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Biomedical subjects

I Berczi

Publications and source records attributed to I Berczi.

97 records · Page 6Linked to original sources

Antiestrogens affect both pathways of killer cell-mediated oncolysis.

BACKGROUND: Our previous studies indicate that antiestrogenic drugs tamoxifen (TX) and toremifene (TO) augment immune oncolysis induced by various killer cells. The underlying mechanism(s), however, have not been fully elucidated. MATERIALS AND METHODS: Ovarian carcinoma cells freshly isolated from cancer patients and the human erythroleukemia cell line, K562 were used as targets for killer cells and/or the anti-Fas monoclonal antibody, CH-11 in 51Cr release assays. In a number of experiments, extracellular Ca++ was chelated by EGTA/MgCl2 to distinguish Ca(++)-dependent perforin/granzyme pathway from Fas/FasL pathway. Fas expression was studied by flow cytometry. RESULTS: Ovarian carcinoma cells were sensitized by antiestrogens towards enhanced cytolysis mediated by autologous cytotoxic lymphocytes. Antiestrogens also significantly augmented the killing of ovarian carcinoma cells triggered by anti-Fas monoclonal antibody. Flow cytometry analyses showed an upregulation of Fas (CD 95/Apo-1) upon TX or TO treatment in a number of cases. By contrast, antiestrogen treatment did not induce Fas expression in the Fas-negative K562 cells; yet, natural killer cell-mediated cytotoxicity against K562 was augmented by antiestrogens and maximal lysis was achieved when both target and effector cells were treated. The presence of Ca++ chelator (EGTA/MgCl2) in the assay abrogated killing of K562 and its antiestrogen--mediated augmentation. This indicates the involvement of the perforin/granzyme pathway. CONCLUSION: Antiestrogens can influence both Fas/FasL and perforin/granzyme pathways of killer cell--mediated oncolysis.

Endopeptidases↗

Antiestrogens sensitize human ovarian and lung carcinomas for lysis by autologous killer cells.

BACKGROUND: The antiestrogens tamoxifen (TX) and toremifene (TO) were shown previously to enhance the lysis of target cells by natural killer cells (NK), lymphokine activated killer (LAK) cells, and by cytotoxic T lymphocytes (CTL). MATERIALS AND METHODS: CTL were cultured from lung cancer tissue and from ascites fluid of ovarian carcinoma patients with the aid of human recombinant interleukin-2 (hrIL-2). The target, effector or both cell populations were pretreated by TX, TO and/or with human recombinant interferon-alpha (IFN-alpha). RESULTS: Significant enhancement of cytotoxicity occurred when the tumor targets or both the target and effector cells were treated with TX, TO or when these drugs were used in combination with IFN-alpha. The lytic activity of CTL cultured from draining lymph nodes of lung cancer patients, was also observed after similar treatment. The lytic effect of autologous LAK cells derived from peripheral blood was increased to a lesser extent, which could be amplified by additional treatment with IFN-alpha. CONCLUSIONS: The antiestrogens TX and TO and IFN-alpha enhance the lysis of autologous tumor cells by CTL and LAK effectors.

Antineoplastic Agents, Hormonal↗

Immunotherapy of the SL2-5 murine lymphoma with natural killer cells and tamoxifen or toremifene.

It is well established that tamoxifen (TX) has a therapeutic effect on estrogen receptor positive tumors by inhibiting the binding of estradiol to its receptor. However, repeated clinical observations indicate that tamoxifen may also have beneficial effects on estrogen receptor negative tumors. In vitro cytotoxicity experiments were performed with the SL2-5 murine lymphoma using interleukin (IL)-2 activated syngeneic NK cells as effectors with or without TX or TO treatment. The effect of TX or TO (10 mg/kg/day/animal in feed) on the immunotherapy of SL2-5 lymphoma with syngeneic IL-2 activated NK cells was also investigated in syngeneic DBA/2 mice. Assays of SL2-5 cells for estrogen and progesterone receptors were also performed. Both TX and TO enhanced significantly the susceptibility of the SL2-5 lymphoma to lysis by IL-2 activated NK cells in vitro. When TX or TO treatment was combined with NK cell immunotherapy of this tumor, both drugs potentiated significantly tumor regression and cure rate when compared to groups receiving NK therapy alone. This tumor does not express classical receptors for estrogens or progesterone. These results indicate that combination treatment with the antiestrogens, TX and TO, acts synergistically with the immunotherapeutic effect of IL-2 activated NK cells in a syngeneic tumor host system.

Adoptive Transfer↗

Anti-estrogens potentiate the immunotherapy of the P815 murine mastocytoma by cytotoxic T lymphocytes.

Many animal and human tumors are infiltrated with killer cells. Recent studies have shown that the stimulation of such killer cells with interleukin-2 improves their tumor rejecting capacity. In this paper we demonstrate that the anti-estrogens, tamoxifen (TX) and toremifene (TO), enhance host resistance by sensitizing the tumor target to killer cell mediated lysis. The P815 mastocytoma syngeneic to DBA/21 mice was used. Cytotoxic T lymphocytes (CTL) were detected in the spleens of mice 12-14 days after tumor inoculation. In vitro target, effector, or both cell types were treated with either TX (1 microM) or TO (5 microM) for 4 hours prior to cytotoxicity testing by 51Cr release. Mice bearing P815 mastocytomas, 5 mm in diameter, were treated orally with TX or TO and were given CTL isolated from the spleens of tumor bearing donors i.p. Tumor growth, mortality, and immunological memory in cured animals were monitored. Both TX and TO treatment sensitized P815 target cells to lysis by CTL isolated from tumor bearing animals. The transfer of killer cells from the spleens of tumor bearing mice produced tumor suppression in the recipients, which could be enhanced by additional oral treatment by TX or TO. Complete cure was achieved in a significant number of animals, showing partial or complete resistance to a subsequent lethal dose of P815 cells. These experiments indicate that killer cells isolated from mice bearing progressive tumors can have an immunotherapeutic effect in syngeneic tumor bearing recipients and that the antiestrogens, TX and TO, may be used to potentiate the immunotherapy of this tumor.

Adoptive Transfer↗

Combination therapy of the H2712 murine mammary carcinoma with cytotoxic T lymphocytes and anti-estrogens.

BACKGROUND: The triphenylethylene antiestrogenic agents, tamoxifen (TX) and toremifene (TO), are currently being used for the therapy of estrogen dependent breast carcinomas and for some other estrogen receptor positive tumors. Some observations indicate that these drugs may have a beneficial effect on estrogen receptor negative tumors as well. MATERIALS AND METHODS: The H2712 mammary carcinoma of C3H/HeJ mice was studied in combination immunotherapy experiments using cytotoxic T lymphocytes (CTL) and TX or TO. The effect of TX and TO on the in vitro lysis of H2712 cells by CTL was also investigated. Finally, the H2712 cells were examined for the presence of estrogen receptors. RESULTS: Both TX and TO potentiated the lysis of H2712 cells by CTL in vitro, and exerted a growth inhibitory and therapeutic effect on H2712 mammary carcinomas in vivo. The therapeutic effect of CTL isolated from tumor bearing mice was improved on H2712 carcinomas when the animals were also treated orally by TX or TO. Using the dextran-coated charcoal assay, H2712 cells were found to be negative for classical estrogen receptors. CONCLUSIONS: These results indicate that the anti-estrogens, TX and TO, have the ability to suppress the growth of the estrogen receptor negative mammary carcinoma and to amplify target cell lysis by tumor-reactive CTL. By this mechanism these drugs enhance host immunity to an estrogen receptor negative tumor.

Animals↗

Combination immunotherapy of the P815 murine mastocytoma with killer cells, IL-2 and anti-estrogens.

BACKGROUND: Lymphokine activated killer (LAK) cells, cytotoxic T lymphocytes (CTL) and interleukin-2 (IL-2) all are being tested in cancer immunotherapy with modest success. The anti-estrogenic drug, toremifene (T0), was found earlier to amplify cancer immunotherapy with killer cells in mice. Here T0 is examined in combination with CTL and IL-2 in immunotherapy experiments. MATERIALS AND METHODS: The P815 mastocytoma of DBA/2 mice was treated with combinations of CTL, LAK cells and T0 and combinations of CTL, IL-2 and T0 along with control groups. Tumor growth rate and mortality has been recorded. RESULTS: Combined treatment with CTL and LAK cells cured 25% of tumor bearing animals, as did treatment with tamoxifen (TX) or T0 alone. When killer cells were given in conjunction with anti-estrogens the cure rate was 75% with both TX and T0. Human recombinant IL-2 significantly inhibited tumor growth but no cures occurred. CTL alone cured 25% of the animals. When CTL and IL-2 treatment was given jointly with T0 75% of tumor bearing animals were cured. CONCLUSIONS: The results indicate that treatment with anti-estrogens increased the efficiency of immunotherapy by killer cells. This was true also when CTL therapy was supplemented with IL-2 treatment.

Animals↗