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Glucocorticoids induce focus formation and increase sarcoma viral expression in a mink cell line that contains a murine sarcoma viral genome.

Dexamethasone (3 X 10(-10) to 3 X 10(-6) M) induced foci of morphologically transformed cells in a small proportion of a mink cell line that contains the Moloney murine sarcoma viral genome (S+L-). The induction was glucocorticoid specific, since other steroids with glucocorticoid activity (prednisolone, cortisol, and aldosterone) induced foci with an efficiency that paralleled their glucocorticoid activity, and steroids lacking glucocorticoid activity (17B-estradiol, testosterone, and progesterone) failed to induce foci. Viral antigen, as measured by specific immunofluorescence, was localized to the foci. The induction of foci by dexamethasone (3 X 10(-7)) was accompanied by an approximately 10-fold increase in intracellular Moloney murine sarcoma virus-specific RNA and viral p30 antigen. Removal of dexamethasone was followed by the disappearance of foci and a decrease in viral RNA and p30. In this cell system, therefore, glucocorticoids can affect the intracellular levels of type C viral RNA and protein.

Animals

Radiation treatment of Ewing's sarcoma and osteogenic sarcoma.

At the Princess Margaret Hospital, Toronto, during the period 1960 to 1975, radiation therapy was given to 59 patients with Ewing's sarcoma without overt metastases. Over this period treatment was modified to include, as well as irradiation to the primary tumour, total body irradiation (TBI) and chemotherapy according to various regiments. The 5-year survival rate of 38% in 26% patients who received TBI suggests that this may be of value. In patients with osteogenic sarcoma preoperative irradiation was not found to be of value. Recently the resection of pulmonary metastases combined with chemotherapy has increased the survival rate. When the primary site makes resection impracticable, the response to irradiation and chemotherapy is encouraging. Three cases so treated are described.

Adolescent

Regression of feline sarcoma virus-induced sarcomas in dogs. II. Immunologic investigations.

The serial development of cell-mediated immunity (CMI), cytotoxic antibody activity, serum blocking activity, and virus-neutralizing antibody levels were monitored in vitro for beagle and mongrel puppies inoculated with feline sarcoma virus (FeSV) and were compared to in vivo histologic markers of regression of induced sarcomas. CMI developed rapidly and maintained a high level of in vitro activity throughout the tumor life-span. Cytotoxic antibody levels similarly rose rapidly to peak just before clinically detectable regression and then declined during most of the regression sequence. This suggested antibody fixation at the tumor site, correlating with the histologic finding of focal necrosis and neutrophilic infiltrates. Inactivation of antibody by circulating antigen with subsequent immune complex formation was a possibility. Levels of virus-neutralizing antibody in sera paralleled those of cytotoxic antibody; their relationship in the circulation was not clear, but each related to virus-determined antigenic specificities. Serum blocking activity rose rapidly, leveled off during most of the tumor life-span, and rose slightly during the last stages of regression. This partly explained the lack of in vivo tumor lymphoid infiltrates to correlate with the striking in vitro CMI. Blocking activity was also present, however, when lymphoid infiltrates were seen histologically. Thus in vitro-in vivo correlation was best for cytotoxic antibody, which suggested that antigen-antibody reactions involving neutrophil-mediated regression sequences were important in effecting tumor-cell destruction.

Animals

[Immunoblastic sarcoma (reticulum-cell sarcoma) of the gastro-intestinal tract in a case of dermatitis herpetiformis Duhring (author's transl)].

In a 43-year-old man who for 20 years was known to have dermatitis herpetiformis there co-existed, since 1974, a "dermatogenic enteropathy" with gastro-intestional symptoms. Several small-intestine biopsies demonstrated severe partial to subtotal villous atrophy with crypt hyperplasia, as seen in gluten-sensitive enteropathy. At post-mortem there was an immunoblastic sarcoma - so-called reticulum-cell sarcoma - in the upper jejunum and abdominal lymph-nodes, which was presumably the immediate complication of the sprue-like lesions of the small intestines.

Adult

Restriction endonuclease mapping of unintegrated proviral DNA of Snyder-Theilen feline sarcoma virus: localization of sarcoma-specific sequences.

Extrachromosomal DNA purified from mink cells acutely infected with the Snyder-Theilen strain of feline sarcoma virus (FeSV) was digested with restriction endonucleases, and the DNA fragments were electrophoretically separated, transferred to a solid substrate, and hybridized with radiolabeled DNA transcripts complementary to different portions of the FeSV RNA genome. Major DNA species 8.4 and 5.0 kilobase pairs (kbp) long represent the linear, unintegrated proviruses of Snyder-Theilen feline leukemia virus and FeSV, respectively. Transfection experiments performed with electroeluted DNAs showed that the 8.4-kbp form led to the production of replicating nontransforming virus in mink and cat cells; in contrast, the 5.0-kbp DNA produced helper virus-independent foci of transformation in mouse NIH/3T3 cells and helper virus-dependent foci in mink cells at an efficiency comparable to that obtained with unfractionated extrachromosomal DNA. Sites of restriction endonuclease cleavage for six enzymes were oriented with respect to one another within the FeSV provirus. EcoRI recognized cleavage sites at 0.3 to 0.4 kbp from each terminus of FeSV DNA, reducing the 5.0-kbp DNA to molecules 4.3 kbp long; this enzyme excised a large internal proviral DNA fragment of corresponding size from the DNA of FeSV-transformed mink nonproducer cells. By using DNA transcripts complementary to different portions of the FeSV genome, sarcoma-specific sequences (the FeSV src gene) were positioned within 2.1 and 3.4 kbp from the 5' end of the proviral DNA with respect to the viral RNA genome. The src gene is flanked at both ends by sequences shared in common with feline leukemia virus. The localization of src sequences to this region suggests that a portion of an FeSV polyprotein which contains feline oncornavirus-associated cell membrane antigen (FOCMA-S) is the major product of this gene.

Animals

Growth pattern of tumours in mice induced by murine Moloney sarcoma-virus and sarcoma-virus-transformed cells.

Transplantation of a Moloney sarcoma-virus (MSV-M)-transformed producer cell line (Sac(+)) induced progressively or regressively growing tumours in mice. Progressive growth always occurred after transplantation of an MSV-M non-producer transformant (Sac(-)), whereas the MSV-M released from the producer cells (Sac virus) always induced tumours which regressed. In contrast to the non-producer, the producer transformant Sac(+) as well as Sac virus induced a strong immune response, detected in vitro by cell- and antibody-mediated cytotoxicity assays, and in vivo by transplantation immunity. Implantation of Sac(-) cells led to solid, under-vascularized tumours, consisting histologically of uniform densely packed tumour cells. Sac-virus-induced tumours, however, were very well vascularized and arose by proliferation of different connective-tissue cells. After transplantation of Sac(+) cells, tumours were found to consist of typical tumour cells morphologically similar to Sac(-) cells intermingled with proliferated connective-tissue cells. Cultivation of tumour fragments from Sac(+) and Sac(-) tumours was followed by outgrowth of transformed tumour cells with the properties of the originally implanted cells. Tumour explant cultures from Sac-virus-induced tumours did not lead to growth of stably transformed cells. Co-culture of mouse embryo fibroblasts (MEF) with Sac(+) cells resulted in overgrowth of the transformed cells. Infection of MEF with Sac virus led to transiently transformed cells. It is concluded that Sac(+) cell tumours will resist the strong immune defence mechanisms they induce and grow progressively, if the inoculated cells are able to build up a solid, poorly vascularized nodule in the tissue. This always happens after implantation of 10(6) cells, but only occasionally when fewer cells are inoculated. Sac-virus-induced tumours will always regress owing to the strong immune response. The regression is furthered by the fact that MSV-M infection rarely if ever leads to a stable transformation.

Animals

Association of Kaposi's sarcoma and prior immunosuppressive therapy: a 5-year material of Kaposi's sarcoma in Norway.

A retrospective study of 53 cases with a histological diagnosis of Kaposi's sarcoma (KS) reported to The Cancer Registry of Norway during a five year period is presented. Four cases were excluded from the material because further information contradicted the diagnosis of KS. Of the remaining 49 cases, information of treatment received before the development of KS was obtained in 41 (83.7%). Six (14.6%) of the 41 patients developed KS during systemic treatment with corticosteroids, two of the 6 cases also used azathioprine. None of the patients had undergone renal transplantation. One additional patient had received radiotherapy for a malignant lymphoma prior to the development of KS. In a control group of 242 consecutive patients hospitalized because of basal cell carcinoma of the skin, none had used systemic corticosteroid or cytotoxic drugs. Case reports of the 7 patients with KS developing after immunopressive therapy are presented.

Adrenal Cortex Hormones

Antibody patterns to herpesviruses in kaposi's sarcoma: serological association of european kaposi's sarcoma with cytomegalovirus.

Sera from patients with Kaposi's sarcoma (KS) were examined for antibody titres to cytomegalovirus (CMV), Epstein-Barr virus (EBV) and herpes simplex virus (HSV) types 1 and 2 by four techniques: indirect haemagglutination (IHA), complement fixation (CF), virus neutralization (NT) and indirect immunofluorescence (IF). The patients were classified, according to the stage of disease, as progressive and regressive. Control sera were obtained from healthy adults, matched for age, sex, race, socioeconomic status and geographic location, as well as from patients with melanoma, some of whom were receiving chemotherapy similar to that given to the KS patients. All KS sera contained CMV-neutralizing antibodies. Seventy-five percent of the European KS patients, mainly regressors, showed elevated anti-CMV titres by IHA with a significant increase in the geometric mean over the corresponding healthy adult group and the melanoma group. An overrepresentation of high anti-CMV titres, although less marked, was found by CF. There was no significant association with antibodies to EBV, HSV-1 and HSV-2 related antigens. By contrast, the African KS patients, mainly progressors, did not show a serologic association with CMV or with EBV and HSV-1 and 2. The implication of these results is discussed.

Adult

Antibody patterns to herpesviruses in Kaposi's sarcoma. II. Serological association of American Kaposi's sarcoma with cytomegalovirus.

The prominent finding of this extended serologic analysis on American and African Kaposi's sarcoma (KS) patients and appropriately matched control groups is the detection of a specific serologic association of cytomegalovirus (CMV) with American KS patients. All American KS sera contained CMV antibodies and their geometric mean titers (GMT) were significantly higher than those in sera of melanoma patients (GMT ratio k = 5.3 to 7.7 by complement fixation [CF], k = 8.9 by indirect hemagglutination [IHA]) or in sera of age- and sex-matched healthy controls (k = 12.6 to 16.0 by CF, k = 12.6 by IHA). The result is strongly reminiscent of the data obtained previously for European KS. Although the GMT to CMV of African KS patients were similar to the GMT of the American KS groups, their significance cannot be demonstrated due to the high background of CMV infections in the control groups. Complex mechanisms are hypothesized, by analogy with the Epstein-Barr virus (EBV) involvement in Burkitt's lymphoma (BL), for a CMV involvement in the development of KS.

Aged

Relationship between Moloney murine leukemia and sarcoma virus RNAs: purification and hybridization map of complementary DNAs from defined regions of Moloney murine sarcoma virus 124.

Complementary DNAs (cDNA's) specific for various regions of the Moloney murine sarcoma virus (MSV) 124 RNA genome were prepared by cross-hybridization techniques. A cDNA specific for the first 1,000 nucleotides adjacent to the RNA 3' end (cDNA 3') was prepared and shown to also be complementary to the 3'-terminal 1,000 nucleotides of a related Moloney murine leukemia virus (MLV) genome. A cDNA complementary to the "MSV-specific" portion of the MSV 124 genome was prepared. This cDNA was shown not to anneal to Moloney MLV RNA and to anneal to a portion of the viral RNA of about 1,500 to 1,800 nucleotides in length, located 1,000 nucleotides from the 3' end of MSV RNA. A cDNA common to the genome of MSV and MLV was also obtained and shown to anneal to the 5'-terminal two-thirds, as well as to the 3'-terminal 1,000 nucleotides, of the MSV RNA genome. This cDNA also annealed to the RNA from MLV and mainly to the 5'-terminal half of the MLV genome. It is concluded that the 6-kilobase Moloney MSV 124 RNA genome has a sequence arrangement that includes (i) a 3' portion of about 1,000 nucleotides, which is also present at the 3' terminus of MLV; (ii) an MSV-specific region, not shared with MLV, which extends between 1,000 and 2,500 nucleotides from the 3' terminus; and (iii) a second "common" region, again shared with MLV, which extends from 2,500 nucleotides to the 5' terminus. This second common region appears to be located in the 5' half of the 10-kilobase MLV genome as well. Experiments in which a large excess of cold MLV cDNA was annealed to (3)H-labeled polyadenylic acid-containing fragments of MSV RNA gave results consistent with this arrangement of the MSV genome.

Base Sequence

Detection of the viral sarcoma gene product in cells infected with various strains of avian sarcoma virus and of a related protein in uninfected chicken cells.

Genetic analyses have defined a single gene (src) as that portion of the avian sarcoma virus (ASV) genome which encodes the protein directly responsible for ASV-induced neoplastic transformation. We have recently identified the polypeptide product of the src gene of the Schmidt-Ruppin (SR) strain of ASV, a 60,000-dalton phosphoprotein designated pp60(src), and have further determined that pp60(src) acts as a protein kinase. Essential to the identification and characterization of the pp60(src) protein of SR-ASV was the use of serum (TBR serum) from rabbits bearing SR-ASV-induced tumors. TBR serum was, however, strain specific, recognizing pp60(src) from SR-ASV-transformed cells only. We report here that sera from marmosets bearing tumors induced by the Bryan or SR strains of ASV (TBM sera) contain antibody which precipitates the transforming gene product from cells transformed by the SR, Bryan, Prague, or Bratislava strains of ASV. In contrast, rabbits bearing tumors induced by either the Bratislava or Bryan strains of ASV, or hamsters with SR-ASV-induced tumors did not produce antibody to pp60(src) from any strain of ASV. The 60,000-dalton polypeptides immunoprecipitated with TBM serum from cells transformed by each of the above virus strains are phosphoproteins. One-dimensional peptide mapping by limited proteolysis revealed that the pp60(src) proteins are structurally very similar, but not identical. Furthermore, all of the viral pp60(src) proteins have an associated phosphotransferase activity. In addition to detecting the viral src proteins, TBM serum was able to immunoprecipitate an antigenically related protein from normal uninfected avian cells.

Animals

Studies on Crocker sarcoma 180 under the effect of alkylating agents. IV. Morphological studies of sarcoma 180 during treatment with the antitumour drug cytoxan.

The effect of one massive dose of cytoxan (150 mg/kg), as an alkylating agent, on the morphology of sarcoma 180 cells was followed after 1, 3, 6, 12, 24, 48, 96, 120, and 168 h. After 1 h the cells of treated tumour showed clumping and a decrease in their size. In addition, statistical analysis manifested significant decrease in all phases of mitotic figures. All mitotic figures were completely stopped after 3 h from cytoxan treatment. After 6 and 12 h from cytoxan treatment the hyaline degenerations became more marked in the treated tumour tissue. Chromosomal bridge formation, nuclei aberrations and polynuclear cells were more prominent in 24, 48, and 96 h from cytoxan treatment. Increase in the nuclear size and hyaline degeneration were observed in treated section of 120 and 168 h.

Alkylating Agents

Properties of reticulum cell sarcomas in SJL/J mice. V. Nature of reticulum cell sarcoma surface antigen which induces proliferation of normal SJL/J T cells.

The results of studies on the reticulum cell sarcoma (RCS) tumors of SJL/J mice presented here, indicate that spontaneous tumors, which arise in older mice, also possess the capacity to induce the vigorous proliferative response in syngenetic T lymphocytes that are characteristic of the transplantable RCS lines. Analysis of cell surface antigens revealed the presence of Ia determinats on gradient-purified transplantable RCS tumor cells; however, these cells did not express Thy 1.2, nIg, or, any of the viral proteins that were tested for by specific antisera. Pretreatment of RCS cells with anti-Ia sera and complement-deleted cells that were stimulatory for syngenetic T lymphocytes, and addition of anti-Ia sera directly to cultures blocked the proliferative response at the stimulator (RCS) cell level. Lymph node cells from H-2(8) strains other than SJL/J, including A.SW and B10.S also gave proliferative responses to RCS cells, although lower in magnitude. A requirement on the part of responding cells for identity with RCS cells at the Ir region was indicated by the finding that A.TH but not A.TL lymph node cells responded to RCS. It is concluded that RCS cells stimulate Ir-region identical T cells (without evidence of presensitization) through a modification in the expression of Ia antigens on the surface of the tumor cells.

Animals