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Biomedical subjects

A Nicolin

Publications and source records attributed to A Nicolin.

At least 73 records · Page 4Linked to original sources

Hematoporphyrin derivative photoradiation therapy in murine solid tumors.

The cytocidal activity of light-activated hematoporphyrin derivative (Hpd) in experimental and human tumors is under investigation in many laboratories. This activity is based upon preferential incorporation of Hpd in malignant tissues and its photosensibilization by red light. Treatment of mice bearing MS-2 fibrosarcoma and B16 melanoma, a metastastic tumor, with Hpd and laser light, externally or delivered through a quartz fiber optic imbedded directly into the tumor, significantly prolonged the median survival time. This therapy was compared with surgical excision of primary tumors, and preliminary results on metastatic neoplasm suggest that the photoradiation therapy is more effective than surgery.

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Serotherapy of L1210 murine leukaemia--reasons for ineffectiveness of in vivo treatment by L.1 monoclonal antibody.

A monoclonal antibody (L.1), reacting in vitro specifically with L1210 leukaemia cells in a complement-dependent cytotoxicity assay (CDC), has been exploited for serotherapy studies. Different regiments of L.1 treatment of CD2F1 mice bearing the semi-syngeneic L1210 leukaemia did not prolong the life span of tumor-bearing animals. Moreover, the administration of L.1 did not enhance the antitumour effects of cyclophosphamide. Studies of in vivo localization showed that L.1 was able to bind specifically to L1210 leukaemic cells, although 30-40% of the cells remained negative. The presence of L.1 in mouse blood was demonstrated up to 15 days after the inoculation. On the other hand, in vivo administration of L.1 was probably accompanied by loss of the cytotoxic activity, perhaps through a mechanism of complement inactivation, since the presence of undiluted normal mouse serum in a CDC assay inhibited the cytotoxic activity of L.1. Moreover, serum from L.1-treated mice did not display any cytotoxic activity, although the presence of the antibody could be demonstrated by indirect immunofluorescence. Shedding of the antigen defined by L.1 was probably not responsible for the failure of the serotherapy, since the L.1 neutralizing antigen could be found in body fluids only long after the start of therapy.

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Macrophage antitumor activity induced by the antigenic lymphoma L5178Y/DTIC subline.

Murine leukemic cells, after in vivo treatment with antineoplastic drugs, have been shown to express new antigenic specificities that were not detectable on parental cells and that were heritable after the withdrawal of drug treatment. A study was conducted of macrophage antitumor activity triggered by LY/DTIC cells, a subline of LY murine lymphoma, antigenically altered by the drug DTIC. In vitro non-specific inhibition of tumor cell growth was exhibited by spleen and peritoneal macrophages from mice previously challenged with viable LY/DTIC. Peritoneal macrophages from LY/DTIC immune animals showed moderate, although significant lytic activity against unrelated tumor target cells. Supernatants from mixed lymphocyte-tumor cell cultures, in which LY/DTIC immune lymphocytes and LY/DTIC tumor cells had been cultured, rendered normal macrophages non-specifically growth inhibitory for tumor cells.

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Antibody-dependent cellular cytotoxicity against drug-induced antigens in L5178Y mouse lymphoma.

In vivo treatment with antineoplastic compounds has been reported to lead to the expression of new antigenic specificities which were not detected on parental cells, and which were transmissible as a genetic character. The current study is concerned with antibody-dependent cellular cytotoxic (ADCC) activity in serum of syngeneic mice challenged with LY/DTIC cells, a subline of LY murine lymphoma, antigenically altered by the drug DTIC. LY/DTIC target cells coated with LY/DTIC-immune serum were specifically lysed by virgin lymphocytes. The genetic background of the effector cells, whether syngeneic, allogeneic or xenogeneic, did not produce significant differences in the percentage of target-cell lysis. ADCC activity was reduced when the immune serum was added directly to the incubation medium, without precoating. Although sera from individual animals exhibited different levels of ADCC activity, they nevertheless followed the general trend of the pooled sera. Peak activity of ADCC was obtained in the sera collected on Days 8 and 30 after LY/DTIC cell challenge. The ADCC activity elicited by LY/DTIC cells may contribute to the rejection of drug-altered tumour cells.

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Characterization of a monoclonal antibody to L1210 leukaemia.

A mouse of monoclonal cell line (L1) was produced by fusing the mouse myeloma P3X63/Ag8 with CD2F1 spleen cells immunized with a highly immunogenic subline of L1210 leukaemia (L1210/DTIC). A very few positive clones (1%) were isolated and one of these was chosen for detailed study. The monoclonal antibody L1 is an IgM immunoglobulin strongly reacting in a complement-dependent cytotoxicity assay against L1210/Cr leukaemia and its more or less immunogenic sublines. The specificity of the L1 antibody against L1210 leukaemia was studied by extensive screening with normal adult and foetal tissues, lymphoid tissues from several independent strains and a panel of the most common experimental tumours, to all of which it was unreactive. Attempts at immunotherapy were carried out in DBA/2 mice challenged with L1210 leukaemia and treated with L1 (ascites) and complement. Although the in vitro cytotoxic titre of ascites fluid from mice bearing hybridoma was very high (10(-7)), no therapeutic effect was obtained in vivo.

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Immunological cross-reactivity between H-2Dk product and DTIC-treated H-2d lymphoma.

The experiments reported here concern the characterization by techniques of in vitro cell-mediated immunity of the antigens induced by 5-(3,3' dimethyl-1-triazine)-imidazole-4-carboxamide (DTIC) on L1210, a chemically-induced lymphoma of DBA/2 mice (H-2d). This series of experiments with the DTIC-treated L1210 tumour show the presence of an 'H-2D'-like antigen which resembles the Dk gene product/s of the H-2k haplotype.

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Chemotherapy and immunotherapy of L1210 leukemic mice with antigenic tumor sublines.

Tumor cells, treated in vivo with anticancer compounds, may acquire new antigenic specificities in addition to any original antigens associated with parental tumors. Treatment of mice carrying the parental leukemias L1210 Ha or L1210 Cr with leukemia cells antigenically altered by treatment with 5-(3,3-dimethyl-1-triazeno)imidazole-4-carboxamide (L1210 Ha/DTIC and L1210 Cr/DTIC, respectively) was essentially ineffective in prolonging the life span of the animals. However, synergic therapeutic activity was exhibited by administration of L1210 Ha/DTIC cells plus 1,3-bis(2-chloroethyl)-1-nitrosourea in the treatment of the moderately immunogenic L1210 Ha leukemia and by the combination of L1210 Cr/DTIC cells and lymphocytes immune to L1210 Cr/DTIC administered with 1,3-lymphocytes immune to L1210 Cr/DTIC administered with 1,3-bis(2-chloroethyl)-1-nitrosourea in the treatment of the low immunogenic L1210 Cr leukemia. Early and advanced L1210 Cr-bearing mice showed marked increases in survival time and a significant number of tumor-free survivors on treatment with cyclophosphamide followed by transfer of lymphocytes immune to L1210 Cr/DTIC cells. When parental tumor cells were used as the immunogen, the therapeutic effect was diminished. Thus, in the current investigation, although immunotherapy per se was essentially ineffective, the immunochemotherapeutic modalities used were successful in markedly increasing the survival time of leukemic animals and resulted in an incidence of cures.

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Chemotherapy immunogenicity.

A number of studies have demonstrated that a moderate immune reaction may augment the response to chemotherapy. Two approaches are examined in the current report: (a) chemoimmunotherapy with viable L1210 cells that were antigenically altered by treatment with DTIC (L1210/DTCI), and (b) chemotherapy plus treatment with lymphocytes from mice immunized against L1210/DTCI. Treatment of the parental leukemias L1210 Ha and L1210 Cr with BCNU or cyclophosphamide in combination with viable antigenically altered tumor cells and with lymphocytes immunized against the antigenically altered tumor cells resulted in marked therapeutic responses. The observations suggest that these combined therapeutic modalities are worthy of investigation employing human tumors.

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In vitro lymphocyte stimulation and the generation of cytotoxic lymphocytes with drug-induced antigenic lymphomas.

New antigenic specificities, not detectable on parental cells and transmissible after the withdrawal of the drug treatment, have been induced in mouse lymphomas. Studies were conducted of proliferative stimulation of syngeneic lymphocytes and the generation of cytotoxic lymphocytes (CL's) in a mixed lymphocyte-tumor cell culture system by 5-(3,3-dimethyl-1-triazeno)imidazole-4-carboxamide (DTIC)-induced antigens in L1210 and EL4 leukemia sublines. The DTIC-induced antigens were observed to stimulate [3H]thymidine uptake by normal and primed syngeneic lymphocytes and to generate specific CL's to DTIC-altered cells. The specificity of the in vitro immune reactivity was demonstrated. Characteristics of lymphocyte triggering, including the optimal ratio of stimulating cells to responding cells, the kinetics of CL activation, and the quantitation of CL activity, were also evaluated. DTIC antigens on leukemic cells can activate syngeneic lymphocytes and can act as target antigens in cell-mediated immunity. The experimental data support the transplantation antigen-like nature of DTIC-induced antigens.

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Cell kinetics and immunoegenicity of lymphoma cells treated with 5-(3,3-dimethyl-1-triazeno) imidazole-4-carboxamide (DIC) in vivo.

A cycle of treatment with antineoplastic compounds may alter the immunologic properties of experimental tumors leading to an increased survival of syngeneic hosts as compared to that observed with the original parental tumors. However, a loss of growth potential in drug-treated tumors might account for this preferential rejection by syngeneic or by allogeneic animals. In the present study the cell cycle kinetics of parental (L1210 and L5178Y) and DIC-altered leukemic cells (L1210/DIC; L5178Y/DIC) has been evaluated by the establishment of labelled mitosis curves. The in vitro DNA synthesis and cell loss were also investigated. The experimental results indicate that no significant differences in the above properties were present for parental and corresponding drug-treated leukemic sublines. Immuno-depressed allogeneic mice were more resistant to lymphoma challenge when inoculated with the DIC-sublines than with the parental lines. On adoptive transfer of immune lymphocytes there was increased survival of allogeneic animals challenged with DIC cells, attributable to an additional immune response to DIC-induced antigens. Thus, parental or DIC-tumors showed similar tumorigenic characteristics, and the increased allogeneic host survival to DIC-cell challenge may be attributed to an additional immune response of the animal DIC-induced antigens.

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Attempt to alter antigenic structure of normal tissues by treatment with dimethyl-triazeno-imidazole-carboxamide in vivo.

The antigenic structure of normal skin and spleen cells has been investigated following in vivo treatment with the compound DIC. In experiments involving skin grafting in the normal and sensitized host, cross sensitization with a DIC-antigenic lymphoma and 3H-thymidine incorporation by lymphocytes cultured with DIC-treated spleen cells, new antigens on DIC-treated tissues were not demonstrated.

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