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Updated: Aug 19, 2026

Radionuclide-fluorescence Reporter Gene Imaging to Track Tumor Progression in Rodent Tumor Models
Published on: March 13, 2018
Tissue distribution of radiolabelled tumor cells in wheel exercised and sedentary mice
L Hoffmann-Goetz1, B MacNeil, Y Arumugam
1Department of Health Studies and Gerontology, University of Waterloos, Ontario, Canada.
Abstract:
During the process of metastasis tumor cells must interact with vascular endothelial cells, basement membrane, and extracellular matrix. Specifically, tumor cells must bind to adhesion molecules to extravasate from the circulation into the tissue. Expression of adhesion molecules is altered by cytokines, such as tumor necrosis factor and interleukin-1. Exercise has been reported to alter circulatory levels of these cytokines. We have recently shown that exercise training reduces the number of experimental metastases in mice following intravenous (i.v.) injection of tumor cells. Thus, it was of interest to determine if one possible mechanism of reduced metastasis in exercised mice was a reduction in the initial retention of tumor cells in the pulmonary circulation. C3H/He and (C3H/H3XBALB/c)F1 mice were given access to running wheels or remained sedentary for nine weeks after which 51Cr labelled CIRAS 1 tumor cells (5 x 10(5) cells) were injected into a tail vein. Recovery of radioactivity in lungs, liver, spleen and kidney was assessed 5 min, 30 min, 90 min, 3 h and 24 h after injection. Wheel running mice displayed a lower retention of radioactivity in the lungs relative to sedentary mice 5 min (F1,34 = 11.91, p < 0.002; W = 59.1 +/- 3.6%, S = 75.0 +/- 2.9%; Mean +/- S.E.) and 30 min (F1,18 = 64.00, p < 0.001; W = 32.4 +/- 3.4%, S = 68.5 +/- 3.0%) post-injection. Radioactivity recovered in the lungs from wheel and sedentary mice was not significantly different at the other time points.(ABSTRACT TRUNCATED AT 250 WORDS)

