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A fibrosarcoma model derived from mouse embryo cells: growth properties and secretion of collagenase and metalloproteinase inhibitor (TIMP) by tumour cell lines.

A new murine fibrosarcoma model has been developed in which it is possible to compare in vitro the behaviour of tumour cells with that of normal parental cells from which the tumour was originally derived by spontaneous transformation in vitro. Tumour cell lines were obtained which showed differing capacities for localized invasion of the skin following subcutaneous injection: these were categorized as either highly invasive or poorly invasive and were compared with the normal cells for (I) their respective saturation densities when grown on plastic, (2) their ability to grow in agar, and (3) their secretions of the metalloenzyme collagenase and the specific inhibitor of metalloproteinases (TIMP). Although increased in vitro saturation density showed some correlation with increased invasiveness in vivo, the most striking correlation was the 10- to 20-fold reduction in TIMP secretion by tumour cells of high invasive potential compared with normal cells or tumour cells with low invasive potential. No collagenase secretion by tumour cells was ever detected. It is proposed that local TIMP levels may play a crucial in the control of tumour invasion in vivo.

Animals↗

Recognition by a natural cytotoxic antibody of lactoneotetraglycosyl ceramide as an antigenic molecule in a syngeneic rat fibrosarcoma.

Conventionally bred rats possess in their sera an NA which has a cytotoxic effect on a tumor cell line (KMT-17) derived from a fibrosarcoma induced by 3-methylcholanthrene and which can be absorbed by normal rat tissues. We have succeeded in purifying a glycosphingolipid as an antigen reactive to NA. GSLs isolated from the tumor cells were separated into neutral and acidic fractions. The former fraction was judged to be antigenic as detected by its capacity to absorb NA. The antigenic fraction was further separated into 7 fractions (Frs. A to G) by silicic acid chromatography. The antigenic activity was detected in only Frs.D and E, although Fr.D was a more potent antigen than Fr.E. Chemical and immunochemical analyses showed that both fractions are composed of lactoneotetraglycosyl ceramide (paragloboside), Gal(beta 1-4)GlcNAc(beta 1-3)Gal(beta 1-4)Glc(beta 1-1)ceramide, and that the more active GSL, Fr.D, contains larger amounts of long fatty-acid chains. Inhibition studies using disaccharides and monosaccharides indicated that a N-acetyllactosamine moiety, Gal(beta 1-4)GlcNAc, of the GSL is a specific site of NA. These results suggest that paragloboside is an NA antigen and that a sugar chain portion of this GSL is required for defining specificity while the ceramide portion plays a role in potentiating the antigenicity of this GSL antigen for NA.

Amino Sugars↗

In situ identification of host derived infiltrating cells in chemically induced fibrosarcomas of interspecific chimeric mice.

Chimeric mice have been used to investigate the cellular origin of chemically induced tumors. Interspecific chimeras were formed between the Ha/ICR strain of Mus musculus and Mus caroli. The normal tissues of the chimeric mice were composed of a mixture of cells which originated from each of the 2 species. The species of origin of the cells was determined both histologically with in situ hybridization using a DNA probe which recognizes M. musculus satellite DNA and by electrophoretic analysis of phosphoglycerate kinase-1 (PGK-1) isozyme expression. The 2 parental species, M. musculus and M. caroli, had comparable levels of inducible cytochrome P-450-dependent mixed function oxidase activity. Subcutaneous fibrosarcomas were induced with 3-methylcholanthrene. Electrophoretic analysis of many samples from the tumors revealed that some demonstrated both isozymes of PGK-1. However, extensive sectioning with subsequent in situ hybridization revealed that the only cells of mixed genotype were small, infiltrating inflammatory cells. These results confirmed PGK-1 analysis of the tissue culture cell lines derived from the tumors. This is the first report of direct visualization of the lineage origin of various cellular components in chemically induced tumors in a mosaic system and supports the contention that, while the neoplastic cells are clonal in origin, the tumors also contain non-neoplastic "host" cells which are derived from both sets of parents.

Animals↗

Effect of Fluosol-DA/O2 on tumor-cell and bone-marrow cytotoxicity of nitrosoureas in mice bearing FSA-II fibrosarcoma.

The perfluorochemical emulsion, Fluosol-DA, combined with carbogen breathing, potentiates the effects of radiation and a number of chemotherapeutic agents in several rodent tumors. The interaction of Fluosol-DA with drugs may be quite complex. In addition to increasing the oxygen supply in the tumor, Fluosol-DA may alter the pharmacokinetics of the drug and function as a drug delivery system. A series of 4 nitrosoureas of varying lipophilicity were administered as single doses intravenously (i.v.) to C3H/Be/FeJ mice bearing subcutaneous FSa-IIC fibrosarcomas. Doses of 40 mg/kg of CCNU, 15 mg/kg of BCNU, 20 mg/kg of MeCCNU and 15 mg/kg of chlorozoticin followed by 2 hr of breathing 95% oxygen produced tumor growth delays of 7.5, 4.0, 3.8 and 2.7 days, respectively. When the drug injection was followed immediately by 0.3 ml of Fluosol-DA and 2 hr of breathing 95% oxygen, the tumor growth delay produced by CCNU, BCNU, MeCCNU and chlorozoticin increased 2-fold, 10-fold, 4.5-fold and 3.5-fold, respectively. Administration of the drugs in Fluosol-DA followed by 2 hr of 95% oxygen breathing resulted in a 3.5-fold increase in tumor growth delay with CCNU, a 17-fold increase with BCNU, a 12.5-fold increase with MeCCNU and a 6-fold increase with chlorozoticin compared to drug and 95% oxygen breathing. These results are quantified in terms of cell survival by the tumor excision assay. Effects on the bone marrow from each treatment were measured using the granulocyte-monocyte colony-forming units (CFU-GM) assay. There was no correlation between the lipophilicity of the nitrosoureas tested and the tumor growth delay produced by each treatment.

Animals↗

Dissociation between thromboxane generation and metastatic potential in cells from a murine fibrosarcoma. Studies with a selective thromboxane synthase inhibitor.

Since the highly metastatic variant M4 of the mFS6 fibrosarcoma has the peculiar feature of generating larger amounts of immunoreactive thromboxane B2 (TxB2) than the non-metastatic variant (M9), we used the thromboxane synthase inhibitor dazmegrel (UK-38,485) in an effort to influence its metastatic potential. TxB2 formation by tumor cells freshly harvested from the primary tumor could be completely inhibited by drug addition in vitro. TxB2 generation was inhibited with a dose-response curve, 2 microM being the lowest dazmegrel concentration giving 100% inhibition. Chronic treatment of tumor-bearing mice with dazmegrel (150 mg/kg b.w. twice daily by gavage) from the day of tumor-cell implantation until killing of the animals caused a more than 10-fold reduction in serum TxB2 formation; TxB2 generation by tumor cells was also significantly depressed. This treatment, however, did not significantly modify either primary tumor weight or metastasis formation. Our data suggest that selective inhibition of thromboxane generation in either blood or tumor cells does not prevent spontaneous metastasis formation in the murine model studied.

6-Ketoprostaglandin F1 alpha↗

Cell-surface laminin-like molecules and alpha-D-galactopyranosyl end-groups of cloned strongly and weakly metastatic murine fibrosarcoma cells.

Indications from previous work that cancer cell-surface laminin-like molecules and alpha-D-galactopyranosyl end-groups may contribute to spontaneous metastasis were further investigated. Both moieties are known to mediate cell attachment to various foreign surfaces. Five strongly metastatic and 5 weakly metastatic cell clones from a murine fibrosarcoma were examined for the occurrence of both cell-surface moieties by immunofluorescence flow cytometry and microscopy. None of these clones was rich in laminin-like molecules, which were least strongly expressed by the highly metastatic clones. The alpha-D-galactopyranosyl end-groups were strongly expressed by all strongly metastatic clones and by 2 weakly metastatic clones, but were only weakly expressed by the other weakly metastatic clones. These results indicate that the laminin-like cell-surface molecules are not necessary for spontaneous metastasis formation. However, the alpha-D-galactopyranosyl end-groups may be necessary, but are not sufficient for the cancer cells to form metastases. These carbohydrates are known to occur on the laminin-like molecules. The present results show that they must also exist on other cell-surface molecules.

Animals↗

Measurement of plasminogen activator activity from human fibrosarcoma cells by a new microassay.

Elevated levels of plasminogen activator (PA) activity have been correlated with neoplasia and may have an important role in tumor-cell invasion and metastasis. We have developed a new caseinolytic assay that uses an immunochemical approach to measure the activity of PA elaborated by malignant tumor cells. The highly sensitive assay consists in incubating a source of PA (viable tumor cells, cell extracts, or conditioned medium) with purified plasminogen in microtiter plates precoated with a suitable protein substrate such as casein. Clearance of the immobilized protein substrate by PA-generated plasmin is then measured by a technique based on the enzyme-linked immunosorbent assay. In experiments using urokinase as a source of PA, the assay displayed near linearity over several log units of urokinase activity and could detect as little as 10(-2) Ploug units of PA activity. Besides successfully measuring PA activity produced by the human HT 1080 fibrosarcoma cell line, the assay permitted detection of significant plasminogen-independent proteolytic activity generated by intact tumor cells cultured in direct contact with immobilized protein substrates.

Caseins↗

Both N-ras and c-myc are activated in the SHAC human stomach fibrosarcoma cell line.

A transforming N-ras gene was isolated from the SHAC human stomach fibrosarcoma cell line. A single-point mutation resulting in the substitution of histidine for glutamine at codon 61 was found in the SHAC transforming allele. The N-ras gene is overexpressed in the tumor cells and transformant cells. The N-ras p21 product was studied by immunoprecipitation and showed no alteration in mobility as compared to the normal p21 protein. The c-myc gene is amplified and overexpressed in these cells. This report gives evidence that an amplified c-myc and a mutated N-ras gene are both present in this tumor cell line and provides support for the idea that co-operation of at least 2 activated cellular oncogenes is required for carcinogenesis.

Animals↗

The Mr 140,000 fibronectin receptor complex in normal and virus-transformed human fibroblasts and in fibrosarcoma cells: identical localization and function.

We studied the function and localization of the fibronectin receptor complex in cultured normal and SV40-transformed human fibroblasts and in human fibrosarcoma cells by using monoclonal antibodies (MAbs) against the beta sub-unit of the receptor. Immunoprecipitation, fibronectin fragment affinity chromatography and immunoblotting results suggested that all the cells studied had similar amounts of the receptor. In normal fibroblasts MAbs additionally immunoprecipitated a smaller polypeptide, revealed as the precursor for the beta sub-unit and another polypeptide shown to be the alpha sub-unit of the VLA-I complex. The emergence of vinculin-positive focal adhesion sites and actin stress fibers was slower in the malignant cells than in normal fibroblasts when the cells were plated on non-coated glass-substrate in serum-free conditions and the fibronectin receptor complex did not become located to focal adhesions in any of the cells studied. Added substratum-bound but not soluble fibronectin mediated assembly of the fibronectin receptor complex to the focal adhesions in both normal and malignant cells. On fibronectin-coated growth substrate stress fibers also emerged as rapidly in the malignant cells as in normal fibroblasts. In all the cells the receptor complex, however, became largely dissociated from the focal adhesions within 48 hr. In cell adhesion conditions MAb against the alpha sub-unit of VLA-I complex revealed an even cell-surface labelling in normal fibroblasts and lack of labelling in malignant cells.

Antibodies, Monoclonal↗

Role of glycolipids in the metastatic process: characteristics of neutral glycolipids in clones with different metastatic potentials isolated from a murine fibrosarcoma cell line.

We investigated whether metastatic phenotype is associated with a characteristic glycolipid pattern. For this study, we developed a system of variants with different metastatic potentials that we isolated from the highly metastatic T3 murine fibrosarcoma line by culture in 0.3% agar or on plastic. The glycolipid profiles of T3 cells and of their highly metastatic isolates were characterized by a high level of globotriaosylceramide (Gb3ose). On the other hand, Gb3ose was reduced in a weakly metastatic clone isolated from T3 cells. A reduced level of Gb3ose was also found in a weakly metastatic subclone isolated from a highly metastatic T3 clone. Propagation of this subclone led to the emergence of a series of variants which expressed a high metastatic potential together with a high Gb3ose level. We also observed that Gb3ose was 10 times more prevalent on the cell surface in T3 cells than in a weakly metastatic clone. On the whole, these findings indicate that, in our system of metastatic cells, a high Gb3ose level correlates with metastatic phenotype. It is possible that the highly exposed Gb3ose in metastatic cells is relevant to the metastatic process in view of the role played by the unique molecular structure of this glycolipid in other models of cell-to-cell interaction.

Animals↗

Proliferative response of T cells from tumor-immune chickens to carcinogen-induced fibrosarcoma cells.

Immunity to carcinogen-induced transplantable fibrosarcomas (CHCT-NYU-4, -97, -36 and -20) in SC chickens was studied by the ability of spleen cells from NYU-4 or -97 immune chickens to proliferate in response to tumor cells in vitro. Spleen, but not peripheral blood cells, from NYU-4 immune chickens proliferated significantly more vigorously to gamma-irradiated NYU-4 cells than did cells from normal chickens. The proliferative response was not much affected by addition of indomethacin. Spleen cells from NYU-4-immune agammaglobulinemic (A gamma) chickens exhibit the same ability to proliferate in presence of gamma-irradiated NYU-4 tumor cells. Analysis of the phenotype of the T-cell component involved in proliferation showed that the proliferative response was significantly decreased by removal of CT4+ cells through indirect panning. Removal of CT8+ cells enhanced background proliferation without affecting the total thymidine incorporation in the presence of tumor cells. Immune spleen cells usually gave highest responses to the immunizing tumor, but also exhibited cross-reactivity to cells from other individual tumors induced by the same carcinogen.

9,10-Dimethyl-1,2-benzanthracene↗

A weakly tumorigenic phenotype with high MHC class-I expression is associated with high metastatic potential after surgical removal of the primary murine fibrosarcoma.

We have examined the metastatic capacity of different clones of a chemically induced fibrosarcoma GR9. These clones have previously been characterized for their H-2 class-I and class-II phenotype, NK sensitivity and local tumor growth. Our present data show that clones which express low amounts of H-2 class-I antigens are poorly metastatic in a post-surgical spontaneous metastasis assay, while those expressing high levels of class-I antigens possess a high metastatic capacity. These results correlate inversely with local growth patterns of the clones. High metastatic capacity was associated with resistance to NK cells. In an experimental metastasis assay, based on intravenous administration of in vitro carried GR9 clones to syngeneic BALB/c mice, an opposite result to the post-surgical assay was obtained. Gamma-IFN treatment of B9 clones (H-2-deficient) enhanced H-2 class-I expression and diminished experimentally induced metastases. Metastatic colonies, from the spontaneous metastasis assay, obtained from different organs, showed changes in the ratio H-2K/H-2D. There was a tendency for down-regulation of the expression of H-2K molecules in H-2-positive clones and for up-regulation of H-2D expression in H-2-negative clones.

Animals↗

Human colon carcinoma, fibrosarcoma and leukemia cell lines produce tumor-associated trypsinogen.

Previous studies have indicated that cyst fluid of ovarian tumors contains 2 trypsinogen isoenzymes, called tumor-associated trypsinogen-I (TAT-I) and trypsinogen-2 (TAT-2), the levels of which correlate with the degree of malignancy of the tumors. In addition, these cyst fluids contain large amounts of tumor-associated trypsin inhibitor (TATI), which is also expressed in many other human tumors. In the present study we examined the production of TAT-I, TAT-2 and TATI in 9 established tumor-cell lines. TAT-2 was produced by 5 cell lines. Its concentration in the conditioned medium of COLO 205 colon adenocarcinoma cells, K-562 erythroleukemia cells and fibrosarcoma cell lines HT 1080, 8387 and A 9733 was 460 micrograms/l, 9.8 micrograms/l, 21 micrograms/l, 8.8 micrograms/l and 0.24 micrograms/l, respectively. TAT-I was detectable in the conditioned medium of COLO 205 and HT 1080 cells at concentrations of 64 micrograms/l and 0.5 micrograms/l, respectively. TATI was detected only in the media of COLO 205 cells at a concentration of 23 micrograms/l. TAT-2 zymogen was purified from the conditioned medium of COLO 205 and HT 1080 cells by immunoaffinity chromatography. According to its aminoterminal amino acid sequence, a molecular mass of 28 kDa by SDS-PAGE, elution pattern in ion-exchange chromatography and ability to be activated by enteropeptidase, the zymogen is identical to that previously isolated from cyst fluid of ovarian tumors. In addition, we found that TAT-2 secretion could be down-regulated by dexamethasone in HT 1080 cells but not in COLO 205 cells. The abundant production of TAT-2 isoenzyme in different cancer cell lines suggests that it could contribute to the increased proteolytic activity of many human tumors.

Carcinoma↗

Activation of ras oncogenes and expression of tumor-specific transplantation antigens in methylcholanthrene-induced murine fibrosarcomas.

The DNA of 22 fibrosarcomas, newly induced in BALB/c mice by subcutaneous doses of 3-methylcholanthrene (3-MCA), was tested in NIH 3T3 transformation assay. Activation of K-ras and N-ras was found in 7 and 3 cases respectively. No H-ras activation was detected. Polymerase chain reaction and oligonucleotide hybridization performed on the DNA of the 22 sarcomas revealed 5 cases of K-ras mutation at codon 12, 3 at codon 13 and 1 at both codons. One case of K13 mutation was not detectable by transfection. Three cases of mutation at codon 61 of N-ras were also found, one of which was simultaneous with a K12 mutation. Tumor-specific transplantation antigens (TSTA) were assessed in the 22 original tumors. Altogether 16 sarcomas were immunogenic, with the highest frequency of TSTA+ tumors (10/11 and 5/6) in the groups given 1.0 and 0.1 mg of 3-MCA respectively, the lowest (1/5) in that with 0.01 mg of carcinogen; ras mutations occurred in the DNAs of 11 out of the 16 TSTA+ sarcomas, but none of the DNAs of the 6 TSTA- tumors showed ras mutation. The results suggest that 3-MCA-induced transformation of subcutaneous fibroblasts can involve mutations in codons 12, 13 or 61 of K- and N- but not H-ras gene and that such mutation is accompanied by the expression of TSTA.

Animals↗

Differential mRNA levels of c-myc, c-fos and MHC class I in several clones of a murine fibrosarcoma.

We have evaluated the relationship between MHC class-I, c-myc and c-fos proto-oncogene expression in several clones of a methylcholanthrene-induced fibrosarcoma (GR9) which originated in a BALB/c mouse. These clones represent a heterogeneous population and differ markedly with regard to H-2 class-I cell-surface expression, local tumor growth, NK sensitivity and metastatic potential. In the present study we show that cell-surface expression of MHC class-I antigens correlates inversely with levels of c-myc mRNA transcripts. On the other hand, mRNA levels of c-fos are correlated directly with the amount of mRNA of MHC class I. Treatment of the B9 clone with gamma interferon increased mRNA transcription and surface expression of H-2 class-I antigens, while c-myc transcription was simultaneously down-regulated. In contrast, c-fos mRNA levels remained unaltered.

Animals↗

Effect of MHC class-I transfection on local tumor growth and metastasis in an H-2-negative clone derived from a chemically induced fibrosarcoma.

GR9 is a chemically induced fibrosarcoma composed of clones with different H-2 class-I expression. These clones differ with respect to local growth and spontaneous metastasis. The B9 clone (H-2 negative) is highly tumorigenic (local growth) but of low metastatic potential (spontaneous metastasis assay). We have analyzed the effect that transfection of H-2Dd and H-2Kd genes on this clone have upon local growth, lung colonization after i.v. injection and ability to form spontaneous metastases. The results showed that the effect on local growth of transfection of the Kd-gene was stronger than that of the Dd gene. In addition, B9 co-transfected with H-2Kd and Dd genes showed the highest immunogenic properties in syngeneic BALB/c mice. Interestingly, the pSV2-neo transfected clone gave almost the same result as that obtained with Dd transfection. Lung colonization after i.v. injection of the different clones (experimental metastasis), paralleled the results obtained for local growth: the number of lung nodules followed the cadence KdDd less than Kd less than Dd less than pSV2. Survival of mice was always inversely correlated with local growth, e.g., all mice injected with 5 x 10(5) B9 H-2KdDd transfected cells survived. In contrast, no mice injected with the B9 control did. These differences were abrogated in irradiated and nude BALB/c mice. Finally, all transfected clones remained non-metastatic in a spontaneous metastasis assay, behaving as the control, non-transfected B9 cells.

Animals↗

Expression of autocrine motility factor receptor in serum- and protein-independent fibrosarcoma cells: implications for autonomy in tumor-cell motility and metastasis.

The motile response of serum-dependent (Gc-4 SD) and protein-independent (Gc-4 PF) murine fibrosarcoma cells to monoclonal antibody (MAb) that binds to gp78 a cell-surface receptor (M(r) 78,000) for an autocrine motility factor (AMF) was analyzed. The Gc-4 PF cells responded to the anti-gp78 by increased motility in vitro (3-fold) and increased lung colonization in vivo (8- to 20-fold), while the serum-dependent counterpart failed to respond to motile stimulation both in vitro and in vivo. Immuno-analysis of cell-surface expression and cell extracts revealed a smaller amount of gp78 in Gc-4 SD cells than in Gc-4 PF cells. Both cell lines secrete an equal amount of AMF to the culture media. Our results suggest that protein-free culture of Gc-4 PF cells is associated with high response to AMF and with high expression of its receptor, and that autonomous motile regulation may play a role in tumor dissemination.

Animals↗

A role for the fyn oncogene in metastasis of methylcholanthrene-induced fibrosarcoma A cells.

Expression of various oncogenes (ras, myc, erbB2, src, fyn, yes and sis) in a high-metastatic clone (MH-02) derived from a murine methylcholanthrene-induced fibrosarcoma A (Meth A) was compared with those of its parent clone (ML-01) by Northern blot analysis. Two oncogenes, fyn, belonging to the tyrosine-kinase family, and sis, belonging to the cellular-growth-factor family, were found to have higher signals (3.6-fold and 1.8-fold respectively) in MH-02 than in ML-01 cells. To explore the possibility that higher expression of these oncogenes is involved in enhanced metastasis of the MH-02 clone, ML-01 was transfected by a fyn vector and the metastatic potential of the transfectant was examined. Mice administered fyn-transfected ML-01 cells had significantly increased metastatic nodules in the lung, as compared with those whose ML-01 cells were transfected with control vector without the fyn gene. The result indicates that the fyn gene is one of the factors governing the metastatic potential of Meth A cells.

Animals↗