Some procedures to reduce cis-platinum toxicity reduce antitumour activity.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to O Fodstad.
Explore the source record for details and available documents.
Two mouse monoclonal antibodies (MoAbs), TP-1 and TP-3, previously shown in immunohistochemical studies to react with osteosarcomas, were labelled with 125I or 131I and evaluated for their ability to localise to human osteogenic sarcoma xenografts after intravenous injection. The radiolabelled TP-1 and TP-3 MoAbs had immunoreactive fractions of 70% and 67%, respectively, and bound to target cells with binding constants of 8.5 X 10(8) M-1 and 4.0 X 10(9) M-1, respectively. After injection of labelled TP-3 IgG, approximately 16% of the dose X g-1 tissue was found in the tumour after 24 hours. Maximum tumour/blood radioactivity ratios of 6-7 were achieved 3-4 days after antibody injection, while the ratios for the normal tissues were less than 1. The tumours could be clearly visualised by whole-body gamma scintigraphy without the need for subtraction techniques. The TP-1 IgG accumulated to a large extent also in the spleen. Hence, with this antibody the tumour was less well delineated from the adjacent normal tissues. However, the F(ab')2 fragments, derived from the TP-1 IgG, gave tumour/blood ratios up to approximately 40 after 3-4 days and yielded sharp gamma scintigrams of the tumour. Specificity of the antibody localisation was indicated by the lack of accumulation in a contralateral melanoma xenograft and the failure of 2 isotype-matched irrelevant MoAbs to localise to the sarcomas. With the F(ab')2 fragments satisfactory images could be obtained already after 16 hours. The results suggest that this preparation may be useful in clinical radioimmunodetection of osteogenic sarcomas.
A phase II trial with mitozolomide was carried out in patients with malignant melanoma, since in preclinical studies this new imidazotetrazine had shown promising effects against human melanoma xenografts. Twenty-one evaluable patients with advanced malignant melanoma were treated with 115 mg m-2 of mitozolomide, given orally every 6 weeks. None of the patients had received prior chemotherapy. Two partial responses (10 and 7+ months) were observed. The responding patients had lung metastases, and one of them had, in addition, a huge (17 X 14 cm) lymph node metastasis in the groin. Also, one patient had a 48% tumour volume reduction of lung metastases. The dose limiting side effect of the treatment was bone marrow depression, with delayed leukopenia and thrombocytopenia. The median white blood cell counts and platelet nadirs were 2.5 X 10(9) 1(-1) (range 1.1-3.8) and 59 X 10(9) 1(-1) (range 14-95), respectively. Non-haematological adverse reactions were limited to mild or moderate nausea. It is concluded that orally administered mitozolomide is active against malignant melanoma and seems to have a response rate comparable to those of the most active established drugs.
Although human tumor xenografts have been extensively used for preclinical evaluation of antitumor agents, most of this work has utilized subcutaneous or subrenal capsule assays based on change in tumor size. To obtain experimental models more reflective of the human clinical situations, we have developed several metastatic models that are based on and complement a panel of cell strains used in large-scale in vitro drug screening. One melanoma and four lung tumors produced metastatic lesions in the lung within 60 days following subcutaneous, intraperitoneal, or intrasplenic inoculation of BALB/C athymic nude mice. Several tumors also produced liver lesions, and one lung tumor strain showed metastasis to the brain. The metastatic lesions histologically resembled the tumors that grew at the inoculation site. In vitro and in vivo cell strains were rederived from the metastatic lesions. These systems may provide practical models for experimental drug and immunotherapeutic trials.
Monoclonal antibodies (MAbs) against sarcoma-associated cell membrane antigens were prepared by immunizing BALB/c mice with tumor cells from a human osteosarcoma, TPX, grown as a xenograft in athymic BALB/c nude mice. Spleen cells from immunized mice were hybridized with X-63 Ag. 8.653 mouse myeloma cells which yielded 260 growing hybridomas. Seven of these produced antibodies that bound to TPX cells and to cells from another osteosarcoma, but not to autologous skin fibroblasts. MAbs from 2 (TP-1 and TP-3) of these 7 clones did not cross-react with non-sarcomatous tumor cells or peripheral blood lymphocytes. Immunohistochemical studies on frozen tissue sections showed that the TP-1 (IgG-2a) and TP-3 (IgG-2b) antibodies had characteristic and identical specificity profiles. Binding of TP-1 (TP-3) was demonstrated to 15/15 (15/15) osteosarcomas, 3/3 (2/2) synovial sarcomas, 7/9 (6/8) malignant fibrous histiocytomas, 2/2 (1/1) malignant hemangiopericytomas, 1/2 (1/2) chondrosarcomas and 3/6 (1/3) unclassified sarcomas. The antibodies did not bind to any of 16 sarcomas belonging to other histological subtypes, including liposarcomas and leio- and rhabdomyosarcomas. Moreover, they failed to bind to sections of 66 different non-sarcomatous malignancies, or to any of a range of normal adult and fetal tissues, although some weak staining of proximal kidney tubules was seen. The restricted specificity of these antibodies to some major subtypes of human sarcomas makes them promising tools for identification and subclassification of sarcomas.
An osteosarcoma cell line, OHS, was established from a patient with multiple skeletal manifestations of osteosarcoma, developing after bilateral retinoblastoma. The tumor cells expressed sarcoma-associated antigens and showed rapid growth in monolayers and as multicellular spheroids. They formed distinct colonies in soft agar, and subcutaneous tumors in nude mice. Morphological studies indicated that OHS cells had retained important characteristics of the cells of origin. No deletion of the retinoblastoma genes on chromosome 13q14 could be demonstrated with the banding techniques used. However, cytogenetic studies revealed double minute chromosomes, as evidence of gene amplification, as well as translocations involving chromosomes 1,6,11 and 13. The OHS line can be used to study the genetic basis of tumor initiation and growth, and to elucidate factors predisposing for second primary cancers in retinoblastoma patients.
To assess the potential value of the 6-day subrenal capsule (SRC) assay in preclinical evaluation of new drugs using serially xenografted human tumors as source of tumor tissue, we studied the response of 31 human tumor lines (8 malignant melanomas, 12 sarcomas, 9 lung carcinomas and 2 colon carcinomas) to relevant standard drugs and to a new imidazotetrazine, Mitozolomide. Mitozolomide was found to be the most active drug tested in 50% of the lung carcinomas and as active as CCNU in melanomas. The activity of the standard anticancer drugs against subrenal grafts closely resembled the patterns seen with the same tumors in the clinic. In further attempts to validate the procedure, sensitivity profiles of some tumors were concurrently determined in the subcutaneous (s.c.) nude mouse model. In 11 out of the 12 tumors, the two assays selected the same drug as being the most active and in most of these tumors the two procedures gave the same ranking for the different drugs. Also, when the relative sensitivities of a series of melanoma xenografts to each of two drugs (DTIC and CCNU) were tested, the two assays gave the same ranking of the xenografts for each drug. The concordance between the two assays and the fact that the s.c. nude mouse assay reflects the chemosensitivity of the parent tumor in patients, suggest that the application of the 6-day SRC assay to xenografted tumors is a valid and useful procedure permitting rapid preclinical evaluation of new drugs to be carried out at relatively low cost.
Explore the source record for details and available documents.
The in vitro sensitivity of human melanoma cell lines to conjugates of whole abrin or ricin linked through disulfide bonds to the monoclonal antimelanoma antibody 9.2.27 was studied. After passage of the conjugates through a Sepharose 4B column to remove molecular species with exposed binding sites on their B-chains, toxicity of the conjugates to different melanoma cell lines and nonmelanoma tumor lines was assessed by measuring their ability to inhibit cellular protein synthesis. The abrin conjugate was far more toxic to the target cells than the corresponding ricin conjugate. The 8 melanoma cell lines studied differed widely in their sensitivities to the abrin conjugate. The differences were associated with concomitant large differences in the sensitivities of the cells to the native toxins, and the significance of the level of the antigen expression became apparent only when the sensitivities of the different cell lines were normalized with respect to their sensitivity to native abrin. The observed relationship could not be accounted for by unspecific binding via the B-chain binding site of the immunotoxin. The differential sensitivity of the melanoma cell lines to the immunotoxin seems to be related to inherent differences between the cells in their ability to internalize and to process immunotoxins and toxins. The findings may have considerable practical implications.
By a new procedure stable monolayer cultures were derived from spheroids in 8 out of 17 different human sarcomas (16 soft-tissue and I osteogenic sarcoma). Eleven of the sarcomas were obtained from patients undergoing surgery, and 6 from BALB/c nude mice carrying s.c. growing xenografts. The new procedure involves aggregation of single-cell suspensions into spheroids and cultivation of these in agar-coated flasks until the growth rate levels off, at which time the spheroids are transferred to uncoated flasks. Cells proliferating from the rim of adhering spheroids are trypsinized and aggregated to form new spheroids. By 3 to 5 such alternations, monolayer cultures were obtained that have now been subcultured for about 6 months. The cell lines all gave rise to colonies in a clonogenic soft-agar system, and upon s.c. injection into athymic nude mice 3 lines tested formed growing tumors. The histology of spheroids formed from late monolayer passages closely resembled that of the original tumors. That the new procedure is superior to other methods of establishing sarcoma cell lines is indicated by the fact that a stable monolayer culture could be obtained directly from the tumors in only 1/8 cases where the above procedure was successful, and in only 2 instances from soft-agar colonies derived from the tumors.
Eight previously irradiated breast cancer patients with local recurrences were treated with intra-arterial infusions of 8 mg/m2 mitomycin C given at 3-week intervals. The mean time interval between radiotherapy and intra-arterial chemotherapy was 38 months (range 2-60). In five cases a temporary reduction in tumour size was observed. However, in 3 of the 8 patients severe local pain, starting immediately after the third course of treatment, was followed 4 weeks later by the development of deep necrotic ulcers of the chest wall. These cases are reported here and discussed in relation to the results of previous studies.
Human tumour lines established in athymic nude mice were grafted under the renal capsule of immunocompetent mice. Grafts from 27 human tumour lines comprising 9 malignant melanomas, 10 sarcomas, 2 colon carcinomas, 4 lung carcinomas and 2 mammary carcinomas, grew well under the renal capsule of the immunocompetent mice and retained morphological and functional characteristics of the parent tumours, as judged by light and electron microscopy and immunohistochemical examinations. Numerous mitoses were detected. Granulation tissue and necrosis were not predominant features. After Day 4, the grafts became infiltrated from the periphery by mouse inflammatory cells. The infiltration could be prevented by pretreatment of the animals with cyclophosphamide. Anti-human antibodies were detected after Day 3. Single cell suspensions from the subrenal grafts were able to form colonies in soft agar. and upon reimplantation in nude mice, subcutaneous tumours were formed showing that the grafted tumour tissue had also retained its malignant character. Altogether the results support the view that human tumour xenografts grow well under the renal capsule of immunocompetent mice and that the grafts retain important characteristics of the original tumour.
Survivors of the heritable form of retinoblastoma subsequently develop second primary osteosarcomas at substantially greater frequency than either the general population or survivors of nonheritable retinoblastoma. Here we present molecular genetic evidence that the development of these two disparate tumor types involves specific somatic loss of constitutional heterozygosity for the region of human chromosome 13 that includes the RB1 locus. Similar events occur during the genesis of nonheritable osteosarcoma but not in several other embryonal tumors or sarcomas. These findings suggest that a conceptual approach toward defining the number of genes whose recessive mutant forms predispose to cancer is the molecular genetic analysis of clinically associated tumor types. They also suggest that the molecular basis of mixed cancer families may be the differential expression of a single pleiotropic recessive mutation by tissue specific mitotic segregation abnormalities.
To assess the value of the 6-day subrenal capsule assay (SRCA), the growth of human tumours under the kidney capsule of immunocompetent mice as well as the response of the grafts to chemotherapy were studied and compared with the results obtained when the same tumours were grown subcutaneously (SC) in athymic, nude mice. Human tumours serially transplanted in athymic mice were used as test material. The subrenal grafts increased rapidly in size and showed individual, characteristic and reproducible growth rates and they retained the morphological and functional characteristics of the parent tumours, including their malignant character. The infiltration of the grafts by host cells, demonstrable already after day 4, contributed some 15-35% of the total graft volume on day 6 but did not seriously interfere with the growth measurements and the assay. When the chemosensitivity of different tumours was tested both in the 6-day SRCA and in the subcutaneous nude mouse model, the same ranking of drugs was obtained with the two procedures. The results show that the 6-day SRCA on tumour xenografts permits reliable and meaningful measurements of the response of human tumours to drugs. The data indicate that the assay deserves a wider use in cancer chemotherapy and research.
The chemosensitivity of human tumor xenografts to mitozolomide, 8-carbamoyl-3-(2-chloroethyl)imidazo[5-1-d]-1,2,3,5-tetrazin-4(3H) -one, was studied in 3 different assay systems. In concentrations of 1 to 500 micrograms/ml, mitozolomide completely inhibited the colony-forming ability in soft agar of cell suspensions from sarcomas, melanomas, lung and colon cancers, and a mammary carcinoma. When a panel of tumors of the different histological types was tested for its sensitivity to mitozolomide in vitro, in the 6-day subrenal capsule assay in conventional mice, and, in some cases, as s.c. growing tumors in nude mice, good agreement between the different assay systems was seen. In most cases, a very pronounced antitumor effect was observed. The efficacy of mitozolomide was as good or better than that of the drugs clinically used against the tumor types tested. Tumor size measurements and histological examinations indicated that nude mice carrying a melanoma, a small cell lung cancer, and an osteosarcoma were cured of their tumors. The approach here used for evaluating the effect of a new drug on human cancers may be useful for selecting the tumor types which primarily should be studied in clinical trials. The results indicate that clinical responses to mitozolomide may be anticipated in sarcoma, melanoma, small cell lung cancer, and possibly in colon cancer.
A murine monoclonal antibody (9.2.27), directed to a Mr 250,000 glycoprotein-chondroitan sulfate proteoglycan complex, was radiolabeled with 125I and assessed for radiolocalization in tumor and normal tissues of normal and tumor-bearing nude mice. The 125I-9.2.27 localized in vivo preferentially in Mr 250,000 antigen-expressing human melanomas (FMX-Met, SESX) but not in low antigen-expressing tumors (LOX-L) xenografted in nude mice. The imaging index of tumor cells was positively correlated with the antigen density of the various melanoma cell lines as measured by flow cytometry. The nonspecific immunoglobulin RPC-5 of the same IgG2a subclass as 9.2.27 did not specifically localize to xenografts of melanoma. The total amount of 125I-9.2.27 accumulated in the tumor was directly correlated with tumor size. However, the specific radioactivity (cpm/g) in smaller tumors was higher than that in larger tumors. Nonspecific uptake and circulating antibody levels differed between normals and tumor-bearers. The organs of the reticuloendothelial system of normal mice accumulated more labeled antibody than did those of tumor bearers, and conversely, tumor bearers had higher levels of circulating labeled antibody in the blood than normals. The circulating labeled antibody in tumor bearers was still monomeric but had no detectable antigen-binding capacity.
The growth of 29 different human tumor lines under the renal capsule of immunocompetent mice was investigated. The tumors, previously established in athymic mice, included malignant melanomas, colon carcinomas, soft-tissue sarcomas, lung cancers and a mammary carcinoma. The growth rates of 17 tumors, measured repeatedly over a period of several years, were highly reproducible. The different grafts exhibited distinctly different and individual growth rates for up to 6 days. In animals pretreated with an immunosuppressive dose of cyclophosphamide, the growth rate was the same as in non-pretreated animals, but the growth continued for several more days. In the case of 9 different grafts, the subrenal growth rates were compared with those observed when the same tumors were growing subcutaneously in athymic, nude mice. The relative growth rates of the different tumors were practically the same in the two systems. The results indicate that the growth conditions under the renal capsule permit the grafts to express their inherent growth potentials and that the subrenal grafts do not represent a selected sub-population of the tumor cells. The extent of infiltration of the grafts by mouse inflammatory cells was measured by flow cytometry on single-cell suspension as well as by quantitative analysis of serial histological sections. In most cases the mouse cells occupied 15-25% of the total graft volume on day 6. The results indicate that the effect of mouse cell infiltration on the growth of established tumor lines is slight and that it is unnecessary to use athymic mice as host animals when testing new investigational drugs by the SRC assay. The use of established tumor lines in the SRC assay in immunocompetent mice may be useful also in the study of factors influencing the anti-cancer activity of current drugs.
The stability of expression of a membrane antigen on human FME melanoma cells was investigated by means of flow cytometric cell sorting and analysis. The melanoma-associated 250 kd antigen was strongly expressed on all cells, as recognized by binding of the monoclonal antibody 9.2.27. By flow cytometric cell sorting, cells of high and low antigen expression were isolated, and the difference in antigen expression between the two populations was examined as a function of time in culture. Immediately after sorting, the median fluorescence intensities of the two populations differed by a factor of 2.7. After the first few days in culture, much of the range in antigen expression of the parent population was regenerated. However, a lasting difference in antigen expression was established, corresponding to 50% higher density of antigen on the cells sorted for high fluorescence intensity, compared to those sorted for low intensity. After trypsin treatment, which removed the antigen from the cell surface, normal antigen expression was regained after 2-3 days in culture, with the same difference between the two populations as before the trypsin treatment. The stability of the established difference in antigen expression between the two sorted subpopulations indicates that expression of this antigen is a precisely controlled, heritable characteristic of the FME melanoma cells.