuria (P < 0.01). AUC analysis using K-fold cross validation to predict eGFR loss of ≥ 3 ml/min/1.73m2/year showed that UPPod:CR and albuminuria each improved the AUC similarly such that combined with clinical variables they gave an AUC = 0.70. Podocyte markers and albuminuria had overlapping AUC contributions, as expected if podocyte depletion causes albuminuria. In the norm-albuminuria cohort (n = 75) baseline UPPod:CR was associated with development of albuminuria (P = 0.007) and, in the tertile with both normal kidney function (eGFR 84 ± 11.7 ml/min/1.73m2) and norm-albuminuria at baseline, UPPod:CR was associated with eGFR loss rate (P = 0.003). In type 2 diabetics with micro- or macro-albuminuria UPPod:CR and albuminuria were equally good at predicting eGFR loss. For norm-albuminuric type 2 diabetics UPPod:CR predicted both albuminuria and eGFR loss.
Insights
Urinary podocyte mRNA (UPPod:CR) is a sensitive marker for diabetic nephropathy progression, predicting kidney function decline and albuminuria development, even in norm-albuminuric patients.
Area of Science:
- Nephrology
- Diabetology
- Biomarker Discovery
Background:
- Diabetic nephropathy (DN) progression risk requires early detection for timely intervention.
- Microalbuminuria is a known marker, but more sensitive indicators are needed.
- Urinary podocyte mRNA offers a potential marker for assessing DN progression risk.
Purpose of the Study:
- To test the hypothesis that urinary podocyte mRNA is a more sensitive progression risk marker than microalbuminuria in type 2 diabetes.
- To evaluate urinary podocyte detachment (UPPod:CR) and tubular markers in relation to estimated glomerular filtration rate (eGFR) decline over 4 years.
Main Methods:
- Cross-sectional and longitudinal study of 165 type 2 diabetic patients and 41 controls.
- Measurement of urinary podocyte mRNA ratios (podocin:nephrin, UPPod:CR) and aquaporin 2:creatinine ratio.
- Reassessment of eGFR after 4 years; statistical analysis including univariable, multivariate, and AUC modeling with K-fold cross-validation.
Main Results:
- Urinary podocyte and tubular mRNA markers were elevated in all diabetic groups at baseline.
- UPPod:CR and albuminuria were the only urinary markers significantly related to eGFR slope over 4 years.
- In norm-albuminuric patients, baseline UPPod:CR predicted both the development of albuminuria and eGFR loss.
Conclusions:
- Urinary podocyte mRNA (UPPod:CR) is a valuable biomarker for predicting diabetic nephropathy progression.
- UPPod:CR demonstrates sensitivity in identifying kidney function decline and albuminuria development, particularly in early-stage disease.
- Combined assessment of UPPod:CR and albuminuria improves prediction of eGFR loss in type 2 diabetes.
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