Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0025202 (melanoma)
69,561 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Continuously growing cell cultures, testing positive for tyrosine activity, were derived from two brain and three lymph-node metastases of five patients with malignant melanoma. These cell cultures were analyzed regarding their proliferation rate with continuous bromodeoxyuridine (BrdUrd) labeling followed by bivariate Hoechst 33258/ethidium bromide flow cytometry. Melanoma cell cultures are more sensitive toward BrdUrd in comparison to human diploid fibroblast cultures: 50% growth inhibition at 360 +/- 130 microM BrdUrd (range: 130-520; n = 11) vs. 650 +/- 50 microM BrdUrd (n = 3) for fibroblasts. Moreover, BrdUrd sensitivity in melanoma cells is oxygen dependent: 50% growth inhibition at 200 +/- 55 microM (range: 65-400 microM) for 20% oxygen vs. 360 +/- 130 microM BrdUrd for 5% oxygen. The cell cycle kinetic mechanisms of BrdUrd-induced growth inhibition is accumulation of cells in the G2 phase. Cultures from a single metastasis showed up to a 3-fold variation in BrdUrd sensitivity. In one of the brain metastases two populations of different ploidy level (pseudotriploid vs. pseudotetraploid) and BrdUrd sensitivity could be resolved. Thus, continuous BrdUrd labeling followed by bivariate Hoechst 33258/ethidium bromide flow cytometry is a powerful tool to detect heterogeneity in proliferative capacity and drug sensitivity of cell populations within one tumor biopsy.
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PMID:Heterogeneity of bromodeoxyuridine sensitivity of cultured cells from melanoma metastases. 852 73

Human astrocytoma cells were studied using whole-cell patch-clamp recording. Voltage-dependent outwardly-rectifying anion currents were identified in primary cultures of six freshly resected human brain tumors and in seven established anaplastic astrocytoma/glioblastoma cell lines (U251MG, CH235MG, U373MG, U105MG, D54MG, SK-MG-1, and STTG1). Anion currents were not observed in normal, non-neoplastic glial cells, nor in human tumor-derived cells of non-glial origin (melanoma, breast cancer, neuroblastoma, rhabdomyosarcoma). Currents activated at potentials > 50 mV and showed large transients upon termination of voltage steps. Currents reversed at the predicted equilibrium potential for chloride ions and could also be recorded when Cl- was replaced by F-, Br- or I-. Currents were inhibited by the Cl- channel blockers chlorotoxin, DIDS, and DNDS. These Cl- currents may play a role in the growth control of astrocytoma cells.
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PMID:Human astrocytoma cells express a unique chloride current. 874 85

Human astrocytoma cells were studied using whole-cell patch-clamp recording. Voltage-dependent outwardly-rectifying anion currents were identified in primary cultures of six freshly resected human brain tumors and in seven established anaplastic astrocytoma/glioblastoma cell lines (U251MG, CH235MG, U373MG, U105MG, D54MG, SK-MG-1, and STTG1). Anion currents were not observed in normal, non-neoplastic glial cells, nor in human tumor-derived cells of non-glial origin (melanoma, breast cancer, neuroblastoma, rhabdomyosarcoma). Currents activated at potentials > 50 mV and showed large transients upon termination of voltage steps. Currents reversed at the predicted equilibrium potential for chloride ions and could also be recorded when Cl- was replaced by F-, Br- or I-. Currents were inhibited by the Cl- channel blockers chlorotoxin, DIDS, and DNDS. These Cl- currents may play a role in the growth control of astrocytoma cells.
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PMID:Human astrocytoma cells express a unique chloride current. 880 32

A rapid and precise screening assay was developed for in vitro evaluation of anti-orthomyxo- and anti-paramyxovirus agents. The procedure is spectrophotometrical assessment for viability of cells via extracellular leakage of lactic dehydrogenase (LDH). HMV-II cells, a human melanoma cell line was found to be suitable for the titration of virus infectivity and screening of anti-viral agents for orthomyxo- and paramyxoviruses. Comparative titration of infectivity of stock viruses by the LDH and the MTT in site reduction of 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyltetrazolium bromide (MTT) methods with HMV-II cells as well as plaque titration with MDCK, Vero and HeLa cells was carried out. The LDH method was comparable or more sensitive for influenza viruses (FLUV)-A, B, C, parainfluenza viruses (PFLUV)-1, 2 and less sensitive for PFLUV-3, mumps virus (MPSV), measles viruses (MLSV) and respiratory syncytial virus (RSV) than the plaque titration. The 50% effective concentration (EC50) of 1-beta-D-ribofuranosyl-1, 2, 4-triazol-3-carboxamide (ribavirin) and 5-ethynyl-1-beta-D-ribofuranosyl-imidazole-4-carboxamide (EICAR) against orthomyxo- and paramyxoviruses were examined comparatively by the LDH, MTT and plaque reduction (PR) methods. The EC50 values of FLUV-C and PFLUV-1 were able to be evaluated only by the LDH but not by the MTT and PR methods. The LDH method with HMV-II cells simplifies the assay procedure and permits the evaluation of a large number of compounds for anti-orthomyxo- and anti-paramyxoviruses activity in vitro.
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PMID:A colorimetric LDH assay for the titration of infectivity and the evaluation of anti-viral activity against ortho- and paramyxoviruses. 892 91

Halide-dependent cytolysis of B-16 melanoma cells mediated by myeloperoxidase and lactoperoxidase systems was observed by turbidimetry. A significant decrease in turbidity, which is indicative of cytolysis, was found when a system consisting of myeloperoxidase, a source of hydrogen peroxide (glucose+glucose oxidase), and chloride or bromide were added to a B-16 melanoma cell suspension in the pH 4.7-6.0 region. The myeloperoxidase could be replaced by lactoperoxidase in the system containing bromide, but not that containing chloride. B-16 melanoma cells exposed to myeloperoxidase or lactoperoxidase systems at pH 5.5 or 7.0 were implanted by subcutaneous inoculation into C57BL/6CrSlc mice. After 14 days, a significant suppression of the growth of black tumors was detected in the groups of mice inoculated with melanoma cells exposed to the systems containing myeloperoxidase, glucose, glucose oxidase and chloride or bromide, or the system containing lactoperoxidase, glucose, glucose oxidase and bromide, at pH 5.5, but no significant suppression was observed at pH 7.0. From these findings, we concluded that the exposure of B-16 melanoma cells to a system consisting of myeloperoxidase, hydrogen peroxide (generated by the glucose+glucose oxidase system) and chloride or bromide, or of lactoperoxidase, the hydrogen peroxide and bromide, at moderately acidic pH, causes cytolysis is accompanied by cell death.
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PMID:Cytolysis of B-16 melanoma tumor cells mediated by the myeloperoxidase and lactoperoxidase systems. 896 Mar 69

An attempt was made to use simple cationic liposomes DC-Chol/DOPE and DDAB/DOPE (DC-Chol is 3 beta (N(N',N-dimethylaminoethane) carbamoyl) cholesterol, DDAB is dimethyldioctadecyl ammonium bromide and DOPE is dioleoylphosphatidylethanolamine) for transfer of Escherichia coli cytosine deaminase 'suicide' gene under the control of tissue-specific tyrosinase gene promoter directly into the murine melanoma B16(F10) tumor. Several repeated intratumoral injections of DNA-liposome complexes followed by intraperitoneal administrations of 5-fluorocytosine, which is converted to 5-fluorouracil, caused strong retardation of murine melanoma B16(F10) tumor growth and, in some cases, rejection of the pre-established tumor. The inhibition of tumor growth expressed as the increased survival of mice is better seen in the case of using DNA-DDAB/DOPE complexes as compared to DNA-DC-Chol/DOPE ones. It seems that the observed therapeutic effect appears to result from several factors: 5-fluorouracil generation by transfected cells, liposome toxicity (DDAB is more toxic than DC-Chol and hence more tumor cells are killed), increased transfection efficiency of surviving cancer cells (in this case DDAB is a better transfection agent than DC-Chol) and, finally, the bystander effect which causes destruction of cells untransfected with CD gene by easily diffusible 5-fluorouracil.
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PMID:The use of cationic liposomes DC-CHOL/DOPE and DDAB/DOPE for direct transfer of Escherichia coli cytosine deaminase gene into growing melanoma tumors. 904 44

Soluble interleukin-2 receptor (sIL-2R) alpha chain serum levels as determined by enzyme-linked immunosorbant assay (ELISA) are commonly used to monitor various inflammatory and neoplastic disorders associated with lymphocytic proliferation and activation. The in vivo structure of this soluble receptor species, however, is not characterized. We investigated sera with elevated sIL-2R serum levels of patients with histologically proven cutaneous T cell lymphoma (CTCL) and high-dose IL-2-treated melanoma patients and healthy donors. Purified recombinant IL-2R alpha and beta chain molecules, produced by transfection of NIH/3T3 fibroblasts and CHO cells, served as positive controls for purification and detection procedures. For selective enrichment of IL-2R molecules from supernatants and sera, affinity columns were prepared by coupling recombinant IL-2 or monoclonal antibodies against the alpha and the beta chain of the IL-2R complex to cyanogen bromide-activated Sepharose. Western blotting with affinity-purified fractions under reducing and nonreducing conditions revealed proteins that showed immunoreactivity for IL-2R alpha, beta, and gamma chain using several detection antibodies against these molecules. We conclude that the composition of sIL-2R in vivo is more complex than that of recombinant sIL-2R and can include all three IL-2R chains.
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PMID:Circulating interleukin-2 receptors are a group of multimeric proteins with immunoreactivity for interleukin-2 receptor alpha, beta, and gamma chains. 916 25

We sought to determine the functional significance of the c-kit receptor (Kit) in melanoma, breast carcinoma, and non-small cell lung cancer (NSCLC). To explore these issues, we first screened cell lines of each type for c-kit mRNA expression using a reverse-transcription polymerase chain reaction. We found that WM-39 melanoma cells, HTB-22 breast carcinoma cells, and A549 NSCLC cells all expressed c-kit mRNA. Of interest, all of these cells expressed the c-kit ligand, Steel factor (SF). We then assessed the functional significance of c-kit and SF expression by disrupting the gene's expression with antisense (AS) oligodeoxynucleotides (ODN) targeted to c-kit mRNA codons 1-6 and SF mRNA codons 2-7, respectively. Nonhybridizing sequences [sense (5) and scrambled (SCR)] were also employed as controls. WM-39, HTB-22, and A549 cells were exposed to ODN (approximately 25 microM) for 5-7 days. Downregulation of c-kit and SF mRNA, and c-kit protein was demonstrated in cells treated with AS ODN. Effects on viable cell growth were demonstrated by the 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT) or 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4 -sulfophenyl)- 2H-tetrazolium (MTS) assay. In fact, c-kit antisense ODN inhibited the viable cell growth of A549 cells 66% and 79% compared to sense and untreated controls (P = .0003; P < .0001). Additionally, WM-39 cell growth was inhibited 48% and 21% (P < .0001, P < .03) and HTB-22 cell growth was inhibited 50% (P < .001) compared to sense and untreated controls. Viable cell growth was also significantly inhibited by SF AS ODN compared to S and SCR controls in all cell lines. These results demonstrate that WM-39, HTB-22, and A549 NSCLC cells all express the c-kit and SF protooncogenes and suggest that the encoded receptor and ligand are important for cell growth. By finding the presence, and functional importance, of both the receptor and ligand in these cells, this study suggests the existence of an autocrine loop growth mechanism worthy of further study.
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PMID:Evidence for a functional kit receptor in melanoma, breast, and lung carcinoma cells. 917 36

Lipid-based DNA transfer formulations are typically selected on the basis of in vitro transfection studies where the activity of specific formulations is defined by transgene expression. It is unclear, however, whether expression is directly related to the efficiency of DNA transfer. In an attempt to correlate DNA transfer with transgene expression, we used a simple assay consisting of measuring DNA (3H-plasmid encoding for beta-galactosidase) binding to murine (B16/BL6) and human (KZ) melanoma cells in vitro at 4 and 37 degrees C. The difference in cell association at these temperatures was assumed to be a consequence of DNA uptake, an assumption that was confirmed by protease removal of cell surface-associated DNA. DNA associated with B16/BL6 melanoma cells (up to 30 ng or 12% of the added DNA) following incubation with dioleoyldimethylammonium chloride/dioleoylphosphatidylethanolamine (DOPE) liposome-DNA aggregates was comparable to that achieved with 1,2-dioleoyloxypropyl-3-trimethylammonium bromide/DOPE or dimethyldioctadecylammonium bromide/DOPE liposomes; however, transgene expression was 2- and 5-fold less for the latter two formulations, respectively. Similarly, equivalent amounts of DNA delivery were achieved with B16/BL6 and KZ melanoma cells, yet the level of transgene expression in the KZ cells was undetectable. It was demonstrated that the lack of transgene expression was not a consequence of cell-specific differences in DNA degradation.
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PMID:Analysis of cationic liposome-mediated interactions of plasmid DNA with murine and human melanoma cells in vitro. 923 50

Patients with metastatic melanoma have a very poor prognosis. In many cases, the tumor recurs after surgical excision. Therefore, it might be beneficial for cancer patients to induce an immune attack against the tumor by inserting a cytokine gene into the tumor cells. Here, 14 primary cell cultures could be established from 45 patients with malignant melanoma. Primary cell cultures were transfected via electroporation with the gene encoding for human interleukin-7 (IL-7). Transfection resulted in the production of biologically active IL-7 with an average of 850 pg/mL per 10(6) cells per 24 hours. Irradiation with 10,000 cGy, which inhibited tumor cell growth in vitro, increased the amount of released IL-7 to an average amount of 1050 pg/mL per 10(6) cells per 24 hours. No significant differences in the phenotype were observed in the IL-7-transfected cells compared with nontransfected cells. The expression of HLA class I and II, ICAM-1, and of a melanoma-associated antigen remained unaltered. Transfection with IL-7 had no significant effect on the proliferation of melanoma cells as measured in a MTT [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] assay. There was no significant change in the cytokine profile after transfection or irradiation of the cells, but one cell culture expressed a high amount of IL-6 (about 2 ng/mL). IL-6 was expressed in nontransfected cells and was not altered by transfection. Interestingly, transfected cells from primary melanoma cultures possessed a higher sensitivity to immunologic effector cells compared with nontransfected cells. This was true for allogeneic as well as autologous melanoma cells. Our results show the feasibility of a gene transfer into primary human melanoma cells, different from retroviral transduction. IL-7-transfected cells might be of value in vaccination protocols for melanoma patients.
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PMID:Increase of cytotoxic sensitivity of primary human melanoma cells transfected with the interleukin-7 gene to autologous and allogeneic immunologic effector cells. 925 12


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