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Updated: May 18, 2026

Impedance-based Real-time Measurement of Cancer Cell Migration and Invasion
Published on: April 2, 2020
The cellular cancer resistance of the SR/CR mouse
Janne Koch1, Jann Hau, Henrik E Jensen
1Department of Experimental Medicine, Faculty of Health sciences, University of Copenhagen, 2200 Copenhagen, Denmark. Jako@sund.ku.dk
Abstract:
The SR/CR mouse phenotype, first described in 1999 in BALB/c and later bred into C57BL/6 mice, is resistant to cancer formation following high doses of cancer cells administered intraperitoneally. The tumor cell targeting and destruction mechanisms have not been identified. By fluorescence-activated cell sorting analysis, the immune response of SR/CR mice after intraperitoneal injection of cancer cells was investigated and compared with parent strain mice. A massive influx of leukocytes into the peritoneal cavity was found. A large fraction of these leukocytes were polymorphonuclear granulocytes, macrophages and natural killer cells. A relative decrease in influx of B-cells compared with controls was demonstrated. Increased proportions of leukocytes belonging to the innate immune system were also demonstrated in splenocytes of SR/CR mice. Cytospins of peritoneal fluid from SR/CR mice after cancer cell injection showed formations of immune cells morphologically resembling polymorphonuclear granulocytes and macrophages adjoining the cancer cells. The results point to the potential involvement of innate immune cells in cancer immunology. Our data support migration of polymorphonuclear granulocytes, macrophages and NK cells into the peritoneum of the SR/CR mouse in response to intraperitoneal injection of S180 cancer cells. The cell composition of spleens of SR/CR mice reflected the differential regulation of the innate immune cells in peritoneal exudates. Both peritoneal exudates and the spleens of SR/CR mice contained decreased proportions of B-cells compared with BALB/c and C57BL/6 mice. We reproduce important aspects of previous published data and further extend them by showing differentially regulated populations of splenocytes including B-lymphocytes in SR/CR mice compared with parent strain controls. Importantly, this differentially regulated immune response of SR/CR mice could not be found in response to challenge with the lymphoma cell line EL-4.
Insights
SR/CR mice exhibit cancer resistance due to enhanced innate immune cell activity, specifically polymorphonuclear granulocytes, macrophages, and natural killer cells, which target tumor cells. This study investigates the immune mechanisms behind this resistance.
Area of Science:
- Immunology
- Cancer Biology
- Innate Immunity
Background:
- The SR/CR mouse model displays resistance to intraperitoneal cancer cell challenge.
- The underlying mechanisms of tumor cell targeting and destruction in SR/CR mice remain unclear.
Purpose of the Study:
- To investigate the immune response in SR/CR mice following intraperitoneal cancer cell injection.
- To compare the immune cell populations in SR/CR mice with control strains.
Main Methods:
- Fluorescence-activated cell sorting (FACS) analysis of peritoneal lavage and splenocytes.
- Morphological examination of immune cells in peritoneal fluid.
Main Results:
- SR/CR mice showed a massive influx of leukocytes, predominantly polymorphonuclear granulocytes, macrophages, and natural killer (NK) cells, into the peritoneal cavity.
- A relative decrease in B-cell influx was observed in SR/CR mice compared to controls.
- Splenocytes of SR/CR mice exhibited increased proportions of innate immune cells and decreased proportions of B-cells.
- Immune cells in peritoneal fluid adhered to injected cancer cells.
Conclusions:
- Innate immune cells, including polymorphonuclear granulocytes, macrophages, and NK cells, play a significant role in the cancer resistance of SR/CR mice.
- The spleen composition reflects the differential regulation of innate immune cells observed in peritoneal exudates.
- The observed immune response is specific to the S180 cancer cell line and not elicited by the EL-4 lymphoma cell line.
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