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Updated: Aug 3, 2026

CRISPR-Cas-mediated Multianalyte Synthetic Urine Biomarker Test for Portable Diagnostics
Published on: December 8, 2023
Urinary DcR2 is a novel biomarker for tubulointerstitial injury in patients with diabetic nephropathy
Jia Chen1, Wei-Wei Zhang1, Ke-Hong Chen1
1Department of Nephrology, Daping Hospital, Third Military Medical University, Chongqing, China.
Abstract:
Tubulointerstitial injury (TII) plays a crucial role in the progression of diabetic nephropathy (DN), but lack of specific and sensitive biomarkers for monitoring TII in DN management. This study is to investigate whether urinary decoy receptor 2 (uDcR2) could serve as a novel noninvasive biomarker for assessing TII in DN. We recruited 311 type 2 diabetics and 139 DN patients who were diagnosed by renal biopsy. uDcR2 levels were measured by ELISA, and renal DcR2 expression was detected immunohistochemically. Associations between uDcR2 and renal DcR2 and renal functional parameters were evaluated. Receiver operating characteristics (ROC) curve analyzed area under the curve (AUC) of uDcR2 for assessing TII. Double staining was undertaken for renal DcR2 with proximal and distal tubular markers; senescent markers p16, p21, and senescence-associated β-galactosidase (SA-β-gal); and fibrotic markers collagen I and IV. We found DcR2 was primarily expressed in renal proximal tubules; uDcR2 levels were elevated per albuminuria stratum and correlated with renal functional parameters in diabetics and were associated with percentage of tubular DcR2 and TII score in DN. The uDcR2 had an AUC of 0.909 for assessing TII in DN by ROC analysis. Almost all tubular DcR2 was coexpressed with p16 and p21, and nearly more than one-half of tubular DcR2 was positive for SA-β-gal, primarily in collagen I- and IV-positive regions of DN. Our results indicate uDcR2 could potentially serve as a novel biomarker for TII and may reflect senescence of renal proximal tubular cells in DN pathogenesis.
Insights
Urinary decoy receptor 2 (uDcR2) shows promise as a noninvasive biomarker for tubulointerstitial injury (TII) in diabetic nephropathy (DN), potentially reflecting tubular cell senescence.
Area of Science:
- Nephrology
- Biomarker Discovery
- Diabetic Complications
Background:
- Tubulointerstitial injury (TII) is a key driver of diabetic nephropathy (DN) progression.
- Current biomarkers for monitoring TII in DN are limited in sensitivity and specificity.
Purpose of the Study:
- To investigate urinary decoy receptor 2 (uDcR2) as a novel, noninvasive biomarker for assessing TII in patients with DN.
- To explore the association between uDcR2, renal DcR2 expression, and indicators of renal function and senescence in DN.
Main Methods:
- Recruited 311 type 2 diabetics and 139 DN patients diagnosed by renal biopsy.
- Measured uDcR2 levels via ELISA and renal DcR2 expression immunohistochemically.
- Utilized ROC curve analysis to determine the area under the curve (AUC) for uDcR2 in assessing TII.
Main Results:
- Elevated uDcR2 levels correlated with albuminuria and renal functional parameters in diabetics.
- uDcR2 levels were associated with tubular DcR2 expression and TII scores in DN patients.
- uDcR2 demonstrated a high AUC (0.909) for assessing TII in DN.
- Renal DcR2 coexpressed with senescence markers (p16, p21, SA-β-gal) and fibrotic markers (collagen I, IV) in DN kidneys.
Conclusions:
- uDcR2 shows potential as a novel noninvasive biomarker for tubulointerstitial injury in diabetic nephropathy.
- uDcR2 may serve as an indicator of renal proximal tubular cell senescence in the pathogenesis of DN.
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