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Surgical stress-mediated suppression of murine natural killer cell cytotoxicity
Abstract:
Natural killer cell-mediated cytotoxicity (NKCC) is one of several possible immune defense mechanisms that may protect against the development of solid-tumor metastases. We have demonstrated that in vitro NKCC can be significantly impaired by both surgical stress and progressive tumor burden. Female C57BL/6 mice received a hindfoot amputation under anesthesia with Nembutal i.p. Twenty-four hr later, amputated and control groups were sacrificed, spleens were harvested, and cytotoxicity assays were performed using 51Cr-labeled Yac-1 lymphoma target cells. In amputated animals, in vitro NKCC was significantly impaired at four effector:target ratios, decreasing by as much as 59%. Nembutal treatment alone caused no significant changes in in vitro NKCC compared to untreated controls. Tumor burden was studied by inoculating the hindfoot pads of C57BL/6 mice with 5 X 10(5) Lewis lung tumor cells. Animal groups were sacrificed 24 hr, 1 week, and 2 weeks after tumor inoculation, and the 51Cr release assay was performed. One day and 1 week of tumor burden mildly stimulated NKCC in vitro; after 2 weeks of tumor burden, when lung metastases were detectable, in vitro NKCC was almost totally suppressed compared with non-tumor-bearing controls. Animals bearing tumor for 1 week and then given amputations showed significantly impaired NKCC in vitro. In vivo, identical animals bearing tumor for 1 week and then given amputations on sacrifice 1 week later were found to have a 71% incidence of lung metastases compared with 38% tumor-bearing unstressed controls. Surgical stress and progressive tumor burden independently and codependently impair NKCC in vitro; this may possibly contribute to the hypermetastatic response observed after surgical stress in this in vivo animal model.
Insights
Surgical stress and tumor growth significantly weaken natural killer cell activity, potentially increasing cancer spread. This impairment of natural killer cell-mediated cytotoxicity (NKCC) was observed in mouse models.
Area of Science:
- Immunology
- Oncology
- Surgical Pathology
Background:
- Natural killer cell-mediated cytotoxicity (NKCC) is a key immune defense against solid tumors.
- Both surgical stress and tumor burden can impact immune function.
Purpose of the Study:
- To investigate the effects of surgical stress and tumor burden on NKCC.
- To determine if these factors contribute to cancer metastasis.
Main Methods:
- Mice underwent hindfoot amputation under anesthesia.
- Lewis lung tumor cells were inoculated into mouse hindfoot pads.
- In vitro cytotoxicity assays and in vivo metastasis assessments were performed.
Main Results:
- Surgical stress alone significantly impaired in vitro NKCC by up to 59%.
- Two weeks of tumor burden almost totally suppressed in vitro NKCC.
- Combined surgical stress and tumor burden led to a 71% incidence of lung metastases in vivo.
Conclusions:
- Surgical stress and progressive tumor burden independently and synergistically impair NKCC.
- This immune suppression may contribute to the hypermetastatic response observed after surgery.