Related Experiment Video
Updated: Aug 12, 2026

Isolation of Mouse Peritoneal Cavity Cells
Published on: January 28, 2010
Cytostatic peptide isolation from culture media of mouse peritoneal exudate cells
Abstract:
It was found that the supernatant of mouse PEC culture medium (MCM) (both resident and casein-elicited cells) has an inhibitory effect in vitro on the incorporation of [3H]TdR into DNA of mouse spleen cells. The inhibitory effect in the MCM appears in the first 24 hr and also reaches its maximum value within this time. The inhibitory effect of this factor could not be demonstrated in the extract of freshly harvested M phi cells. The factors responsible for inhibition proved to be heat stable at 80 degrees C for longer than 30 min. Following heat treatment, the crude extract was separated into four fractions absorbing uv light at 280 nm using Sephadex G-25 column chromatography, and the most potent biologically active inhibitory factor was eluted in the last fraction. This fraction could also be obtained with a more effective permeation volume using Trysacryl GF 05 gel chromatography, and the active B fraction from this chromatography could be separated into four subfractions by isotachophoresis (ITP). The active fraction, which was obtained by Trysacryl GF 05 gel chromatography and further separated by ITP, was found to be highly inhibitory. It contained a peptide-like substance with a molecular mass of approximately 2.0 kDa and had an anionic character at pH 4.0. The inhibitory effect of MCM cannot be influenced either by inhibitory compounds of protein synthesis or by proteolysis blocking agents. Furthermore, the inhibitory effect is shown to be reversible and is more pronounced on B cells than on T lymphocytes.
Insights
Mouse culture medium supernatant inhibits DNA synthesis in spleen cells. This heat-stable, peptide-like factor, approximately 2.0 kDa, reversibly impacts B cells more than T lymphocytes.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Mouse peritoneal exudate cell (PEC) culture medium (MCM) supernatant exhibits regulatory functions.
- Understanding MCM's effect on lymphocyte proliferation is crucial for immune response modulation.
Purpose of the Study:
- To investigate the inhibitory effect of MCM supernatant on mouse spleen cell DNA incorporation.
- To characterize the nature and properties of the inhibitory factor(s).
Main Methods:
- In vitro incubation of mouse spleen cells with MCM supernatant.
- Assessment of [3H]thymidine incorporation into DNA.
- Heat stability tests, Sephadex G-25 column chromatography, Trysacryl GF 05 gel chromatography, and isotachophoresis (ITP).
Main Results:
- MCM supernatant significantly inhibited [3H]thymidine incorporation into DNA within 24 hours.
- The inhibitory factor is heat-stable (80°C for 30 min), peptide-like, ~2.0 kDa, and anionic at pH 4.0.
- The effect is reversible and more pronounced on B cells than T lymphocytes.
Conclusions:
- MCM contains a potent, heat-stable inhibitory factor affecting lymphocyte DNA synthesis.
- This factor, likely a peptide, selectively impacts B cells, suggesting a role in immune regulation.

