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Isolation and culture of pleural mesothelial cells
Norikazu Kawai1,2, Yukiteru Ouji2, Masaharu Sakagami2
1a Department of Thoracic and Cardiovascular Surgery , Nara Medical University , Kashihara , Japan.
Abstract:
Purpose: Although the isolation of rat and mouse mesothelial cells has previously been reported, most mesothelial cells used for experimental studies are obtained from peritoneal cells. Here, we describe an optimized method for the isolation and in vitro propagation of rodent pleural mesothelial cells without the requirement for specialized surgical techniques. Materials and Methods: To harvest pleural mesothelial cells, the pleural space of 8-9-week-old rats or older mice was filled with 0.25% trypsin in ethylenediaminetetraacetic acid (EDTA) buffer for 20 min at 37 °C. Cells were then harvested, and incubated at 37 °C in a humidified atmosphere with 5% CO2. Immunofluorescence analysis of plated pleural mesothelial cells was performed using Alexa 546 (calretinin). To investigate optimal proliferation conditions, medium enriched with various concentrations of fetal calf serum (FCS) was used for pleural mesothelial cell proliferation. Results: By day 10, confluent cell cultures were established, and the cells displayed an obvious cobblestone morphology. Immunofluorescence analysis of the cells demonstrated that all stained positive for Alexa 546 (calretinin) expression. Mesothelial cells grew better in medium containing 20% FCS than with 10% FCS. Conclusions: This is a simple procedure for the efficient collection of primary pleural mesothelial cells, which were obtained in defined culture conditions from the euthanized rodent thoracic cavity using trypsin-EDTA treatment. The ability to easily culture and maintain identifiable pleural mesothelial cells from rodents will be helpful for future experiments using these cells.
Insights
Researchers developed a simple method to isolate and culture rodent pleural mesothelial cells using trypsin-EDTA. This technique efficiently yields pure cells for future research, bypassing complex surgical procedures.
Area of Science:
- Cell Biology
- Histology
Background:
- Most experimental mesothelial cells are derived from peritoneal sources.
- Previous isolation methods for rodent pleural mesothelial cells often require specialized surgical techniques.
Purpose of the Study:
- To describe an optimized, non-surgical method for isolating and culturing rodent pleural mesothelial cells.
- To establish a reliable source of primary pleural mesothelial cells for research.
Main Methods:
- Harvesting pleural mesothelial cells from rats or mice using trypsin-EDTA solution in the pleural space.
- Culturing cells in a humidified incubator (37°C, 5% CO2).
- Assessing cell purity and morphology via immunofluorescence (calretinin) and observing cobblestone appearance.
Main Results:
- Confluent cultures of pleural mesothelial cells with cobblestone morphology were established by day 10.
- Immunofluorescence confirmed positive calretinin expression, indicating mesothelial cell identity.
- Optimal cell proliferation was observed in medium supplemented with 20% fetal calf serum (FCS) compared to 10% FCS.
Conclusions:
- A simple, efficient method for isolating primary rodent pleural mesothelial cells using trypsin-EDTA treatment has been established.
- This procedure avoids specialized surgery and yields identifiable cells in defined culture conditions.
- The technique facilitates the maintenance and use of rodent pleural mesothelial cells in future experimental studies.
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