Related Experiment Video
Updated: Sep 20, 2025

Author Spotlight: Generation of Patient-Derived Podocytes from Skin Biopsies
Published on: May 26, 2023
Comprehensively characterizing cellular changes and the expression of THSD7A and PLA2R1 under multiple in vitro
Rong Zhang1,2, Yu Shi1, Yang Lu3
1Laboratory of Medical Science, School of Medicine, Nantong University, Nantong, Jiangsu, China.
Abstract:
The unique morphology and gene expression of podocytes are critical for kidney function, and their abnormalities lead to nephropathies such as diabetic nephropathy and membranous nephropathy. Podocytes cultured in vitro are valuable tools to dissect the molecular mechanism of podocyte injury relative to nephropathy, however, these models have never been comprehensively compared. Here, we comprehensively compared the morphology, cytoskeleton, cell adhesion, cell spreading, cell migration, and lipid metabolism under five commonly used in vitro models including lipopolysaccharide (LPS), puromycin aminonucleoside (PAN), doxorubicin (Dox), high glucose, and glucose deprivation. Our results indicate that all stimulations significantly downregulate the expression of synaptopodin both in human and mouse podocytes. All stimulations affect podocyte morphology but show different intensity and phenotypes. In general, the five stimulations reduce cell adhesion, cell spreading, and cell migration, but the effect in human and mouse podocytes is slightly different. Human podocytes show high expression of genes enriched in the pentose phosphate pathway. Dox and PAN treatment show a strong effect on gene expression in lipid metabolism, while the other three stimulations show minimal effect. The expression of phospholipase A2 receptor (PLA2R1) and type-1 domain-containing protein 7 A (THSD7A) show opposite trends in given cells. Stimulations can dramatically affect the expression of PLA2R1 and THSD7A. Inhibition of super-enhancers reduces PLA2R1 and THSD7A expression, but ERK inhibition enhances their expression. Our results demonstrate distinctive responses in five commonly used in vitro podocyte injury models and the dynamic expression of PLA2R1 and THSD7A, which supply novel information to select suitable podocyte injury models.
Insights
This study compares five common in vitro podocyte injury models, revealing distinct cellular and molecular responses. Findings highlight differential effects on cell behavior and gene expression, aiding selection of appropriate podocyte models for nephropathy research.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Medicine
Background:
- Podocyte unique morphology and gene expression are vital for kidney function.
- Podocyte abnormalities cause nephropathies like diabetic and membranous nephropathy.
- In vitro podocyte models are crucial for studying molecular mechanisms of injury but lack comprehensive comparison.
Purpose of the Study:
- To comprehensively compare five common in vitro podocyte injury models.
- To evaluate differences in morphology, cytoskeleton, cell adhesion, spreading, migration, and lipid metabolism.
- To analyze gene expression changes, including synaptopodin, PLA2R1, and THSD7A.
Main Methods:
- Comparison of five in vitro podocyte injury models: LPS, PAN, Dox, high glucose, and glucose deprivation.
- Assessment of podocyte morphology, cytoskeleton, cell adhesion, spreading, and migration.
- Analysis of gene expression, focusing on lipid metabolism and specific markers like synaptopodin, PLA2R1, and THSD7A.
Main Results:
- All tested stimulations downregulated synaptopodin expression in human and mouse podocytes.
- Stimulations differentially affected podocyte morphology, cell adhesion, spreading, and migration.
- Dox and PAN treatments strongly impacted lipid metabolism gene expression, unlike other stimuli.
- PLA2R1 and THSD7A expression showed opposing trends and were dynamically affected by stimulations.
Conclusions:
- Distinctive responses were observed across the five in vitro podocyte injury models.
- The dynamic expression of PLA2R1 and THSD7A provides novel insights.
- These findings aid in selecting suitable podocyte injury models for nephropathy research.
More Related Videos
08:06Guided Differentiation of Mature Kidney Podocytes from Human Induced Pluripotent Stem Cells Under Chemically Defined Conditions
Published on: July 2, 2020
07:15Mechanism of Kemeng Fang's Inhibition of Podocyte Apoptosis in Rats with Membranous Nephropathy through the PI3K/AKT Signaling Pathway
Published on: August 23, 2024