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Published on: March 4, 2022
Urine podocyte mRNAs mark progression of renal disease
Yuji Sato1, Bryan L Wharram, Sang Koo Lee
1University of Michigan Health System, Division of Nephrology, Ann Arbor, MI 48109-0676, USA.
Abstract:
Because loss of podocytes associates with glomerulosclerosis, monitoring podocyte loss by measuring podocyte products in urine may be clinically useful. To determine whether a single episode of podocyte injury would cause persistent podocyte loss, we induced limited podocyte depletion using a diphtheria toxin receptor (hDTR) transgenic rat. We monitored podocyte loss by detecting nephrin and podocin mRNA in urine particulates with quantitative reverse transcriptase-PCR. Aquaporin 2 mRNA served as a kidney reference gene to account for variable kidney contribution to RNA amount and quality. We found that a single injection of diphtheria toxin resulted in an initial peak of proteinuria and podocyte mRNAs (podocin and nephrin) followed 8 d later by a second peak of proteinuria and podocyte mRNAs that were podocin positive but nephrin negative. Proteinuria that persisted for months correlated with podocin-positive, nephrin-negative mRNAs in urine. Animals with persistent podocyte mRNA in urine progressed to ESRD with global podocyte depletion and interstitial scarring. Podocytes in ectatic tubules expressed podocalyxin and podocin proteins but not nephrin, compatible with detached podocytes' having an altered phenotype. Parallel human studies showed that biopsy-proven glomerular injury associated with increased urinary podocin:aquaporin 2 and nephrin:aquaporin 2 molar ratios. We conclude that a single episode of podocyte injury can trigger glomerular destabilization, resulting in persistent podocyte loss and an altered phenotype of podocytes recovered from urine. Podocyte mRNAs in urine may be a useful clinical tool for the diagnosis and monitoring of glomerular diseases.
Insights
A single podocyte injury can cause persistent kidney damage and end-stage renal disease (ESRD). Measuring urinary podocyte messenger RNA (mRNA) may help diagnose and monitor glomerular diseases.
Area of Science:
- Nephrology
- Molecular Biology
- Pathology
Background:
- Podocyte loss is linked to glomerulosclerosis.
- Monitoring urinary podocyte products could aid clinical assessment.
Purpose of the Study:
- To investigate if a single podocyte injury episode leads to sustained podocyte depletion.
- To assess the utility of urinary podocyte mRNA as a biomarker for glomerular injury.
Main Methods:
- Utilized diphtheria toxin receptor (hDTR) transgenic rats for controlled podocyte depletion.
- Quantified nephrin and podocin mRNA in urine particulates via reverse transcriptase-PCR.
- Used Aquaporin 2 mRNA as a reference gene for RNA normalization.
Main Results:
- A single toxin injection induced biphasic peaks in proteinuria and podocyte mRNA.
- Persistent proteinuria correlated with podocin-positive, nephrin-negative urinary mRNA.
- Animals with persistent urinary mRNA showed progression to ESRD with podocyte loss and scarring.
- Human studies confirmed elevated urinary podocin and nephrin mRNA ratios in biopsy-proven glomerular injury.
Conclusions:
- Transient podocyte injury can initiate glomerular destabilization and chronic podocyte loss.
- Urinary podocyte mRNA analysis shows promise as a diagnostic and monitoring tool for glomerular diseases.
- Detached podocytes exhibit altered phenotypes, expressing podocin but not nephrin.
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