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Updated: Nov 16, 2025

Glomerular Outgrowth as an Ex Vivo Assay to Analyze Pathways Involved in Parietal Epithelial Cell Activation
Published on: August 19, 2020
Novel diagnostic and therapeutic techniques reveal changed metabolic profiles in recurrent focal segmental
Janina Müller-Deile1, George Sarau2,3,4, Ahmed M Kotb5,6
1Department of Nephrology and Hypertension, Friedrich-Alexander-University (FAU) Erlangen-Nuremberg, Erlangen, Germany. janina.mueller-deile@uk-erlanngen.de.
Abstract:
Idiopathic forms of Focal Segmental Glomerulosclerosis (FSGS) are caused by circulating permeability factors, which can lead to early recurrence of FSGS and kidney failure after kidney transplantation. In the past three decades, many research endeavors were undertaken to identify these unknown factors. Even though some potential candidates have been recently discussed in the literature, "the" actual factor remains elusive. Therefore, there is an increased demand in FSGS research for the use of novel technologies that allow us to study FSGS from a yet unexplored angle. Here, we report the successful treatment of recurrent FSGS in a patient after living-related kidney transplantation by removal of circulating factors with CytoSorb apheresis. Interestingly, the classical published circulating factors were all in normal range in this patient but early disease recurrence in the transplant kidney and immediate response to CytoSorb apheresis were still suggestive for pathogenic circulating factors. To proof the functional effects of the patient's serum on podocytes and the glomerular filtration barrier we used a podocyte cell culture model and a proteinuria model in zebrafish to detect pathogenic effects on the podocytes actin cytoskeleton inducing a functional phenotype and podocyte effacement. We then performed Raman spectroscopy in the < 50 kDa serum fraction, on cultured podocytes treated with the FSGS serum and in kidney biopsies of the same patient at the time of transplantation and at the time of disease recurrence. The analysis revealed changes in podocyte metabolome induced by the FSGS serum as well as in focal glomerular and parietal epithelial cell regions in the FSGS biopsy. Several altered Raman spectra were identified in the fractionated serum and metabolome analysis by mass spectrometry detected lipid profiles in the FSGS serum, which were supported by disturbances in the Raman spectra. Our novel innovative analysis reveals changed lipid metabolome profiles associated with idiopathic FSGS that might reflect a new subtype of the disease.
Insights
Idiopathic Focal Segmental Glomerulosclerosis (FSGS) involves unknown circulating factors. This study identified altered lipid metabolome profiles in FSGS patients, suggesting a new disease subtype and potential therapeutic targets.
Area of Science:
- Nephrology
- Biochemistry
- Medical Technology
Background:
- Idiopathic Focal Segmental Glomerulosclerosis (FSGS) recurrence post-transplantation is linked to circulating permeability factors.
- Identifying these factors has been challenging, driving the need for novel research approaches.
Observation:
- A patient with recurrent FSGS post-transplantation responded to CytoSorb apheresis, despite normal levels of known permeability factors.
- Patient serum induced podocyte dysfunction in vitro and in vivo models.
- Raman spectroscopy and mass spectrometry revealed altered lipid profiles in patient serum and kidney biopsies.
Findings:
- Novel analysis identified distinct lipid metabolome profiles associated with idiopathic FSGS.
- These findings suggest a potential new subtype of FSGS characterized by lipid metabolism disturbances.
Implications:
- The identified lipid profiles may serve as biomarkers for FSGS diagnosis and classification.
- This research opens new avenues for understanding FSGS pathogenesis and developing targeted therapies.
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