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Published on: May 2, 2025
Urinary podocyte-associated mRNA profile in various stages of diabetic nephropathy
1Institute of Nephrology, Zhong Da Hospital, Southeast University School of Medicine, Nanjing, China.
Background:
Podocyte injury and subsequent excretion in urine play a crucial role in the pathogenesis and progression of diabetic nephropathy (DN). Quantification of messenger RNA (mRNA) expression in urinary sediment by real-time PCR is emerging as a noninvasive method of screening DN-associated biomarkers. We hypothesized that the urinary mRNA profile of podocyte-associated molecules may provide important clinical insight into the different stages of diabetic nephropathy.
Methods:
DN patients (N = 51) and healthy controls (N = 13) were enrolled in this study. DN patients were divided into a normoalbuminuria group (UAE<30 mg/g, n = 17), a microalbuminuria group (UAE 30∼300 mg/g, n = 15), and a macroalbuminuria group (UAE>300 mg/g, n = 19), according to their urinary albumin excretion (UAE). Relative mRNA abundance of synaptopodin, podocalyxin, CD2-AP, α-actin4, and podocin were quantified, and correlations between target mRNAs and clinical parameters were examined.
Results:
The urinary mRNA levels of all genes studied were significantly higher in the DN group compared with controls (p<0.05), and mRNA levels increased with DN progression. Urinary mRNA levels of all target genes positively correlated with both UAE and BUN. The expression of podocalyxin, CD2-AP, α-actin4, and podocin mRNA correlated with serum creatinine (r = 0.457, p = 0.001; r = 0.329, p = 0.01; r = 0.286, p = 0.021; r = 0.357, p = 0.006, respectively). Furthermore, podocalyxin mRNA was found to negatively correlate with eGFR (r = -0.349, p = 0.01).
Conclusion:
The urinary mRNA profiles of synaptopodin, podocalyxin, CD2-AP, α-actin4, and podocin were found to increase with the progression of DN, which suggested that quantification of podocyte-associated molecules will be useful biomarkers of DN.
Insights
Urinary mRNA levels of podocyte-associated molecules increase with diabetic nephropathy (DN) progression. These findings suggest that quantifying these molecules in urine can serve as valuable biomarkers for DN.
Area of Science:
- Nephrology
- Molecular Biology
- Biomarker Discovery
Background:
- Podocyte injury is central to diabetic nephropathy (DN) pathogenesis.
- Urinary messenger RNA (mRNA) analysis offers a noninvasive method for DN biomarker screening.
- Podocyte-associated molecules in urine may indicate DN stages.
Purpose of the Study:
- To investigate the urinary mRNA profiles of podocyte-associated molecules in diabetic nephropathy (DN).
- To determine if these mRNA levels correlate with DN progression and clinical parameters.
Main Methods:
- Quantified relative mRNA abundance of synaptopodin, podocalyxin, CD2-AP, α-actin4, and podocin in urinary sediment from DN patients and controls.
- Categorized DN patients based on urinary albumin excretion (UAE): normoalbuminuria, microalbuminuria, and macroalbuminuria.
- Correlated urinary mRNA levels with clinical parameters like UAE, blood urea nitrogen (BUN), serum creatinine, and estimated glomerular filtration rate (eGFR).
Main Results:
- Urinary mRNA levels of all studied genes were significantly elevated in DN patients compared to controls and increased with DN progression.
- All target mRNAs positively correlated with UAE and BUN.
- Podocalyxin, CD2-AP, α-actin4, and podocin mRNA levels correlated with serum creatinine, while podocalyxin mRNA negatively correlated with eGFR.
Conclusions:
- Urinary mRNA profiles of synaptopodin, podocalyxin, CD2-AP, α-actin4, and podocin increase with diabetic nephropathy (DN) progression.
- Quantification of these podocyte-associated molecules in urine shows promise as effective biomarkers for DN.
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