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Updated: Jul 18, 2026

Optimizing Isolation and Purification of Murine Glomerular Mesangial Cells
Published on: March 7, 2025
Human glomerular mesangial IP15 cell line as a suitable model for in vitro cadmium cytotoxicity studies
B L'Azou1, I Dubus, C Ohayon-Courtès
1Laboratoire de Biologie Cellulaire, Université Victor Segalen - Bordeaux 2, 146 rue Léo-Saignat, 33076 Bordeaux, France. Beatrice.Lazou@biocell-geppr.u-bordeaux2.fr
Abstract:
Cadmium represents a major environmental pollutant that may induce severe damage, especially in the kidney where cadmium accumulates. While cadmium is known to severely impair renal tubular functions, glomerular structures are also potential targets. Owing to their contractile properties, glomerular mesangial cells play a major role in the control of glomerular hemodynamics and influence the ultrafiltration coefficient. Cell cultures provide alternative and fruitful models for study of in vitro toxicology. However, the use of primary human mesangial cell cultures is hampered by their limited survival span and their rapid dedifferentiation during passages. This study presents a human stable immortalized mesangial cell line, designated IP15. Cell characteristics were investigated by the detection of known mesangial markers, as well as their ability to contract in response to angiotensin II. IP15 cells were used to investigate cadmium uptake and morphological changes such as cell contraction and cytoskeleton protein expression. The IC(50) cytotoxicity index was obtained with 3.55 micromol/L using neutral red assay for 24 h. After cadmium exposure (1 micromol/L, determined as nonlethal concentration), 0.38 microg Cd/mg protein was internalized by the cells as evaluated by inductively coupled plasma optical emission spectrometry (ICP/OES). Cadmium induced a significant cell surface reduction that correlated with smooth-muscle alpha-actin disorganization. Thus, the IP15 cell line is a suitable model for study of in vitro cadmium cytotoxicity in mesangial cells and allows sufficient material to be obtained for future studies of the intracellular effects of cadmium exposure.
Insights
This study introduces the IP15 human mesangial cell line for cadmium toxicology research. Cadmium exposure in IP15 cells caused significant cell surface reduction and cytoskeleton disorganization, demonstrating its utility in studying renal cadmium effects.
Area of Science:
- Nephrology
- Environmental Toxicology
- Cell Biology
Background:
- Cadmium is a toxic environmental pollutant accumulating in kidneys.
- Cadmium impairs renal tubular function and may target glomerular structures.
- Primary human mesangial cells have limitations for in vitro toxicology studies.
Purpose of the Study:
- To establish and characterize a stable immortalized human mesangial cell line (IP15).
- To investigate cadmium uptake and cytotoxicity in mesangial cells using the IP15 model.
- To assess cadmium-induced morphological and cytoskeletal changes in mesangial cells.
Main Methods:
- Characterization of IP15 cells for mesangial markers and contractile function.
- Determination of 50% inhibitory concentration (IC50) via neutral red assay.
- Quantification of cadmium uptake using ICP/OES.
- Analysis of cell surface area and smooth-muscle alpha-actin expression.
Main Results:
- The IP15 cell line exhibited stable mesangial cell characteristics.
- The IC50 for cadmium cytotoxicity was 3.55 micromol/L.
- Non-lethal cadmium concentration (1 micromol/L) led to 0.38 microg Cd/mg protein internalization.
- Cadmium exposure induced cell surface reduction and smooth-muscle alpha-actin disorganization.
Conclusions:
- The IP15 cell line is a suitable model for in vitro cadmium cytotoxicity studies in human mesangial cells.
- Cadmium exposure affects mesangial cell morphology and cytoskeleton.
- This model facilitates further research into intracellular cadmium effects in the kidney.

