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P Matthys

Publications and source records attributed to P Matthys.

40 records · Page 3Linked to original sources

Severe cachexia in mice inoculated with interferon-gamma-producing tumor cells.

Nude mice were inoculated with CHO/IFN-gamma cells, a line of Chinese hamster ovary tumor cells, that had been genetically engineered to produce murine IFN-gamma. Severe cachexia, as evident from body weight loss and reduced food intake, occurred in these mice, but not in those injected with CHO/control cells, i.e. the original, non-IFN-gamma-producing line. The essential role of IFN-gamma in the pathogenesis of cachexia was confirmed by the demonstration that monoclonal antibodies (MAbs) against IFN-gamma, given prior to injection of the tumor cells, prevented cachexia. In addition to IFN-gamma, the presence of the tumor cells was also required for cachexia to develop. As evident from pair-feeding experiments, reduced food intake could only partially account for the rapid and extensive body-weight loss. Cachexia was characterized by a marked reduction in the amount of interscapular fat tissue. Injected tumor cells exclusively invaded intraperitoneal adipose tissue and elicited an inflammatory cell infiltrate, indicating that interscapular fat loss was due to humoral factors. Our data suggest that, among the humoral factors responsible for cancer-associated cachexia, IFN-gamma plays a prominent role.

Adipose Tissue↗

Anti-interferon-gamma antibody treatment, growth of Lewis lung tumours in mice and tumour-associated cachexia.

C57BL/6N mice bearing Lewis lung tumours were treated with anti-gamma-interferon (IFN-gamma) monoclonal antibodies. Early, but not late, treatment inhibited tumour growth, suggesting that endogenous IFN-gamma promotes initial tumour cell proliferation. Tumour development was associated with failure to gain weight or with progressive weight loss. Anti-IFN-gamma given early or late counteracted this wasting syndrome, which indicates that IFN-gamma production subsists during tumour growth and is directly or indirectly responsible for tumour-associated cachexia. Studies of body composition in cachectic mice revealed fat tissue to be particularly affected. Fat loss was enhanced by IFN-gamma and antagonised by anti-IFN-gamma. Tumour-bearing mice were also hypersensitive to the lethal effect of endotoxin; anti-IFN-gamma was unable to mitigate this sensitisation, suggesting that IFN-gamma does not exert its cachexia-inducing effect through augmentation of the host response to an endogenous endotoxin source.

Animals↗