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)

Mesothelial cells that line the peritoneal cavity are capable of producing several proinflammatory cytokines such as interleukin-6 and interleukin-8. Since they are the most numerous cell in the peritoneal cavity when the lining mesothelial cells are included, they may play a major role in the local antibacterial defence mechanism. Cancer antigen (CA)125 is expressed by mesothelial cells (as by other coelomic epithelium-derived cells) and might therefore be considered a marker of the mesothelium. The aim of this study was to determine whether CA125 is a bulk or an activation stage mesothelial cell marker. A positive correlation was found between the mesothelial cell number and the CA125 concentration in dialysate of stable PD patients (P = 0.03). CA125 release by mesothelial cell cultures during confluence showed that the release per cell was constant in time. Stimulation of mesothelial cells in a confluential phase with IL1 beta, TNF alpha, IFN gamma and TGF beta did not result in an increase in CA125 release. Cell lysis showed that CA125 is also present intracellularly. This implies that release of intracellular CA125 can be a disturbing factor in interpreting the CA125 concentration of dialysate in situations where mesothelial cell death may occur, such as in peritonitis. It can be concluded, that our data show that dialysate CA125 is a bulk marker for the mesothelial cell mass in stable PD patients and can thus provide data on the state of the peritoneal membrane in the follow-up of the individual patient.
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PMID:Cancer antigen 125: a bulk marker for the mesothelial mass in stable peritoneal dialysis patients. 772 31

Monocytes of healthy donors were infected with HIV1 in vitro: 14-21 days after infection 50-70% of the cells produced p24 HIV1 antigen as detected with anti-p24 immunostaining; infected cultures showed enhanced secretion of interleukin-6 (IL6), interleukin-8 (IL8) and tumour necrosis factor alpha (TNF-alpha). The expression of cytokines on the single-cell level was further analysed by in situ hybridization using nonradioactive digoxigenin for detection. HIV1 (p24+) -producing cells were compared with non-HIV (p24-) -producing cells. All morphological subtypes of macrophages showed HIV production; no difference in cytokine expression was observed. Immunocytochemistry of HIV-infected and uninfected cultures also showed no difference in the pattern of IL1-beta, IL6, IL8 and TNF-alpha protein expression in the cells.
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PMID:Cytokine expression of HIV-infected monocytes/macrophages at the single-cell level. 780 Sep 45

We analyzed the response of human astrocytoma cell line U373-MG to various cytokines by measuring the production of interleukin-6 (IL6) mRNA and cytokine protein. Interferon gamma (IFN gamma), transforming growth factor beta 1 (TGF-beta 1), granulocyte-macrophage colony-stimulating factor (GM-CSF) and granulocyte-colony-stimulating factor (G-CSF) did not induce IL6 mRNA production; however, IL6 mRNA expression and protein production was strongly induced by IL1 alpha and to a lesser extent by IFN alpha. The IL6 mRNA expression induced by IL1 alpha was potentiated by TGF-beta 1 and IFN alpha and slightly decreased by IFN gamma. The potentiation of cytokine mRNA accumulation by TGF-beta 1 was both time- and concentration-dependent. Induction of IL6 mRNA by IL1 alpha was optimally potentiated either if U373-MG cells were pretreated with TGF-beta 1 or if TGF-beta 1 was added within 30 min after stimulation with IL1 alpha. The potentiation of IL6 mRNA by TGF-beta 1 required de novo synthesis of an intermediate protein since treatment with cycloheximide abrogated the amount of mRNA enhanced by TGF-beta 1 without affecting IL1 alpha-driven mRNA production. Nuclear run-on analyses demonstrated increased transcriptional activity of the IL6 gene when stimulated with IL1 alpha in the presence of TGF-beta 1. However, actinomycin-D pulse chase experiments showed that TGF-beta 1 did not increase the stability of IL6 mRNA. Thus, in concert, the results demonstrate that TGF-beta 1 potentiates IL6 production in astrocytoma cells by promoting the transcriptional activity of the IL6 gene and requires coexpression of new proteins. Since cytokines can provide potent mitogenic signals to tumor cells, the results presented here further suggest that the antitumor effect of combination cytokine therapy might partly depend on heterotypic interactions between tumor cells and cytokines.
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PMID:Transforming growth factor beta-1 (TGF-beta 1) potentiates IL1 alpha-induced IL6 mRNA and cytokine protein production in a human astrocytoma cell line. 805 3

Using in situ hybridization, we investigated the expression of mRNA for interleukin-1 beta (IL1 beta), interleukin-6 (IL6), and transforming growth factor-beta-1 (TGF beta 1) in sections of developing bone in human osteophytes. The expression was related to the cellular activity of alkaline phosphatase to aid in the identification of pre-osteoblast populations. IL1 beta mRNA was localized in active osteoblasts within distinct areas of intramembranous ossification. However, the expression was sporadic and appeared to occur at a specific stage of the osteoblast life cycle. There was no IL1 beta mRNA expression in any cell types during endochondral ossification. IL6 mRNA expression was located within pre-osteoblasts and in newly differentiated and matrix-secreting osteoblasts; expression was absent or reduced in flattened, inactive osteoblasts. Weak or no IL6 expression was observed in chondroblasts and chondrocytes, respectively. However, there was a close association between IL6 mRNA expression and the differentiation of mesenchymal cells into osteoblasts. TGF beta 1 expression was localized to osteoblasts apposed to bone or cartilage matrix; the intensity of expression correlated with matrix secretion. Chondroblasts and chondrocytes expressed lower but significant levels of TGF beta 1 mRNA; the expression was lost with the progression to calcifying cartilage. The three cytokines studied were differentially expressed both temporally and spatially, suggesting different roles for each in osteoblast and chondrocyte function.
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PMID:Expression of mRNA for IL1 beta, IL6 and TGF beta 1 in developing human bone and cartilage. 818 35

In this study, we addressed the question of whether carcinogens affected the expression of interleukin-1 alpha (IL1 alpha), interleukin-1 beta (IL1 beta), and interleukin-6 (IL6) genes and the production of the relative proteins. Primary cultures of human monocytes were exposed to the alkylating agents mitomycin C (Mit C), methylmethane sulfonate (MMS), and ethylmethane sulfonate (EMS) and tested for the production of IL1 alpha, IL1 beta, and IL6 proteins, as well as for the expression of IL1 alpha, IL1 beta, and IL6 transcripts. The production of IL1 beta and IL6 was significantly augmented by all the three chemicals after 24-48 h of treatment. IL1 alpha was also increased by Mit C and MMS. By Northern blotting analysis, the increased expression of IL1 alpha, IL1 beta, and IL6 genes was shown to occur at 30 min of Mit C and MMS treatment and to decline after 8 h. Similarly, EMS up-regulated the expression of IL1 beta and IL6 genes. The mutagen-mediated increase in interleukin transcripts did not require de novo protein synthesis, and it was due to the enhanced half-life of IL1 alpha, IL1 beta, and IL6 mRNAs rather than to the increased rate of gene transcription. These results suggest that carcinogens, in addition to causing DNA mutations and rearrangements, may also affect cell growth and differentiation by enhancing the expression of cytokine genes.
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PMID:DNA damaging agents increase the stability of interleukin-1 alpha, interleukin-1 beta, and interleukin-6 transcripts and the production of the relative proteins. 819 20

Along with the numerous technological improvements in molecular biology, polymerase chain reaction, which permits analysis of sequences of a very small amount of biological material, enables evaluation of hemodialysis-induced gene transcription of inflammatory cytokines. Blood samples drawn from 22 hemodialysis patients, treated with cellulose-derived or synthetic membranes, were collected at 0 and 15 min of hemodialysis. Total RNA, purified from mononuclear cells, was reverse transcribed and cDNA amplified by polymerase chain reaction primed with specific oligomers in order to determine tumor necrosis factor alpha (TNF alpha), interleukin (IL) 1 beta and IL6 gene expression. Plasma samples were collected at 0 and 180 min for detection of mature cytokines by enzyme immunoassay with plates pre-coated with monoclonal antibodies to TNF alpha, IL1 beta and IL6. A significant increase in TNF alpha mRNA was detected at 15 min of hemodialysis in 12 of 22 patients: 5 of 9 treated with cuprophan; 3 of 3 with cellulose triacetate; 3 of 5 with polysulfone, and only 1 of 5 treated with polymethyl-methacrylate membranes. A parallel increase in IL1 beta or IL6 mRNA was detected, and significant relationships were found between TNF alpha and IL1 beta (p < 0.001), and IL1 beta and IL6 gene expression (p < 0.05). Increased levels of mature TNF alpha and IL1 beta molecules in plasma were detected in the majority of patients showing an increased cytokine gene expression. However, the absolute amount of cytokine mRNA transcription at 15 min did not predict the levels of mature molecules reached in plasma at 180 min. Cytokine mRNA transcription is quite common at the beginning of a dialysis run. Possibly due to intracellular degradation of critical sequences of cytokine mRNA, gene expression does not necessarily imply translation into mature protein. It is suggested that mechanisms related to cell-to-cell interaction, which may possibly involve procytokine biology, are needed to drive phenomena of cytokine activation to clinical effectiveness.
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PMID:Intradialytic cytokine gene expression. 951 60

Factors which increase the risk of severe adult periodontitis (AP) may also contribute to the success of dental implants. To determine which cytokines may be relevant, levels of interleukin-1alpha (IL-1alpha), interleukin-1beta (IL-1beta), interleukin-1 receptor antagonist (IL-1ra), interleukin-6 (IL-6) and interferon-gamma (IFN-gamma) mRNA were quantitated in gingival tissue from periodontitis patients and healthy controls. Periodontitis significantly increased levels of IL-1alpha, IL-1beta, IL-6 and IFN-gamma mRNA relative to healthy tissues. IL-1 was selected for further study, as it has inflammatory and bone resorbing properties. We examined IL-1A(-889) and IL-1B(+3953) alleles in Caucasian patients with AP and early-onset periodontitis (EOP), patients with dental implants and healthy individuals. The IL-1B(+3953) polymorphism was associated with AP. This was evident from an increased homozygosity for allele 2 in patients with AP and a decreased heterozygosity in advanced AP patients. IL-1A(-889) and a composite genotype [IL-1A(-889)2 plus IL-1B(+3953)2] showed no association with the incidence of periodontitis, disease onset or disease severity. IL-1A(-889), IL-1B(+3953) and the composite genotype also showed no association with failure of dental implants.
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PMID:Do interleukin-1 polymorphisms predict the development of periodontitis or the success of dental implants? 1185 58

Bone mass is known to be under genetic control. Interleukin-1 (IL-1), interleukin-6 (IL-6) and TNF-alpha are strong inductors of bone resorption. The estrogenic deficiency that occurs during menopause leads to an increase in the production of these cytokines. We analyzed the genetic susceptibility of several polymorphisms of the interleukin-1 receptor antagonist (IL-1ra), IL-6 and TNF-alpha genes in lumbar spine and hip bone mass in a sample of post-menopausal Caucasian Mediterranean women with osteoporosis. 104 post-menopausal osteoporotic women (58.6+/-4.8 yr) and 51 post-menopausal women without osteoporosis as the control group (57.2+/-4.5 yr) were studied. The osteoporotic group was in turn sub-classified into severe and non-severe osteoporosis. The variable number of tandem repeats IL1-ra, IL-6 SfaNI and TNF-alpha NcoI genetic polymorphisms were studied. Biochemical markers of bone turnover were measured in blood and urine. Women carrying the A2 allele (A2+) of the IL-1ra gene showed greater BMD in the lumbar spine (p=0.02) and hip (p=0.006), compared to those not carrying the allele (A2-). The IL-6 polymorphism studied in its 5' flanking region did not show any association with BMD values. The TNF-alpha gene G allele was associated with a greater bone mass in the non-severe osteoporotic subgroup, both in the lumbar spine (p=0.0007) and in the hip (p=0.02). Likewise, genotype combination A2+GG was associated to a greater hip BMD at the femoral neck and Ward triangle levels (p=0.02). We conclude that both IL-1ra and TNF-alpha can be candidate loci to be studied in the susceptibility to develop post-menopausal osteoporosis.
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PMID:Bone mineral mass is associated with interleukin 1 receptor autoantigen and TNF-alpha gene polymorphisms in post-menopausal Mediterranean women. 1224 Aug 99

To examine the basis of the immune modulation induced by the anticancer agent doxorubicin (DOX), the immunophenotype, tumoricidal activity, cytokine protein and mRNA expression were determined using peritoneal exudate cells (PEC) from saline-treated (untreated) and DOX-treated mice. A greater percentage of PEC from DOX-treated mice than from untreated mice were adherent to plastic, had characteristics of granulocytes, and were positive for the NK1.1, CD11b/Mac-1, and CD3 markers. DOX decreased the percentage of CD45R/B220+ cells. PEC from DOX-treated mice had greater tumoricidal potential than those from untreated mice since IL2, LPS, or IFNgamma alone increased the cytolytic activity of PEC from DOX-treated mice, whereas PEC from untreated mice required both LPS and IFNgamma to become cytolytic. DOX treatment modulated the expression of specific cytokines. Following stimulation in culture, PEC from DOX-treated mice produced more TNF, IL1, and IFNgamma than PEC from untreated mice. DOX treatment increased the levels of TNF, but not IL1, mRNA and decreased the levels of IL6 mRNA and protein. These data demonstrate that a single DOX injection induces specific effects in PEC and, as a consequence, increases the tumoricidal potential of cells of the macrophage and natural killer types.
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PMID:Doxorubicin induces specific immune functions and cytokine expression in peritoneal cells. 1269 71

In the present study, turpentine oil was injected in the hind limb muscle of the rat to stimulate an acute-phase response (APR). The changes in the gene expression of cytokines and proteins known to be involved in the iron regulatory pathway were then studied in the liver and in extra-hepatic tissue. In addition to the strong upregulation of interleukin-6 (IL-6) and IL-1 beta observed in the inflamed muscle, an upregulation of the genes for IL1-beta and tumor necrosis factor-alpha, but not IL-6, were detectable in the liver. Hepatic Hepc gene expression increased to a maximum at 6 h after the onset of APR. An upregulation of transferrin, transferrin receptor 1 (TfR1), TfR2, ferritin-H, iron responsive element binding protein-1 (IRP1), IRP2 and divalent metal transporter gene expression was also found. Hemojuvelin (Hjv)-, ferroportin 1-, Dcytb-, hemochromatosis-gene- and hephaestin gene expression was downregulated. Hepcidin (Hepc) gene expression was not only detectable in extra-hepatic tissues such as heart, small intestine, colon, spleen and kidney but it was also upregulated under acute-phase conditions, with the Hjv gene being regulated antagonistically. Fpn-1 gene expression was downregulated significantly in heart, colon and spleen. Most of the genes of the known proteins involved in iron metabolism are expressed not only in the liver but also in extra-hepatic tissues. Under acute-phase conditions, acute-phase cytokines (eg IL-6) may modulate the gene expression of such proteins not only in the liver but also in other organs.
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PMID:Changes of gene expression of iron regulatory proteins during turpentine oil-induced acute-phase response in the rat. 1741 67


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