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Biomedical subjects

A Falus

Publications and source records attributed to A Falus.

At least 109 records · Page 6Linked to original sources

Production and flow cytometric application of a monoclonal anti-glucocorticoid receptor antibody.

Detection and monitoring the expression and level of intracellular glucocorticoid receptor (GCR) is necessary in many clinical and experimental situations. Binding of radioactive steroids (3H dexamethasone) to the cytosolic fractions of cells has been recently used. However, it is an expensive, time-consuming technique difficult to use in routine diagnostics. In this article we describe a novel, simple method for GCR detection, using a FITC-conjugated anti-GCR monoclonal antibody (mAb) for flow cytometric measurements in permeabilized cells. The monoclonal antibody was raised against a conserved sequence (150-176 amino acids) of the regulatory part of the receptor. Synthetic peptide (called APTEK-26) fragment of the receptor conjugated to different carriers (TG, BSA) was used for immunization and screening of the hybridomas. The a-GCR 8E9, 3C8 and 5E4 clones (IgG1) were further characterized by immunoserological methods for their reactivity against overlapping synthetic peptide fragments of the receptor and by Western blot technique on cytosolic fraction of HEP G2 cells (containing the GCR). Furthermore the mAbs could be used for the FACS based detection of GCR, despite its low number of antigen structure within the cells. Solving the problem of nonspecific binding of the secondary antibodies we used our high affinity IgG1 a-GCR mAbs directly labeled with the fluorescent dye FITC. The fluorescent labeling of the GCRs in HEP G2 cell line and human peripheral blood mononuclear cells (PBMC) were demonstrated by flow cytometric analysis after fixation with 4% paraformaldehyde and permeabilization with saponin. Competition with molar excess of unlabelled antibodies and with the GCR peptide fragment confirmed the specific binding of the 8E9 and 5E4 mAbs to the GCRs. Monitoring the GCR level by flow cytometry would be useful in clinical diagnostics, e.g., in steroid-treated patients and in steroid-resistant states.

Amino Acid Sequence↗

[The DNA-chip, a new tool for medical genetics].

The DNA (chip) technology, emerged in the last two years, provides an incredible technical development in rapid and automatised performance of genetic identification. The principle of procedure is, that by series of photolitographic and chemical steps on solid-phase of a small surface relatively dense oligonucleotide arrays can be generated. The oligonucleotides produced by the computer-directed in-situ microfabrication may bind complementary fluorescent-labeled DNA fragments from the unknown sample. After scanning, the registered position of positive signals provide information on the identity of DNA fragments. By this novel approach not only DNA sequencing can be performed, but genetic errors of known genes, presence of infectious organisms and the typing of genetic markers (such as HLA) used for transplantation and forensic medicine can be determined. The DNA-chip technology is a revolutionary new milestone in genetic diagnose.

DNA↗

Presence and localization of histidine decarboxylase enzyme (HDC) and histamine in Tetrahymena pyriformis.

Histidine decarboxylase (HDC) enzyme and its function under hormonal influences were studied in a low level of phylogeny. HDC protein is present in the unicellular ciliate Tetrahymena and its expression was not altered by insulin or histamine treatment. Starvation for 24 h enormously decreased the quantity of histamine in the cells. However, insulin influenced the activity of the HDC enzyme, demonstrated by the seven-fold quantity of histamine in the starved cells after insulin treatment. Insulin also increased the uptake of histamine from the tryptone-yeast extract medium. HDC was found in different parts of the cytoplasm, mainly in the periphery (epiplasm) of the cells. The experiments demonstrated the uptake and synthesis of histamine by Tetrahymena as well as the possibility of hormonal regulation of HDC activity.

Animals↗

Growth hormone receptor gene expression on human lymphocytic and monocytic cell lines.

The potential effect of growth hormone (GH) in tumorigenesis, particularly in acute leukemia is controversial. Human growth hormone has the ability to influence certain immune functions; the majority of immune cells express growth hormone receptor (GHR) on plasma membranes. We determined GHR gene expression on different human lymphocyte (JURKAT, CESS) and monocyte (U937, THP1) cell lines by reverse transcriptase polymerase chain reaction analysis of GHR mRNA after stimulating the cells with phytohaemagglutinin or phorbolester, human growth hormone and with a combination of these. The receptor gene expression showed differences; in the U937 and CESS cell lines only the stimulants were able to induce GHR mRNA expression; in the case of JURKAT cells even the hormone alone had the ability to express its own receptor gene. Both the increased TNF-alpha production of U937 (but not that of THP1 cells), and the decreased proliferation of JURKAT cells in response to GH stimuli also prove the presence of biologically active GHR on the cell surface. Our data suggest asymmetric interaction between GH or phorbolester-induced signal pathways in U937 cells sharply depending on the temporal sequence of treatments. THP1 monocytes showed no gene expression in response to any of the stimulants. The phenomenon that certain human lymphoid and monocytoid cell lines at different levels of cell differentiation are able to express the GH receptor gene could have importance in the rhGH therapy.

Carcinogens↗

Soluble interleukin 6 (IL-6) receptor influences the expression of the protooncogene junB and the production of fibrinogen in the HepG2 human hepatoma cell line and primary rat hepatocytes.

Interleukin 6 (IL-6) belongs to a family of cytokines using receptors sharing a common signal-transducing chain, gp130 and containing a specific ligand-binding chain (IL-6R alpha). It was shown that both the membrane-bound and the soluble form (sIL-6R) of this ligand specific receptor chain occurs naturally. The soluble form of IL-6 receptor was found to be able to associate with the membrane-bound gp130 and to generate active IL-6 receptor complex capable of inducing signal transduction. This study on a human hepatoma cell line and primary rat hepatocytes examined how the effectiveness of IL-6 is modified by the presence of soluble IL-6 receptor and whether the sIL-6R in the absence of IL-6 acts on hepatocytes. The authors studied the gene expression of junB, a member of the Jun family of transcription factors, and the production of fibrinogen in response to IL-6 and sIL-6R. The data show that in hepatic cells, endogeneously expressing IL-6R, the IL-6 induced junB and fibrinogen expression is inhibited by the presence of sIL-6R. In addition we found that sIL-6R alone (in the absence of IL-6) induced junB mRNA expression, but had no effect on fibrinogen production.

Animals↗

Histidine decarboxylase in peripheral lymphocytes of healthy individuals and chronic lymphoid leukemia patients.

Histidine decarboxylase (HDC), the only enzyme capable of synthetizing histamine, has been found in many proliferating cells and tissues suggesting a role of histamine in cellular proliferation. In this study expression of HDC and the significance of histamine in the proliferation of peripheral lymphocytes of five healthy persons and six patients with chronic lymphoid leukemia (CLL) was examined. Expression of HDC mRNA and the protein was proved by reverse transcriptase polymerase chain reaction and by immunoblot, respectively. The role of histamine was studied in proliferation assays in the presence of irreversible inhibitor of the HDC (alpha-fluoromethylhistidine--aFMH) and also by competing for the intracellular binding sites of histamine using N,N-diethyl-2, 4-phenylmethyl-phenoxy-ethanamine-HCl (DPPE). By inhibiting the HDC enzyme activity by FMH and blocking the intracellular action of histamine by DPPE, a significant decrease in cell proliferation was observed in mitogen stimulated lymphocytes of healthy donors. In CLL patients the proliferation of leukemic lymphocytes was significantly inhibited by blocking the binding of histamine to intracellular binding sites by DPPE but not by FMH inhibiting only the de novo histamine formation. The observations suggest that HDC has functional relevance in lymphocytes, since mitogen induced lymphocyte proliferation of healthy donors is mainly enhanced by de novo synthesis and subsequent action of intracellular histamine. Alternatively, in constitutively proliferating chronic lymphoid leukemia cells we suggest that the preformed pool but not the de novo synthesized intracellular histamine interferes with cellular proliferation.

Cells, Cultured↗

In vitro effect of human recombinant growth hormone on lymphocyte and granulocyte function of healthy and uremic children.

The recombinant human growth hormone (rhGH), currently used in supraphysiological doses to promote growth acceleration in chronic renal failure children (CRF), also has the ability to influence their impaired immune functions. The effect of human growth hormone on the lymphoproliferative response in vitro was analyzed in the peripheral blood lymphocytes of 25 healthy and 11 uremic children. In 72% of the uremic cases and in 60% of the healthy individual children the hormone increased the lymphoproliferation alone, and/or when used in combination with phytohaemagglutinine. The range of the effective hormone concentrations differed individually. Using semiquantitative reverse transcriptase polymerase chain reaction (RT-PCR) a great variation in the gene expression of growth hormone- (GH)-receptor in peripheral lymphocytes was detected. The respiratory burst activity of peripheral polymorphonuclear leukocytes (PMN) in vitro, in response to GH alone and when combined with suboptimal dose of phorbolester (PMA), was assessed by measuring luminol enhanced chemiluminescence in ten uremic and 18 healthy children. In six out of the ten of the CRF patients and in eight out of 18 of the healthy children the GH enhanced the oxidative burst activity of granulocytes provoked by a suboptimal dose of PMA. However, the effective doses (10, 50 and 300 ng/ml) and incubation times (0, 45 and 90 min) showed individual variations. Our data suggest that rhGH treatment in uremic children could be advantageous considering this population's enhanced susceptibility to bacterial, viral and fungal infections.

Adolescent↗

Cytokine regulation of the acute-phase protein levels in multiple myeloma.

BACKGROUND: Interleukin (IL) 6 has an important role in the regulation of acute-phase proteins (APPs) during an acute-phase response. We studied IL-6 and other cytokines to determine if they regulate serum APP levels in the same way under the condition of the aberrant, long-lasting 'acute-phase response' that occurs in patients with chronic inflammation and cancer. METHODS: Serum levels of nine positive APPs [CRP, SAA, C1-INH, Bf, C5, C8, C9, alpha 1-acidic glycoprotein (AGP) and haptoglobin] and two negative APPs [transferrin and alpha 2-HS glycoprotein (AHSG)] were measured using immunochemical methods in 59 multiple myeloma patients and in 72 healthy control subjects. Serum IL-6 and tumour necrosis factor (TNF) alpha levels were determined by bioassays. RESULTS: IL-6 was negatively correlated with five out of nine (C1-INH, C8, C9, AGP and haptoglobin) positive APPs but positively correlated with C-reactive protein (CRP). When patients with high and low IL-6 serum concentration were compared, CRP levels were higher, AGP and haptoglobin levels were lower in the high- than in the low-L-6 group, whereas no significant difference between the two groups was found in levels of the other positive and negative APPs. TNF-alpha levels were negatively correlated with transferrin and AHSG levels. No difference in the levels of positive APPs was observed between patients with low and high TNF-alpha serum concentration. By contrast, levels of both transferrin and AHSG were significantly lower in the high- than in the low-TNF-alpha group. CONCLUSIONS: These findings indicate that, except for regulation of the negative APPs by TNF-alpha, the mechanism of APP regulation is different under the conditions of the short-term and the chronic, long-lasting 'acute-phase reaction'.

Acute-Phase Proteins↗

Prostaglandin-independent stimulation of interleukin-6 production by fibrinogen degradation product D in perfused murine liver.

Bacterial endotoxin (LPS) and fibrinogen degradation product D (FDP-D) are both potent stimulators of interleukin-6 (IL-6) production in liver, however, there are differences in their metabolic effects. The aim of the present study was to compare the role of prostaglandins in the enhancement of IL-6 production by LPS or FDP-D in perfused mouse livers. Indomethacin inhibited the effect of LPS significantly but was ineffective in the case of FDP-D. Accordingly, production of prostaglandins D2 and E2 was not elevated following the addition of FDP-D, while their formation was increased several fold by LPS. At the same time interleukin-1 (IL-1) production in perfused liver rose markedly upon the addition of FDP-D. It is suggested that prostaglandins are not involved in the effects of FDP-D on the liver. The stimulatory effect of FDP-P on IL-6 production might be the consequence of elevated IL-1 levels.

Animals↗

Cerebral ischemia reperfusion-induced vasogenic brain edema formation in rats: effect of an intracellular histamine receptor antagonist.

Resuscitation in pediatric emergency and some neurological interventions may result in ischemia reperfusion-induced cerebral injuries. Histamine is one of the well established mediators of cerebral swelling and H1- and H2-receptor antagonists could prevent the development of ischemic brain edema. In the present study, time-dependent changes in the blood-brain barrier (BBB) permeability were investigated in the cerebral cortex of male Wistar rats 1, 2, 4, 8, and 16 h after the beginning of post-ischemic reperfusion. Cerebral ischemia-reperfusion evoked by the 4-vessel occlusion model resulted in significant (p < 0.05) elevations in BBB permeability for albumin, but not for sodium fluorescein. Pre-treatment with a new intracellular histamine receptor antagonist could not prevent ischemic brain edema formation in that model. We conclude that experimental studies could help us to reveal the therapeutic role of histamine receptor antagonists during ischemic brain edema.

Animals↗

Synthesis, solution conformation and interleukin-6-related activities of interleukin-6 peptides.

Interleukin-6 (IL-6) is a member of the cytokine superfamily characterised by a wide variety of biological activities on various cell types. IL-6 exerts pleiotropic activities on hematopoiesis in the immune response and it is the main regulator of acute-phase protein synthesis in liver cells. According to structure-function studies, residues of helix A located at the N-terminal part and/or helix D of the C-terminal part of the protein are involved in the induction of acute-phase responses. Two groups of synthetic peptides corresponding to the 18-46 N-terminal and the 168-185 C-terminal regions of the IL-6 were prepared by solid-phase synthesis to identify structural requirements for induction of fibrinogen or complement factor B synthesis. These peptides were characterised by amino acid analysis, analytical reversed-phase high-performance liquid chromatography, fast atom bombardment mass spectrometry, and circular dichroism (CD) spectroscopy. CD results showed that under appropriate conditions both 18-46 and 168-185 related peptides are able to adopt markedly ordered conformation. We demonstrated that even octapeptides from the N-terminal part and truncated derivatives of the C-terminal region preserved some tendency to display the CD curve of periodic conformation. The ability of the peptides to induce de novo synthesis of acute-phase proteins was evaluated by measuring fibrinogen and complement factor B levels in the supernatants of human HepG2 cells. These results showed that residues 21-34 are critical for eliciting fibrinogen synthesis in the presence or absence of IL-6. In contrast, the full-length 168-185 peptide is required for the induction of complement factor B response.

Acute-Phase Proteins↗

Development of competitive mRNA PCR for the quantification of interleukin-6-responsive junB oncogene expression.

The transcription factor junB belongs to the jun family of protooncogenes. The appearance of junB mRNA in hepatic cells is an extremely early and sensitive marker of the action of proinflammatory cytokines including interleukin-6. In this study, a competitive reverse transcription (RT)-PCR assay has been developed that is suitable for the quantitative determination of junB mRNA expression. This nonisotopic assay compared to other methods (e.g., Northern blot) is a fast and convenient way to determine the expression of the junB gene and thus the immediate concentration- and time-dependent action of interleukin-6. Because interleukin-6 and interleukin-6-type cytokines play a highly important regulatory role in various pathophysiologically important processes, such as hepatic acute-phase reaction, the quantitative assay of junB mRNA completes the scale of laboratory approaches in inflammation and among other pathological conditions.

Base Sequence↗

Increased interleukin-6 levels, interleukin-6 receptor and gp130 expression in peripheral lymphocytes of patients with inflammatory bowel disease.

Interleukin-6 is one of the most well-characterized cytokines with pleiotropic properties. Besides its B-lymphocyte activation role in hematopoiesis, interleukin-6 plays a central role in regulation of systemic inflammation. Interleukin-6 binds to receptors on target cells (such as hepatocytes and lymphocytes), consisting of an 80 kDa binding chain and gp130, a polypeptide responsible for signal transduction. In addition to the detection of elevated amounts of interleukin-6 in the blood, gene expression (mRNA) of subunits of the interleukin-6 receptor complex have also been studied by examining the reverse transcriptase polymerase chain reaction on peripheral lymphocytes from patients with characteristic radiological symptoms suffering from Crohn's disease. Our data show significantly elevated gene expression both of the 80 kDa interleukin-6 binding chain and gp130. These results suggest that enhancement of the expression of the constituents of interleukin-6 and the interleukin-6 receptor system plays a relevant role in systemic inflammation in inflammatory bowel disease.

Antigens, CD↗

[Polymorphism of the 52 triplet gene (nucleotide 253) of the TSH receptor in Basedow-Graves patients and in healthy controls].

It has been analysed the polymorphism of the first exon of TSH receptor gene, at the first nucleotide of the triplet 52 of the genomic DNA (CCC/ACC, Pro/Thr) in Graves' disease and control population and was not found connection between the genetic background, clinical picture and some immunological parameters. Genomic DNA was obtained from formalin-fixed, paraffin embedded thyroid tissue of patients with Graves' disease underwent subtotal thyroidectomy and from peripheral blood leukocytes. The first exon and small part of the first intron of the TSH-R gene was amplified by PCR. The motif was amplified by the primers and primers includes restriction site of the Tth 111 I restriction enzyme and mutant form of the examined nucleotide. Genomic DNA having only wild allele was detected at 189 bp, while mutant allele was digested a 167 and a 22 bp fragments. Three persons (two female and one male) of the 32 patients with Graves' disease had mutation A253 in heterozygotic form: The patient with mutation A253 had no any symptoms of Graves' ophthalmopathy. No correlation was found between mutation A253 and the levels of anti-TSH-R-, anti TG, anti-TPO and anti-eye muscle antibodies. Surprisingly, it was found mutation of heterozygous genotype in two control individuals (one female and one male) of 14 without any symptoms of thyroid disease and negative laboratory findings. Finally, it has not been found the association of the 253 nucleotide of the codon 52 polymorphism with Graves' disease and ophthalmopathy and the allele A253 has no pathogenetic relevance in Graves' disease. On the other hand, it cannot be excluded that other mutation or sequence polymorphism in the remainder of TSH-R extracellular domain might be important in autoimmune mechanism of Graves' disease.

Adolescent↗

Increased apoptosis of adult rat lymphocytes after single neonatal vitamin A treatment (hormonal imprinting). A flow cytometric analysis.

Newborn rats were treated with a single dose of vitamin A (retinol) and apoptosis of peripheral lymphocytes was studied by flow cytometry in adult age. Vitamin A treatment (hormonal imprinting) caused a moderate, however significant elevation in the number of apoptotic lymphocytes after three months. Dexamethasone or Concanavalin-A alone did not influence apoptosis significantly. However, in the neonatally retinol treated rats dexamathasone significantly elevated the quantity of apoptotic lymphocytes related to the control or Concanavalin-A treated control cells. The results call attention to the prolonged effect of hormonal imprinting in a new index and to the possible dangerous effects in human, neonatally treated with vitamin A.

Animals↗