Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P05231 (interleukin-6)
23,907 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Expression of the two types of tumor necrosis factor (TNF) receptor, p55 and p75, in 12 human glioblastoma cell lines was studied. Reverse-transcription polymerase chain reaction detected messenger ribonucleic acid (mRNA) transcripts of p55 TNF receptor in all 12 cell lines tested, but p75 TNF receptor mRNA in only four cell lines. Flow cytometric analysis with anti-p55 and anti-p75 TNF receptor monoclonal antibodies demonstrated both p55 and p75 proteins in these four cell lines, but the level of expression of p75 molecule was very low. Correlation of p55 and p75 TNF receptor expression with TNF-induced growth suppression and production of bioactive molecules (interleukin-6, interleukin-8, manganase-superoxide dismutase, prostaglandin E2) showed that p55 TNF receptor mediates these TNF actions, but none of the responses were influenced by the presence of the p75 TNF receptor, which apparently has no specific role.
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PMID:p55 and p75 tumor necrosis factor receptor expression on human glioblastoma cells. 756 86

Most tumors, including gliomas, are resistant to tumor necrosis factor (TNF) cytotoxicity unless protein or RNA synthesis is inhibited. We investigated the effects of the combined use of TNF-alpha and cisplatin (CDDP) on cultured malignant glioma cells, T98G, U373MG, A172, and U87MG. All glioma cell lines were sensitive to treatment with CDDP but resistant to TNF-alpha during 24 h-incubation. The combined use of CDDP and TNF-alpha had synergistic effects on T98G and U87MG but not on U373MG and A172 cells. Sequential treatments showed that only pretreatment with CDDP for 2 h followed by TNF-alpha for 22 h was synergistic on cell cytotoxicity. Annexin V-flow cytometry and terminal deoxynucleotidyl transferase-mediated dUTP nick-end-labeling assay showed that TNF-alpha can induce apoptosis in cells treated with CDDP. Although only sensitive cell lines express transcripts for p75 TNF receptor 2, changes in TNF receptors were not found to contribute to the susceptibility to TNF-alpha. The production of interleukin-6, a representative cytoprotective cytokine, from glioma cells stimulated by TNF-alpha was suppressed by the combined use of actinomycin D, but not CDDP. Our results indicate that CDDP can sensitize glioma cells to TNF-alpha-induced apoptosis by a mechanism other than blocking the cytoprotective protein production.
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PMID:Sensitization of human malignant glioma cell lines to tumor necrosis factor-induced apoptosis by cisplatin. 1145 Dec

Tumor necrosis factor alpha (TNFalpha) and TNFalpha receptor mRNA expression, the effects of TNFalpha on DNA synthesis and cell proliferation as well as its effects on interleukin-6 (IL-6) production and expression in renal cell carcinoma (RCC) were studied using RCC cell lines. The effects of TNFalpha on DNA synthesis and IL-6 production were also studied using short-term established RCC cell lines. A total of 8 cell lines, 4 RCC cell lines (RC-2, RGB, 14T, 4T) and 4 cell lines established at our laboratory (OCUU-1, 2, 4, 5), as well as 10 short-term established RCC cell lines were used. When TNFalpha and TNFalpha receptor mRNA expression was examined by RT-PCR, p55 TNF receptor mRNA expression was observed while TNFalpha and p75 TNF receptor mRNA expression was not observed in all cell lines. When the effects of TNFalpha on DNA synthesis were studied by [3H]-thymidine incorporation assay, DNA synthesis was induced in RGB, 14T, 4T, OCUU-2 and OCUU-4 by adding 10 and 100 pg/ml of TNFalpha while it was not induced in RC-2 and OCUU-5 at all concentrations. When its effects on cell proliferation were evaluated by MTT assay, cell proliferation was observed in RGB, 14T and 4T at TNFalpha concentration of 10 pg/ml and in RGB, 14T, 4T, OCUU-4 and OCUU-5 at TNFalpha concentration of 100 pg/ml. However, cell proliferation was not detected in RC-2 and OCCU-2 at any concentration. When the effects of TNFalpha on IL-6 production were studied by ELISA, IL-6 production was induced in RC-2, RGB, 14T, OCUU-1, OCUU-2 and OCUU-5 while not in 4T and OCUU-4. When its effects on IL-6 expression were examined by Northern blot analysis, the results were similar to those obtained by ELISA. As for the 10 short-term established RCC cell lines, DNA synthesis and IL-6 production were induced with the addition of TNFalpha. These results suggested that TNFalpha induced cell proliferation in RCC.
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PMID:Effects of tumor necrosis factor alpha in renal cell carcinoma. 1453 24