Search PubMed⌕ Search

Biomedical subjects

Y Ueki

Publications and source records attributed to Y Ueki.

At least 109 records · Page 6Linked to original sources

Purification and antigenic analysis of flagella of Campylobacter jejuni.

The flagella of Campylobacter jejuni strain FUM158432 were purified and a flagellin preparation consisting of only a single peptide of 63,000 daltons was obtained. The peptide of 92,000 daltons usually associated with a flagellar preparation was shown to be a peptide derived from the hook region. Antiserum was prepared by immunizing a rabbit with the flagellin preparation. The reaction of the antiserum was found to be highly specific for the flagellar filament by immunoelectron microscopy and for flagellin peptide by the immunoblotting method. Seventeen of 23 clinically isolated strains of C. jejuni reacted with this antiserum but the other six strains did not, indicating the existence of antigenic variation of the flagella of C. jejuni. The flagella of a few strains of C. coli also reacted with this antiserum.

Agglutination↗

Natural killer and natural killer-like cell activity of peripheral blood and intrathyroidal mononuclear cells from patients with Graves' disease.

This study was undertaken to investigate the natural killer (NK) and natural killer-like (NK-like) cell cytotoxic activity toward autologous thyrocytes of peripheral blood mononuclear cells (PB-MNC) and thyroid gland mononuclear cells (TG-MNC) from previously hyperthyroid patients with Graves' disease, and the effects of recombinant interleukin-2 on such cytotoxic activity. The average cytotoxicities of PB-MNC from Graves' patients toward K562 cells (NK-sensitive cells), Raji cells (NK-resistant cells), and autologous thyrocytes were 23.9 +/- 10.8 (+/- SD) lytic units (LU), 7.4 +/- 3.8 LU, and 11.7 +/- 4.4 LU, respectively. There were no differences in the NK and NK-like cell activity of PB-MNC between Graves' disease patients and normal subjects. In contrast to PB-MNC from patients with Graves' disease, NK and NK-like cell activity was markedly decreased in TG-MNC (NK cell activity, 2.1 +/- 2.3 LU; NK-like cell activity, 1.5 +/- 1.5 LU). TG-MNC from Graves' patients had no cytotoxic activity against autologous thyrocytes. Using the monoclonal anti-Leu 7 and anti-CD16 antibodies and a two-color immunofluorescence method, the NK cell subsets were examined in PB-MNC and TG-MNC from Graves' patients. The percentage of CD16+ cells was significantly decreased in TG-MNC compared to PB-MNC, whereas there was no significant difference in the percentage of Leu 7+ cells between PB-MNC and TG-MNC. Incubation of TG-MNC with medium only did not increase the NK and NK-like cell activity of these cells. Furthermore, incubation of autologous PB-MNC with supernatants of minced thyroid tissues did not alter their NK and NK-like cell activity. The decreased NK and NK-like cell activity of TG-MNC was augmented when these cells were incubated with recombinant interleukin-2. These results suggest that the reduction of NK cell activity in TG-MNC may allow perpetuation of B-cell activation and lead to excessive production of autoantibody in thyroid tissue.

Adolescent↗

Phenotypic analyses and concanavalin-A-induced suppressor cell dysfunction of intrathyroidal lymphocytes from patients with Graves' disease.

The expression of phenotypic markers and Concanavalin-A-induced suppressor activity was compared among mononuclear cells isolated from thyroid glands and peripheral blood of thionamide-treated patients with hyperthyroid Graves' disease and peripheral blood from normal subjects. Intrathyroidal lymphocytes were obtained by two different methods (TG-1 and TG-2 cells), gradient centrifugation of supernatants of minced thyroid tissue and overnight culture of thyroid debris after mechanical disaggregation and enzymatic digestion, respectively. The percentages of CD3+ cells (all mature T cells) among peripheral blood and TG-1 and TG-2 cells from Graves' patients were similar, but the percentages of B1+ cells (pan B cells) among the TG-1 and TG-2 cells were markedly increased compared to that in peripheral blood. The percentages of CD4+ cells among the TG-1 and TG-2 cells were significantly less than that in peripheral blood. The percentages of CD4+2H4+ cells among CD4+ cells in TG-1 and TG-2 cells also were significantly less than that in peripheral blood. The percentage of CD4+4B4+ cells among CD4+ cells in thyroid glands was markedly higher than that in peripheral blood. The percentages of CD8+ cells and CD8+CD11b- cells (cytotoxic T cells) in thyroid glands were significantly higher than those in peripheral blood from Graves' patients and peripheral blood from normal subjects. The CD8+CD11b+ cells were subdivided into two subpopulations on the basis of CD8 antigen density. The percentage of dull CD8+CD11b+ cells (natural killer cells) among TG-2 cells was lower than that in peripheral blood, but there was no significant difference in bright CD8+CD11b+ cells (suppressor-effector T cells) between thyroid glands and peripheral blood. The percent suppression induced by Concanavalin-A in both TG-1 and TG-2 cells was significantly decreased compared with that in peripheral blood. These results suggest that impairment of suppressor cell activity and an increased number of B cells exist in thyroid glands of patients with Graves' disease compared to those in peripheral blood. It, thus, appears likely that both B cell hyperactivity and suppressor T cell dysfunction may induce excess production of autoantibodies in the thyroid glands of such patients.

Adolescent↗

In vitro cellular interactions among thyrocytes, T cells and monocytes from patients with Graves' disease.

In order to investigate the cellular interactions among thyrocytes, T cells and monocytes in thyroid glands from patients with Graves' disease, we determined alterations of HLA-DR antigen expression on thyrocytes and T cells, and the production of interferon-gamma during coculture of thyrocytes, T cells and monocytes obtained from patients with Graves' disease. Thyroid glands were obtained at operation from 17 patients with Graves' disease. When thyrocytes and autologous peripheral blood T cells were cocultured for 7 days, the percentage of HLA-DR antigen expression on thyrocytes was significantly increased by T cells and that on T cells was also significantly increased by thyrocytes. Addition of autologous monocytes to the mixtures of thyrocytes and T cells significantly increased the expression of HLA-DR antigens on both thyrocytes and T cells compared with mixtures without monocytes. In culture supernatants, interferon-gamma was detected in 4 of 14 cocultures of thyrocytes and T cells, in 5 of 10 cocultures of thyrocytes, T cells and monocytes, but not in any cultures of thyrocytes alone, T cells alone and T cells and monocytes. Induction of HLA-DR antigen expression on thyrocytes and T cells was blocked by addition of anti-interferon-gamma monoclonal antibody to the mixture. These results suggest that HLA-DR antigen positive thyrocytes are able to induce the HLA-DR antigen expression of T cells in the presence of monocytes, and the activated T cells are capable of producing interferon-gamma which acts on thyrocytes to induce and maintain the expression of HLA-DR antigens.

Adolescent↗

The effects of cytokines, antithyroidal drugs and glucocorticoids on phagocytosis by thyroid cells.

The present study was undertaken to examine whether thyrocytes possess phagocytic activity and whether the phagocytic activity is influenced by cytokines, such as interleukin 1, 2 (IL 1, IL 2) and interferon-alpha, -beta, and -gamma (IFN-alpha, beta, and gamma), and drugs, such as methimazole and dexamethasone. Thyroid glands were obtained from patients with Graves' disease. Thyrocytes were prepared by collagenase digestion. Thyrocytes were pre-incubated in the presence or absence of cytokines and drugs at 37 degrees C for 20 h and were further incubated with fluoresceinated latex beads at 37 degrees C for 60 min. The number of phagocytic thyrocytes was determined by FACS IV. Phagocytosis of latex beads was indeed seen within thyrocytes and gradually increased in a time-dependent manner. The rate of phagocytosis in thyrocytes was extremely slow as compared with that in macrophages. Phagocytic activity was detected in thyrocytes from patients with Graves' disease and from normal thyroid tissue adjacent to thyroid cancer. Phagocytosis was inhibited by IL 1, but was enhanced by IL 2. Although the enhanced phagocytosis with IFN-beta was consistently seen, little effect was detected with IFN-alpha and -gamma. Both methimazole and dexamethasone markedly inhibited phagocytosis. These results indicated that thyrocytes had phagocytic properties and that their phagocytic activity was modulated by cytokines, antithyroidal drugs and dexamethasone.

Antithyroid Agents↗

Synergy in antigen presentation by thyroid epithelial cells and monocytes from patients with Graves' disease.

The present study was undertaken to examine the ability of thyrocytes from Graves' patients to present purified protein derivative (PPD) to autologous peripheral blood T cells. Normal human thyrocytes which were pre-cultured with interferon-gamma were able to induce the proliferation of T cells in response to PPD antigen, but unstimulated thyrocytes failed to do. Thyrocytes from Graves' patients on which HLA-DR antigens were expressed have an ability to induce the proliferation of T cells. Thyrocytes from Graves' patients which were pulsed with PPD antigen for 4 h were capable of stimulating proliferation of the T cells. However, the stimulation index of T cells co-cultured with thyrocytes and PPD were significantly lower than that of T cells co-cultured with monocytes and PPD. Sub-optimal numbers of monocytes which by themselves were unable to support T-cell proliferation synergistically augmented antigen presentation by thyrocytes. These results suggest that cellular interactions among thyrocytes, monocytes and T cells may perpetuate immune or autoimmune responses in thyroid tissues from Graves' patients.

Adolescent↗

Protection against Campylobacter jejuni infection in suckling mice by anti-flagellar antibody.

We obtained two monoclonal antibodies of IgM class and IgA class of immunoglobulin prepared from mouse spleen cells immunized with crude flagellar preparation, and a polyclonal antibody raised against purified flagellin monomer of Campylobacter jejuni in a rabbit. The specificity of the reaction of these antibodies for flagellar filament was confirmed by Western blotting and by immunoelectron microscopy. These antibodies caused agglutination of the bacteria and inhibited the motility of the bacteria. When a strain of C. jejuni was treated with IgM class monoclonal antibody before being inoculated into suckling mice, it reduced colonization of the intestinal tract by this bacteria. Inhibition of the colonization by IgA class monoclonal antibody was less effective than that of IgM class, and the polyclonal antibody consisting mostly of IgG class immunoglobulin was without effect.

Animals↗

Structure of the Staphylococcus aureus cell wall determined by the freeze-substitution method.

The fine structure of the Staphylococcus aureus cell wall was determined by electron microscopy with the new technique of rapid freezing and substitution fixation. The surface of the cell wall was covered with a fuzzy coat which consisted of fine fibers or an electron-dense mass. Morphological examination of the cell wall, which was treated sequentially with sodium dodecyl sulfate, trypsin, and trichloroacetic acid, revealed that this coat was partially removed by trypsin digestion and was completely removed by trichloroacetic acid extraction but was not affected by sodium dodecyl sulfate treatment, suggesting that the fuzzy coat consists mostly of a complex of teichoic acids and proteins. This was confirmed by the application of the concanavalin A-ferritin technique for teichoic acid and antiferritin immunoglobulin G technique for protein A.

Acetylglucosamine↗

Reduction in the suppressor-inducer T cell subset and increase in the helper T cell subset in thyroid tissue from patients with Graves' disease.

The expression of surface markers associated with activation and characterization was compared among T cells in thyroid glands and peripheral blood of 10 patients with Graves' hyperthyroidism receiving chronic antithyroid drug therapy, in peripheral blood of 15 patients with untreated hyperthyroid Graves' disease, and in peripheral blood of 21 normal subjects using two-color flow cytometry. In the chronically treated Graves' disease patients, the percentage of activated T cells (HLA-DR+ T cells) among total T cells was significantly higher in thyroid tissue than in peripheral blood, and the increase in percent activated T cells was also significant among both helper/inducer T cell (CD4+ cell) and suppressor/cytotoxic T cell (CD8+ cell) subsets. The percentage of activated T cells in peripheral blood was not significantly different between chronically treated hyperthyroid Graves' patients and normal subjects, whereas the percentage of activated T cells in the peripheral blood from untreated hyperthyroid Graves' disease patients was significantly higher than that in normal subjects or chronically treated hyperthyroid Graves' patients. The percentages of CD4+ cells and CD8+ cells among total T cells were not different between thyroid tissues and peripheral blood in patients with chronically treated hyperthyroid Graves' disease. When CD4+ were further divided into helper T cells (CD4+2H4- cells) and suppressor-inducer T cells (CD4+2H4+ cells) using two-color flow cytometry, the percentage of helper T cells among CD4+ cells was significantly higher in thyroid tissue than in peripheral blood, resulting in an increased ratio of CD4+2H4- cells to CD4+2H4+ cells. The percentage of CD4+2H4+ cells in peripheral blood, however, was not significantly different among untreated and chronically treated Graves' disease patients and normal subjects. From the findings of abnormalities in intrathyroidal T cell subsets, we suggest that the decrease in the function of suppressor T cells within the thyroids of Graves' disease patients may be due to a decrease in CD4+2H4+ cells within thyroid tissue.

Adolescent↗

Dysfunction of suppressor T cells in thyroid glands from patients with Graves' disease.

To investigate the suppressor function of intrathyroidal (TG) T cells in Graves' disease, the percentage of suppressor T cell subsets and the suppressor function of TG and peripheral blood (PB) lymphocytes in Graves' disease were compared by determining the in vitro production of immunoglobulin G (IgG) in reconstituted mixtures of separated B, CD4+ (helper/suppressor-inducer T), and CD8+ (suppressor/cytotoxic T) cells. TG lymphocytes were obtained by gradient centrifugation of the supernatants of minced thyroid tissues. T Cells were separated by E-rosette formation, and CD4+ and CD8+ cell-rich populations were separated by a panning method using monoclonal anti-CD8 antibody. Mixtures of 5 X 10(4) B (PB1 or TG) cells, 2 X 10(4) CD4+ (PB or TG) cells, and 5 X 10(3) macrophages (PB or TG) were cultured with various numbers of CD8+ (PB) or CD8+ (TG) cells for 7 days with pokeweed mitogen, and IgG synthesis was determined by solid phase RIA. T cell subpopulations were quantitated by a direct immunofluorescence method using monoclonal anti-CD3, anti-CD4, and anti-CD8 antibodies. There was no difference in the percentages of CD8+ cells among total T cells between thyroid glands and peripheral blood from Graves' disease patients [mean PB, 39.8 +/- 9.8% (+/- SD); TG, 42.5 +/- 13.8%; n = 10]. IgG production by mixtures of B and CD4+ cells isolated from peripheral blood was not different from that by cells isolated from thyroid glands [mean PB, 1635 +/- 248 (+/- SE) ng/mL; TG, 1081 +/- 128 ng/mL; n = 19; P = NS]. The nonspecific suppressor activity of thyroid gland CD8+ cells was less than that of CD8+ (PB) cells [percent suppression of IgG production by mixtures of B (PB) and CD4+ (PB) cells, 12.5% vs. 57.0% (P less than 0.01); by mixtures of B (TG) and CD4+ (TG) cells, 5.8% vs. 38.9% (P less than 0.01)]. The suppressor-inducer function of CD4+ (TG) cells was also decreased compared with that of CD4+ (PB) cells. These results suggest that the impairment of suppressor cell activity may lead to excessive production of autoantibody in thyroid glands from patients with Graves' disease.

Adult↗

The remarkable proliferation of helper T cell subset in response to autologous thyrocytes and intrathyroidal T cells from patients with Graves' disease.

We have studied cellular interactions among thyrocytes, intrathyroidal T cells and peripheral blood T cells from Graves' patients. In the autologous mixed lymphocyte reaction of Graves' patients, CD4+ cells were able to proliferate vigorously against autologous non-T cells, whereas CD8+ cells responded weakly to non-T cell stimulators. Furthermore, the proliferative response of the CD4+ 2H4+ suppressor-inducer T cell subset was increased like that of the CD4+ 2H4- helper T cell subset. In contrast to peripheral blood non-T cell stimulators, thyrocytes and intrathyroidal T cells had the ability to activate the CD4+ 2H4- helper T cell subset but were not able to cause proliferation both of CD4+ 2H4+ suppressor-inducer T cell and CD8+ suppressor/cytotoxic T cell subsets. The marked reduction in proliferative responses of CD4+ 2H4+ cells and CD8+ cells could not be attributed to a difference in kinetics or altered response to variable number of stimulator cells. On the basis of these findings, it is suggested that the concentration of the helper T cell subset may be progressively increased and suppressor circuits may be unable to be activated in thyroid tissues. These abnormalities in cellular interactions may induce the excessive production of autoantibodies.

Adolescent↗

Regional metabolite profiles in early stages of global ischemia in the gerbil.

The present experiments were designed to determine the short-term regional changes in the cyclic nucleotides, certain glucose metabolites, high-energy phosphates, gamma-aminobutyric acid (GABA), glutamate, and glutamine in the gerbil brain following bilateral ligation of the common carotid arteries. The brains of the animals were microwaved at 20, 40, 60, 90, 120, and 300 sec of ischemia and the metabolites were measured in the cerebral cortex, hippocampus, and striatum. There were significant decreases in ATP, P-creatine, and glucose within the first 20 sec of ischemia in all three regions examined, whereas the increases in phosphate and lactate, as well as the loss of glycogen, were evident only after 40 sec of ischemia. The high-energy phosphates were essentially depleted (less than 15% of control values) in all three regions by 2 min of ischemia, indicating that the energy imbalance elicited by ischemia was comparable in the three regions. In contrast, the magnitude of the changes in the cyclic nucleotides was greater in the hippocampus than in the cerebral cortex or striatum. In addition, the decrease in cyclic GMP levels at 20 sec of ischemia preceded the increases in cyclic AMP observed at 40 sec in all three regions. The use of microwave irradiation to fix the gerbil brains not only provides a more accurate assessment of the time course of the metabolite changes but also permits studies on the deeper regions of the brain than is possible with freezing techniques.

Adenosine Triphosphate↗

Menkes disease: is vitamin C treatment effective?

The pathogenesis of Menkes disease seems to be linked to metallothionein which binds to copper trapped within cells in some tissues. The only known therapy for this disease is parenteral administration of copper, but the effects are equivocal. We treated a patient with Menkes disease by giving vitamin C orally. The clinical manifestation and bone changes improved and the plasma copper and ceruloplasmin levels gradually increased. Vitamin C may prevent the binding of copper and metallothionein by its reducing effect, and excess copper would be released from the cells. Vitamin C treatment is a simple and physiological method, and should aid in clarifying the pathogenesis of the disease.

Ascorbic Acid↗

Glucocorticoid-suppressible hyperaldosteronism. Ultrastructural observation of a case.

A 56-year-old woman presented with intracranial hemorrhage. Laboratory examinations revealed severe hypertension, hypokalemia, elevated aldosterone excretion, and suppressed plasma renin activity. Left adrenocortical tumor was suspected and adrenalectomy was performed. The laboratory data after operation, however, showed no significant difference from the preoperative data. On the basis of further examinations, dexamethasone was administered and returned blood pressure to normal, and also normalized serum potassium, plasma aldosterone, and renin activity. The patient's illness was diagnosed as glucocorticoid-suppressible hyperaldosteronism. Light microscopically, the zona glomerulosa was hypertrophic and the outer zona fasciculata decreased in lipid droplets and was centrifugally arranged in small alveoli. Electronmicroscopically, the cells of the outer zona fasciculata had several lipid droplets and well-developed sER. Mitochondria were round to oval with lamellar or lamellovesicular cristae. These findings were evidence of hyperfunction. The cytoplasm of the cells also contained spironolactone bodies. Therefore, it is assumed that the aldosterone, which induced the disorder, was produced mainly in the outer zona fasciculata.

Adrenal Cortex↗

Composite technique for regional neurochemical studies: measurement of energy and neurotransmitter metabolites in single tissue sample.

A combined method is described for the determination of various metabolites from a single tissue sample of the brain. It comprises a quick inactivation of cerebral enzymes by microwave irradiation, easy separation of the desired brain regions, and perchloric acid extraction of tissue substances, which are assayed either by specific enzymatic techniques or by HPLC with electrochemical detection. The obtained values of most energy and neurotransmitter metabolites in the brain are in agreement with those reported using other methods. However, this technique, in contrast to the brain freezing in vitro or freeze-blowing, provides a more efficient procedure for rapid arrest of cerebral metabolism even in the deep brain structures and is therefore suitable for detection of early changes particularly those occurring in experimental pathological conditions such as ischemia.

Adenosine Triphosphate↗