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Acute respiratory distress due to fibrosarcoma of the carina in a child.

We report a 12-year-old boy with primary bronchopulmonary fibrosarcoma (PBPF). He was misdiagnosed a having asthma until he presented with acute respiratory distress syndrome. Chest x-ray showed atelectasis of the right lung. Bronchoscopy performed to rule out foreign body inhalation revealed a friable mass obstructing the right main bronchus. Successful treatment was achieved with surgical resection of the lesion followed by radiotherapy and chemotherapy.

Acute Disease↗

Chemopreventive activity of Withania somnifera in experimentally induced fibrosarcoma tumours in Swiss albino mice.

The current experimental work deals with the chemopreventive studies of a hydroalcoholic extract of Withania somnifera roots, against 20-methylcholanthrene induced fibrosarcoma tumours in Swiss albino mice. A single subcutaneous injection of 200 microg 20-methylcholanthrene in 0.1 mL of dimethylsulphoxide into the thigh region of mice produced a high incidence (96%) of tumours. Oral treatment of animals with 400 mg/kg body weight of Withania somnifera extract (one week before injecting 20-methylcholanthrene and continued until 15 weeks thereafter) significantly reduced the tumour incidence, tumour volume and enhanced the survival of the mice, compared with 20-methylcholanthrene injected mice. The tumour incidence was also delayed in the treatment group when compared with 20-methylcholanthrene injected mice. Liver biochemical parameters revealed a significant modulation of reduced glutathione, lipid peroxides, glutathione-S-transferase, catalase and superoxide dismutase in extract treated mice compared with 20-methylcholanthrene injected mice. The mechanism of chemopreventive activity of Withania somnifera extract may be due to its antioxidant and detoxifying properties.

Administration, Oral↗

Suppression of in vitro invasion of human fibrosarcoma cells by a leupeptin analogue inhibiting the urokinase-plasmin system.

A leupeptin analogue, pyroglutamyl-Leu-Arg-CHO (Pyr-Leu-Arg-CHO), is an inhibitor of urokinase and plasmin, while leupeptin inhibits only plasmin. Pyr-Leu-Arg-CHO was shown to inhibit in vitro invasion of human fibrosarcoma HT1080 cells reducing cellular collagenase activity. Pyr-Leu-Arg-CHO suppressed the invasion of the cells in a Boyden chamber assay with an IC50 of 12 micrograms/ml. Addition of plasminogen to HT1080 cells increased the type IV collagenase activity, and Pyr-Leu-Arg-CHO inhibited this activation of the collagenase with an IC50 of 3 micrograms/ml. Leupeptin inhibited both the invasion and collagenase activation at higher concentrations than that of Pyr-Leu-Arg-CHO. The gelatin zymography of the conditioned medium revealed that a new gelatinolytic band, possibly an activated form of MMP-2, appeared by the addition of plasminogen. The activation of MMP-2 was also inhibited strongly by Pyr-Leu-Arg-CHO. These results indicate that Pyr-Leu-Arg-CHO suppresses the in vitro invasion by preventing the activation of type IV collagenase through inhibition of the urokinase-plasmin system.

Amino Acid Sequence↗

Cell cycle control with minimal participation of Cdk2 in a murine fibrosarcoma clone cultured in protein-free medium.

The differences in the protein expression of cyclins, cyclin-dependent kinases (cdks), and their inhibitors and cdk kinase activities were examined in serum dependent (SD) and independent (PF) clones of the murine fibrosarcoma cell line, Gc-4. The expression of cyclin A in SD was minimal in contrast to PF. Furthermore, cdk2 kinase activity in PF was remarkably lower than that in SD, yet the G1/S transition in PF appeared normal. PF was also resistant against the selective inhibitor of cdk2, butyrolactone I. These findings suggest that tumor cell proliferation and tumor progression can be promoted by the activation of a molecule(s) downstream of cdk2.

4-Butyrolactone↗

Detection of DNA abnormalities by arbitrarily primed PCR fingerprinting: amplification of the MDM2 gene in a mediastinum fibrosarcoma.

Arbitrarily primed PCR (AP-PCR) fingerprinting method is easy and useful for analysis of genetic alterations in anonymous chromosomal regions. We applied this technology to analysis of DNA from human primary cancers and found amplification of a DNA fragment in a mediastinum fibrosarcoma. PCR-based analysis of radiation hybrid panels following cloning and nucleotide sequence determination of the fragment revealed that it was derived from a region of chromosome 12q13-q15. In this region, the MDM2 and IFNG genes were noted as known genes that could be involved in human carcinogenesis. Southern blot analysis of genomic DNA of the tumor revealed the amplification of the MDM2 gene together with the fragment locus, but not the IFNG gene. Our results demonstrated that detection of DNA alterations by AP-PCR fingerprinting without any previous knowledge of the genes and subsequent analysis of radiation hybrid panels could lead to easy identification of candidates for genes involved in carcinogenesis.

Base Sequence↗

Heat shock suppresses membrane type 1-matrix metalloproteinase production and progelatinase A activation in human fibrosarcoma HT-1080 cells and thereby inhibits cellular invasion.

Expression of membrane type-1 matrix metalloproteinase (MT1-MMP) is closely correlated with tumor invasiveness. We investigated the effect of hyperthermia on the production of MT1-MMP in human fibrosarcoma HT-1080 cells. Heat shock at 42 degrees C suppressed the production and gene expression of MT1-MMP in HT-1080 cells. Heat shock-induced suppression of MT1-MMP production resulted in the inhibition of progelatinase A (proMMP-2) activation and the increased release of tissue inhibitor of metalloproteinases 2 from cell surface. In addition, in vitro tumor invasion assay in a Matrigel model indicated that heat shock inhibited the invasive activity of HT-1080 cells. These results suggest that heat shock preferentially suppresses the production of MT1-MMP and thereby inhibits proMMP-2 activation, events which subsequently inhibit tumor invasion. Therefore, heat shock shows an anti-invasive effect along with the known mechanism of inhibiting tumor growth.

Collagen↗

Some aspects of the causes of enhanced immune response of in vitro frozen ascites fibrosarcoma tumor cells in mice.

Estimation of 3 M KCl-extracted ascites fibrosarcoma (AFS) tumor cell membrane peripheral proteins in native and frozen tumor cells showed approximately a three-, four-, and fivefold increase per 1 x 10(6) cells of single-, three-, and programmed three-cycle frozen AFS tumor cells, respectively, compared to the same number of native cells, indicating an increase in surface membrane protein concentration with freezing. The 10% gel (homogeneous) electrophoretic (SDS-PAGE) study of 3 M KCl-extracted native and frozen cell membrane proteins showed (i) membrane proteins of native cells resolve into many more components compared to those of any frozen membranes, i.e., single, three, and programmed three cycle, the components decreasing in that order; (ii) the concentration of larger-molecular-weight protein fractions (> or = 75 kDa) decreases while those of smaller fractions (14 to 24 kDa) increase in frozen cells, with the maximum being in the programmed three-cycle frozen group. In contrast, the native cell membrane is rich in higher-molecular-weight proteins (> or = 75 kDa) with concentrations slowly decreasing toward lower-molecular weight fractions. Thus, the probable reasons for increased immune response of animals immunized with frozen AFS tumor cells are (i) absolute increase in cell surface protein concentrations as given by 3 M KCl extraction of cell membrane peripheral protein estimation in AFS tumor cells postfreeze; (ii) cell-surface protein pattern which is heterogeneous before freezing becomes relatively more homogeneous following freezing of AFS tumor cells; and (iii) depolymerization and breaking of higher-molecular-weight components which increase the concentration of terminal-sequence antigenic determinants and increase accessibility of determinant grouping by removing steric hindrance following freezing.

Animals↗

Cytotoxicity in L929 murine fibrosarcoma cells after triggering of transfected human p75 tumour necrosis factor (TNF) receptor is mediated by endogenous murine TNF.

We compared the biological function of the human tumor necrosis factor receptors p55 (hTNF-R55) and p75 (hTNF-R75) expressed in the murine (m) fibrosarcoma cell line L929. Receptor-specific triggering of hTNF-R55 in transfected L929 cells by agonistic monoclonal antibodies or hTNF-R32WS86T, a hTNF-R55-specific mutant of hTNF, resulted in cytotoxicity. Specific clustering of hTNF-R75 in transfected L929 cells by agonistic monoclonal antibodies or hTNF-D143F, a hTNF-R75-specific mutant of hTNF also induced cytotoxicity, albeit at low level. In both cases, the cytotoxic activity of receptor clustering could be synergized by addition of 20 mM LiCl. Remarkably, cytotoxicity induced after R75 triggering in transfected L929 cells could be completely abolished by addition of neutralizing anti-mTNF antibodies, in contrast to cell killing seen after specific R55 clustering. No soluble mTNF could be demonstrated using a sensitive biological assay, although L929 cells were expressing low levels of mTNF-specific mRNA as shown by PCR. These data clearly demonstrate that minute amounts of endogenously produced TNF can be a key mediator in R75-mediated cytotoxicity. Presumably, the latter efficiently traps the ligand and transfers it to TNF-R55, and/or by binding it, protects the endogenously made TNF from inactivation.

Animals↗

Selective incorporation of fibronectin isoforms into the extracellular matrix of hybrids between human fibrosarcoma cells and normal human fibroblasts.

A matched pair of tumorigenic and nontumorigenic human hybrids between GM0097 diploid fibroblasts and HT1080 fibrosarcoma cells was used to investigate further the relationship between the amount of surface fibronectin and the malignant potential of the cell. We can confirm that the malignant phenotype in these hybrids cosegregates with a decrease in cell-surface fibronectin. Moreover, the nontumorigenic hybrid incorporates into its extracellular matrix a significantly higher proportion of fibronectin isoforms that do not contain the alternatively spliced regions ED-A and ED-B. When, after chromosome segregation, malignant potential reappears in the hybrid cells, they incorporate more ED-A+ and ED-B+ isoforms than do the nontumorigenic hybrids from which they were derived.

Alternative Splicing↗

Repositioning of human interphase chromosomes by nucleolar dynamics in the reverse transformation of HT1080 fibrosarcoma cells.

An experimental system which should be valuable for studying the role of spatial positioning of the nuclear genome in human cell function has been developed. Reverse transformation of the malignant HT1080 fibrosarcoma cell line upon treatment with 8-chloro-cAMP results in growth inhibition, cytoskeletal reorganization, changes in nuclear shape and chromatin accessibility, and formation of prominent nucleoli. Fluorescent in situ hybridization was used to study DNA positioning during nuclear remodeling. Morphometric analysis of the hybridization sites for both repetitive sequences and "painting probes" for whole chromosomes indicated dispersal of acrocentric chromosomes in untreated cells and a highly organized central location of these ribosome gene-containing chromosomes in association with one or a few large nucleoli in nondividing treated cells. The results suggest that there was a directed movement of interphase chromosomes during a response which normalized a malignant cell line. These large-scale repositionings may serve two functions in restoring a normal transcriptional setup to the nucleus. First, ribosome genes are placed in the nucleolus, their transcriptional suborganelle. Second, nucleolar anchorings together with additional perinucleolar centromeric associations orient the domain shapes of entire chromosomes, installing gene-rich chromosomal regions into pockets of (accessible) DNAse I-sensitive chromatin populated by spliceosomes.

8-Bromo Cyclic Adenosine Monophosphate↗

Modulation by interleukin-2 of cellular response to fibroblast growth factor-1 in F69-3 fibrosarcoma cells.

FGF-1 stimulated DNA synthesis and induced expression of IL-2 receptors in the murine fibrosarcoma cell line, F69-3. Concomitant treatment with IL-2 abolished the stimulation of DNA synthesis, but not binding of FGF-1 to the FGF-receptors or subsequent endocytosis of the bound growth factor. Also, it did not inhibit activation of the FGF-receptor tyrosine kinase or stimulation of the downstream effector, MAP kinase. Treatment with IL-2 prevented transport of FGF-1 to the nuclear fraction in a time- and dose-dependent manner that parallelled the inhibition of FGF-1 stimulated DNA synthesis. The data support our earlier finding that transport of FGF-1 to the nucleus is an important event in the mechanism of stimulation of DNA synthesis induced by the growth factor, and they demonstrate that treatment with a cytokine can modulate the cellular response to FGF-1.

Animals↗

Enhanced expression of ICAM-1 in a murine fibrosarcoma reduces tumor growth rate.

Intercellular adhesion molecule-1 (ICAM-1) plays an essential role in lymphocyte adhesion to endothelium and migration across endothelial cell barriers. We undertook this study to determine the growth of a murine fibrosarcoma transfected with the ICAM-1 gene. MCA-105 tumor cells were cotransfected with ICAM-1 and the plasmid for neomycin resistance (NeoR). Selected G418-resistant clones were expanded and cell surface ICAM-1 expression was verified using a fluorescence-activated cell sorter. Integration of the ICAM-1 gene and ICAM-1 mRNA expression were verified by Southern and Northern blot hybridization analysis, respectively. C57BL/6 mice were divided into five groups (six animals/group): Control, NeoR only, ICAM-1 (low expressing, Clone 25), ICAM-1 (high expressing, Clone 81), and a 1:1 mixture of NeoR:Clone 81; animals received 1 x 10(6) cells on Day 0 and tumor measurements began on Day 7 and were measured in mm2. At 19 days, tumors from cell lines expressing ICAM-1 were significantly (P < .05) smaller than both the parental cell line and tumor-containing NeoR only (364 mm2 vs 466 mm2 and 527 mm2, respectively). This decrease in tumor growth may be a result of increased lymphocyte migration or increased anti-tumor cytotoxicity by infiltrating lymphocytes. The results from the mixed tumor experiment suggest a possible paracrine effect by cells expressing ICAM-1. Studies are currently under way to investigate the effect of immunotherapy on tumors derived from ICAM-1-cloned transfectants.

Animals↗

Mechanism of resistance of mice to syngeneic methylcholanthrene induced fibrosarcomas.

Mice become resistant to challenge with certain fibrosarcomas when bearing a tumor graft (concomitant immunity) or after injection of a low, non-tumorigenic dose of cells (sinecomitant immunity). Resistance to footpad challenge was depressed or abolished by treatment with carrageenan, niridazole or reserpine, or by sublethal irradiation, all of which also depressed delayed-type hypersensitivity (DTH) reactions. Immune lymphocytes initiating tumor-suppressive reactions in the feet of non-immune mice were Thy-1+, Ly-1+, Ly-2- and Ly-3-. Injection of tumor cells into the peritoneal cavities of immune mice specifically elicited an influx of macrophages. There was evidence of macrophage stimulation in tumor-immune mice. In vitro, anti-tumor effector cells lacking individual tumor specificity could be detected among the resident peritoneal cells of tumor-immune mice and among peritoneal exudate cells of non-immune mice. The expression of acquired resistance to some tumors may involve reactions akin to DTH in which a specific reaction triggers an accumulation of nonspecific effectors.

Animals↗

NK sensitivity, H-2, c-K-ras proto-oncogene expression and metastases: analysis of the metastatic potential of H-2 gene transfected fibrosarcoma cells.

The transformation of a potentially neoplastic cell into an autonomous highly malignant and metastatic tumor cell involves a multifactorial cascade of events. This will eventually lead not only to the emergence of a tumor cell with an unlimited potential of replication, but more important will contribute to its ability to ignore and evade homeostatic immune and non-immune regulatory mechanisms. Specifically, those mechanisms which may restrict and direct its growth, dissemination, patterns of differentiation and interaction with the cellular and humoral factors comprising its environment. However, many different factors may contribute to a highly invasive and malignant phenotype. It is obvious that one should expect that a cardinal role should be assigned to alterations in those factors which contribute to the capacity of the malignant cells with its environment at the cell membrane level, which in turn is dependent on the concerted functional expression of specialized membrane associated components (i.e. receptors, cyto adhesion molecules (CAM's), histocompatibility antigens, GAP junction complexes, extracellular matrix components, etc.). In the present studies, we have investigated the contribution of three major factors, which maybe the cause or result of alterations at the level of the cell membrane: MHC encoded antigen expression, susceptibility to the cytolytic activity of NK cells and enhanced expression of the c-K-ras proto-oncogene, as to their development of metastatic capacity of a malignant cell. To address these questions, we used metastatic (IE7) and non-metastatic (IC9) variants of the murine 3-methylcholanthrene induced T-10 fibrosarcoma. Using this system, the following major conceptually important observations were made: A. The restoration by transfection of the expression of membrane associated H-2K encoded glycoproteins abrogates the metastatic capacity of the highly metastatic tumor cell clone, IE7, irrespective of the degree of susceptibility to NK or c-K-ras oncogene expression. This reduction in metastatic capacity is followed by a significant decrease in its tumorigenicity which is concomitant with its ability to induce in vivo potent H-2K restricted CTL's. These results clearly indicate that H-2K region encoded molecules play no apparent role in determining the susceptibility of tumor cells to NK cells, and yet their loss or aberrant expression is a cardinal event in tumor progression towards metastatic capacity, a fact which is supported by similar observations achieved in other murine models (18).(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Tumor-necrotizing serum production by administration of BCG + Pseudomonas: its application in treatment of fibrosarcoma in mice.

A Pseudomonas aeruginosa (i.v.) treatment (10(8) killed organisms) has shown the capacity to induce the release of tumor-necrotizing factor in the serum of BCG-pretreated mice to the same extent as an LPS treatment. Lower doses of P. aeruginosa (10(7) killed organisms) were applied in BCG-pretreated mice (1 mg given IV 7 days prior to or 1 day after tumor graft) bearing a methylcholanthrene-induced fibrosarcoma. In both cases this combined treatment significantly delayed tumor growth without a toxic side effect.

Animals↗

Methylcholanthrene-induced murine fibrosarcoma cell line BMT-11 secretes granulocyte colony-stimulating factor.

Murine fibrosarcoma cell line BMT-11 was induced with 3-methylcholanthrene and maintained in culture. Transplantation of BMT-11 into syngeneic C57BL/6 mice produced leukocytosis consisting of marked increments of neutrophils and monocytes associated with massive splenomegaly. In order to elucidate the mechanisms of this leukemoid reaction, we studied the changes occurring in hematopoietic progenitor cells in BMT-11-transplanted mice. The numbers of granulocyte-macrophage colony-forming units (CFU-GM), erythroid colony-forming units (CFU-E), erythroid burst-forming units (BFU-E), and mixed colony-forming units (CFU-Mix) in the spleen showed dramatic 216-fold, 18-fold, 64-fold, and 80-fold increases, respectively, relative to the value in the control mice 5 weeks after the BMT-11 implantation. In contrast, the levels of progenitor cells in the bone marrow remained within normal limits. The nature of the colony-stimulating factor (CSF) secreted from BMT-11 tumor cells was also studied. BMT-11-conditioned medium (BMT-11-CM), BMT-11 tumor extract, and sera from the mice bearing transplanted BMT-11 tumor contained CSF that stimulated mainly granulocyte and macrophage lineages. Furthermore, the expression of the granulocyte colony-stimulating factor (G-CSF) gene in BMT-11 cells were detected by Northern blot analysis.

Animals↗

Effect of temperature on invasion of MO4 mouse fibrosarcoma cells in organ culture.

Invasion by MO4 mouse fibrosarcoma cells into fragments of embryonic chick heart or lung in organ culture was studied histologically and ultrastructurally at various temperatures between 12 and 40 degrees C. Invasion was absent for at least 7 days at or below temperatures of 29 degrees C. Invasion was invariably observed at or above 30.5 degrees C. Differences in invasion between 29 and 30.5 degrees C could not be ascribed to differences in growth, migration, or microtubule assembly/disassembly of MO4 cells. Neither could they be explained through differences in the attachment of MO4 cells to the heart fragments. Possible explanations for the absence of invasion at lower temperature are: altered resistance of the extracellular matrix in heart or lung fragments, and deficient expression of fucosylated glycoproteins at the surface of MO4 cells. A population of MO4 cells plated from the parent line and adapted to grow at 28 degrees C (MO(4)28 cell line) did not differ in invasiveness from the parent MO4 cells. We conclude that the temperature dependence of invasion in organ culture might indicate as yet unexplored aspects of the mechanisms of tumour invasion.

Animals↗

(+)-Catechin inhibits the invasion of malignant fibrosarcoma cells into chick heart in vitro.

(+)-Catechin, a flavonoid extractable from higher plants and trees, inhibits the invasion of malignant MO4 fibrosarcoma cells into embryonic chick heart fragments in vitro. This inhibition is maximal at a drug concentration of 0.5 mM. The growth of the MO4 cells is only partly inhibited at such a concentration, and the effect can hardly be ascribed to an irreversible cytotoxicity of the drug to the host tissue. Pretreatment of the host tissue with the drug seems to be a prerequisite for the inhibitory action, which suggests that the anti-invasive effect is at least partly mediated by the condition of the heart tissue. We hypothesize that the collagen-stabilizing effect of (+)-catechin is the key to the explanation of its anti-invasive properties.

Animals↗