Glutathione protects metastatic melanoma cells against oxidative stress in the murine hepatic microvasculature
Open Access
- 1 May 1998
- journal article
- research article
- Published by Wolters Kluwer Health in Hepatology
- Vol. 27 (5) , 1249-1256
- https://doi.org/10.1002/hep.510270510
Abstract
Calcein-labeled B16 melanoma (B16M) cells were injected intraportally, and in vivo video microscopy was used to study the distribution and damage of cancer cells arrested in the liver microvasculature over a period of 4 hours. The contribution of glutathione (GSH)-dependent antioxidant machinery to the possible oxidative stress-resistance mechanism of B16M cell was determined by in vitro incubation with the selective inhibitor of GSH synthesis l-buthionine (S,R)-sulphoximine (BSO) before B16M cell injection in untreated and 0.5-mg/kg lipopolysaccharide (LPS)-treated mice. In addition, untreated and LPS-treated isolated syngeneic hepatic sinusoidal endothelial cells (HSE) were used to determine in vitro their specific contribution to B16M cell damage. Trauma inherent to intrasinusoidal lodgement damaged 35% of B16M cells in both normal and LPS-treated mouse liver. The rest of the arrested B16M cells remained intact in normal liver for at least 4 hours, although their damaged cell percentage significantly (P < .05) increased since the second hour in normal mice injected with BSO-treated cells and since the first hour in LPS-treated mice given untreated cells. Recombinant human interleukin-1 receptor antagonist (rHuIL-1-Ra) given to mice 15 minutes before LPS significantly (P < .05) abrogated B16M cell damage. On the other hand, 40% of the B16M cells co-cultured with unstimulated HSE and 70% of the co-cultured with LPS-treated HSE became sensitive to endothelial cell-mediated damage after BSO treatment. These results demonstrate that a high intracellular level of GSH protects B16M cells from possible in vivo and in vitro sinusoidal cell-mediated oxidative stress, contributing to the mechanism of metastatic cell survival within the hepatic microvasculature.Keywords
This publication has 25 references indexed in Scilit:
- Sinusoidal endothelium release of hydrogen peroxide enhances very late antigen-4-mediated melanoma cell adherence and tumor cytotoxicity during interleukin-1 promotion of hepatic melanoma metastasis in miceHepatology, 1997
- In vivo microscopy of hepatic metastases: Dynamic observation of tumor cell invasion and interaction with Kupffer cellsHepatology, 1995
- Cancer‐cell traffic in the liver. II. Arrest, transit and death of B16F10 and M5076 cells in the sinusoidsInternational Journal of Cancer, 1993
- Biomechanical interactions of cancer cells with the microvasculature during hematogenous metastasisCancer and Metastasis Reviews, 1992
- Lipopolysaccharide Treatment of Rats Alters Antigen Expression and Oxidative Metabolism in Hepatic Macrophages and Endothelial CellsHepatology, 1992
- Glutathione content of human malignant melanoma cell linesMelanoma Research, 1992
- Kupffer cell-mediated oxidative stress on colon cancer cell line visualized by digital imaging fluorescence microscopyCancer Letters, 1991
- Induction of glutathione content in murine melanocytes after transformation with c-H-ras oncogeneCarcinogenesis: Integrative Cancer Research, 1991
- Role of Endotoxin–Responsive Macrophages in Hepatic InjuryHepatology, 1990
- Nile red: a selective fluorescent stain for intracellular lipid droplets.The Journal of cell biology, 1985