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Published on: June 27, 2017
Peritoneal dialysis effluent-derived exosomal miR-432-5p: an assessment tool for peritoneal dialysis efficacy
Yan Tong1, Jun-Yan Fang1, A-Hui Song1
1Department of Nephrology, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Background:
Ultrafiltration (UF) volume and peritoneal solute transport rate (PSTR) are common parameters used to evaluate the efficacy of peritoneal dialysis (PD) on individual patients. It is unclear whether the level of exosomal microRNA (miRNA) in peritoneal dialysis effluent (PDE) can predict UF or PSTR. This study was designed to investigate if there is a correlation between PDE exosomal miRNA (miR-432-5p) levels and various UF volumes and PSTRs in PD patients. It also aimed to explore the underlying mechanism of water and dialytic sodium removal (DSR).
Methods:
The PSTR was quantified using the 4-hour (4 h) 3.86% dialysate to plasma creatinine ratio. The PDE exosomes (PDE-exo) were isolated by ultracentrifugation. An miRNA assay was used to identify the different miRNA in the PDE-exo of patients in a high (H; PSTR >0.65, n=5) and low (L; PSTR <0.65, n=5) group. We focused on miR-432-5p as bioinformatic analysis had shown that it could be involved in sodium transport. We used mimic/inhibitor transfection and dual luciferase reporter assay to verify the target genes of miR-432-5p. We used PKH-67 stained PDE-exo to observe their interaction with human MeT-5A mesothelial cells.
Results:
Our results showed that the PDE-exo-miR-432-5p level was higher in group H than in group L. The levels of PDE-exo-miR-432-5p were positively correlated with PSTR (r=0.391; P<0.05; n=40) and negatively correlated with the 4 h UF volume (r=-0.376; P<0.05; n=40) and 4 h DSR (r=-0.535; P<0.01; n=24). Epithelial sodium channel α subunit (α-ENaC) was revealed as a direct target gene of miR-432-5p and expressed on both human peritoneum and MeT-5A cells. Furthermore, we found the PKH67 labeled-PDE-exo could be internalized into MeT-5A cells.
Conclusions:
A high PDE-exo-miR-432-5p level was associated with poor UF volume and DSR. It may be that PDE-exo-miR-432-5p affects DSR through downregulating α-ENaC expression.
Insights
Higher levels of exosomal microRNA (miRNA) miR-432-5p in peritoneal dialysis effluent (PDE) correlate with poorer ultrafiltration (UF) volume and dialysate sodium removal (DSR) in patients undergoing peritoneal dialysis (PD). This suggests PDE exosomal miR-432-5p may impact DSR by downregulating epithelial sodium channel alpha subunit (α-ENaC) expression.
Area of Science:
- Nephrology
- Molecular Biology
- Biochemistry
Background:
- Peritoneal dialysis (PD) efficacy is assessed by ultrafiltration (UF) volume and peritoneal solute transport rate (PSTR).
- The predictive role of exosomal microRNA (miRNA) levels in peritoneal dialysis effluent (PDE) for UF and PSTR remains unclear.
- This study investigates the correlation between PDE exosomal miR-432-5p and UF/PSTR, exploring mechanisms of water and sodium removal.
Purpose of the Study:
- To determine if PDE exosomal miR-432-5p levels correlate with UF volume and PSTR in PD patients.
- To explore the potential mechanism by which miR-432-5p influences water and dialytic sodium removal (DSR).
Main Methods:
- Quantified PSTR using the 4-hour dialysate to plasma creatinine ratio.
- Isolated PDE exosomes (PDE-exo) via ultracentrifugation and analyzed miRNA profiles.
- Focused on miR-432-5p, verifying its target genes (α-ENaC) using transfection and reporter assays, and observing PDE-exo uptake by mesothelial cells.
Main Results:
- PDE exosomal miR-432-5p levels were significantly higher in patients with high PSTR.
- miR-432-5p levels positively correlated with PSTR and negatively with 4-hour UF volume and DSR.
- Epithelial sodium channel α subunit (α-ENaC) was identified as a direct target of miR-432-5p, expressed in peritoneal cells.
Conclusions:
- Elevated PDE exosomal miR-432-5p is associated with reduced UF volume and DSR in PD patients.
- PDE exosomal miR-432-5p may impair DSR by downregulating α-ENaC expression.
- Exosomal miR-432-5p shows potential as a biomarker for PD efficacy.
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