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Published on: May 26, 2023
Podocyte-Released Migrasomes in Urine Serve as an Indicator for Early Podocyte Injury
Ying Liu1,2, Shan Li1,2, Weiwei Rong2
1National Clinical Research Center of Kidney Diseases, Jinling Hospital, Nanjing University School of Medicine, Nanjing, China.
Background:
Levels of urinary microvesicles, which are increased during various kidney injuries, have diagnostic potential for renal diseases. However, the significance of urinary microvesicles as a renal disease indicator is dampened by the difficulty to ascertain their cell source.
Objectives:
The aim of this study was to demonstrate that podocytes can release migrasomes, a unique class of microvesicle with size ranging between 400 and 2,000 nm, and the urine level of migrasomes may serve as novel non-invasive biomarker for early podocyte injury.
Method:
In this study, immunofluorescence labeling, electronic microscopy, nanosite, and sequential centrifugation were used to purify and analyze migrasomes.
Results:
Migrasomes released by podocytes differ from exosomes as they have different content and mechanism of release. Compared to podocytes, renal tubular cells secrete markedly less migrasomes. Moreover, secretion of migrasomes by human or murine podocytes was strongly augmented during podocyte injuries induced by LPS, puromycin amino nucleoside (PAN), or a high concentration of glucose (HG). LPS, PAN, or HG-induced podocyte migrasome release, however, was blocked by Rac-1 inhibitor. Strikingly, a higher level of podocyte migrasomes in urine was detected in mice with PAN-nephropathy than in control mice. In fact, increased urinary migrasome number was detected earlier than elevated proteinuria during PAN-nephropathy, suggesting that urinary migrasomes are a more sensitive podocyte injury indicator than proteinuria. Increased urinary migrasome number was also detected in diabetic nephropathy patients with proteinuria level <5.5 g/day.
Conclusions:
Our findings reveal that podocytes release the "injury-related" migrasomes during migration and provide urinary podocyte migrasome as a potential diagnostic marker for early podocyte injury.
Insights
Podocytes release migrasomes, a novel urinary biomarker for early kidney injury. Increased urinary migrasomes detect podocyte damage before proteinuria, offering a sensitive diagnostic tool for renal diseases.
Area of Science:
- Nephrology
- Cell Biology
- Biomarker Discovery
Background:
- Urinary microvesicles indicate kidney injury but lack specific cell source identification.
- Ascertaining the origin of microvesicles is crucial for accurate renal disease diagnosis.
Purpose of the Study:
- To demonstrate podocyte-derived migrasome release.
- To establish urinary migrasomes as a non-invasive biomarker for early podocyte injury.
Main Methods:
- Immunofluorescence labeling and electronic microscopy for migrasome analysis.
- Nanosite and sequential centrifugation for migrasome purification.
- Induction of podocyte injury using LPS, PAN, and high glucose models.
Main Results:
- Podocyte-derived migrasomes differ from exosomes in content and release mechanism.
- Migrasome secretion is significantly increased in podocytes under injury conditions (LPS, PAN, HG).
- Urinary migrasome levels rise earlier than proteinuria in PAN-nephropathy models and in diabetic nephropathy patients.
Conclusions:
- Podocytes release injury-related migrasomes during cellular stress.
- Urinary podocyte migrasomes serve as a sensitive, non-invasive biomarker for early podocyte injury.
- This finding offers a novel diagnostic approach for renal diseases.
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