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Biomedical subjects

N Ohno

Publications and source records attributed to N Ohno.

At least 55 records · Page 3Linked to original sources

Modulation of calcium-induced clot formation of human plasma by Malassezia furfur.

The effect of Malassezia furfur on clot formation by human plasma was examined. The clotting time in the presence of M. furfur or Candida albicans was measured. M. furfur shortened the clotting time of calcium-induced clots by human plasma in a concentration-dependent manner. However, the protein content of the clots formed were not significantly different between the M. furfur-treated and the control group. The clotting time of clots triggered by thrombin or by placing plasma in glass tubes, which artificially activate the blood coagulation systems, were not affected by treatment with M. furfur. Moreover, acetone-treated M. furfur also shortens the calcium-induced clot formation time, while treatment with zymolyase, which causes decomposition of beta-glucan, did not shorten it. These results suggest that M. furfur activates the blood coagulation systems, and the beta-glucan portion of M. furfur plays a key role in shortening calcium-induced clot formation time.

Acetone↗

Establishment and characterization of a new human megakaryoblastic cell line (SET-2) that spontaneously matures to megakaryocytes and produces platelet-like particles.

A new factor-independent megakaryoblastic cell line, designated SET-2, was established from the peripheral blood of a patient with leukemic transformation of essential thrombocythemia (ET). SET-2 expressed CD 4, 7, 13, 33, 34, 36, 38, 41, 61, 71, 117, 126, 130 and c-mpl. In addition, it spontaneously produced numerous platelet-like particles in liquid culture. These particles were shown to be the same size as normal platelets, and to express CD 36, 38, 41, 61 and 71. Proliferation of SET-2 was not influenced by thrombopoietin (TPO) and other hemopoietic cytokines. SET-2 was found to express the platelet-specific proteins such as platelet factor 4 and beta-thromboglobulin. The levels of expression were not altered by TPO. SET-2 also secreted interleukin-6 into the supernatants, as well as normal megakaryocytes. These results suggest that SET-2 spontaneously matures to megakaryocytes and produces platelet-like particles. These findings indicate that SET-2 may be useful for investigating the proliferation and differentiation mechanisms of leukemia cells and the role of c-mpl on megakaryoblasts, megakaryocytes, and platelets in ET. Leukemia (2000) 14, 142-152.

Aged↗

Common antigenicity between Japanese cedar (Cryptomeria japonica) pollen and Japanese cypress (Chamaecyparis obtusa) pollen, I. H-2 complex affects cross responsiveness to Cry j 1 and Cha o 1 at the T- and B-cell level in mice.

Common antigenicity among two purified Japanese cedar pollen allergens (Cry j 1 and Cry j 2) and one Japanese cypress pollen allergen (Cha o 1) was explored at the T-cell and B-cell level in mice of different H-2 haplotypes. Cry j 2 did not show any common antigenicity with Cry j 1 or Cha o 1. B10.S (H-2S) mice immunized with Cry j 1 or Cha o 1 generated T cells and antibodies reactive to both antigens, indicating the common antigenicity of these antigens. C57BL/6 (H-2b) mice were non-responders to Cry j 1. BALB/c (H-2d) mice immunized with Cry j 1 or Cha o 1 and C57BL/6 mice immunized with Cha o 1 generated T cells that were only reactive with the respective immunogen, but produced antibody reactive to both Cry j 1 and Cha o 1, indicating that Cry j 1 and Cha o 1 share their B-cell epitope but not their T-cell epitope. This finding may provide a clue for the clarification of the T-cell and B-cell epitopes of Cry j 1 and Cha o 1, even though the data are influenced by H-2 complex restriction in mice. Considering that H-2 complex restriction affects cross responsiveness to Cry j 1 and Cha o 1 at the T- and B-cell level in mice, we assessed the possible situation in humans exposed sequentially to Japanese cedar pollen and Japanese cypress pollen.

Allergens↗

Common antigenicity between Japanese cedar (Cryptomeria japonica) pollen and Japanese cypress (Chamaecyparis obtusa) pollen, II. Determination of the cross-reacting T-cell epitope of cry j 1 and cha o 1 in mice.

We have previously detected common antigenicity between Cry j 1 and Cha o 1 in B10.S mice. B10.S mice immunized with Cry j 1- or Cha o 1-generated T cells and antibodies reactive to both allergens. In the present study, we investigated the cross-reacting and Cry j 1-specific T-cell epitopes in B10.S mice. Lymph node cells from B10. S mice immunized with Cry j 1 recognized Cry j 1 p111-130, p211-230, and p310-330 as well as Cha o 1 p209-228. The existence of the cross-reacting T-cell epitope in Cry j 1 and Cha o 1 was confirmed by the response of newly established p211-230-specific and Cha o 1 p209-228-specific T-cell lines. The minimum peptide sequence (p213-224) of the cross-reacting T-cell epitope was identical in Cry j 1 and Cha o 1. These findings clearly demonstrate that common antigenicity at the T-cell level between Japanese cedar and cypress pollen allergens was caused by the existence of an identitical-cell epitope in Cry j 1 and Cha o 1.

Allergens↗

Localization of major, high molecular weight proteins in Bacteroides forsythus.

Bacteroides forsythus produces species-specific major proteins with high molecular weights of 270 and 230-kDa (270K and 230K). A specific antibody raised against 270K was used for Western blot analysis and immunoelectron microscopy. Western blot analysis showed that the 270K and 230K proteins were immunologically similar. Immunogold labeling of ultrathin-sectioned bacterial cells and biochemical fractionation revealed that these proteins were localized at the outermost cell surface, not in the cytoplasm. These results suggest that major proteins ubiquitous to this species may form the S-layer.

Animals↗

Protective effect of beta-glucan against systemic Streptococcus pneumoniae infection in mice.

The antimicrobial effect of soluble beta-1,3-D-glucan from Sclerotinia sclerotiorum (SSG) was examined in mice experimentally infected intraperitoneally (i.p.) with Streptococcus pneumoniae serotypes 4 and 6B. SSG was administered i.p. either 3 days before challenge or 3-48 h after challenge. The number of bacteria in blood samples and the mouse survival rates were recorded. Pre-challenge SSG administration protected dose-dependently against both S. pneumoniae type 4 and 6B infections. SSG injected 24 h post-challenge had a curative effect against type 6B but not type 4 pneumococcal infection. The data demonstrate that SSG administered systemically protects against pneumococcal infection in mice.

Animals↗

Enhancement of IL-8 production from human monocytic and granulocytic cell lines, THP-1 and HL-60, stimulated with Malassezia furfur.

Previously, we reported that Malassezia furfur, causing systemic fungal infection, was taken up into human monocytic cell line, THP-1, in a concentration-dependent manner. This fact suggested that M. furfur could activate phagocytes, such as monocyte and polymorphonuclear leukocyte. Thus we examined cytokine mRNA expression from human monocytic and granulocytic cell line, THP-1 and HL-60, stimulated with M. furfur by using reverse transcriptase-polymerase chain reaction (RT-PCR) and ELISA. We chose IL-1alpha, IL-6, IL-8, IL-12 and TNF-alpha as primers for THP-1, and IL-1alpha, IL-6 and IL-8 for HL-60. M. furfur induced the expression of IL-8 mRNA from THP-1 and HL-60 following incubation for 3 h, and also induced IL-1alpha mRNA from HL-60, although this induction was weaker than that of IL-8 mRNA. Furthermore, opsonized M. furfur induced stronger expression of IL-8 mRNA in comparison with intact M. furfur. IL-8 production from THP-1 and HL-60 was enhanced in a concentration- and incubation time-dependent manner. These facts strongly suggested that M. furfur could activate phagocytes, and could induce inflammatory responses in systemic infection.

Cell Line↗

Measurement of blood clearance time by Limulus G test of Candida-water soluble polysaccharide fraction, CAWS, in mice.

The Limulus G test, responsive to beta-1,3-D-glucan, is a well-established method for the detection of invasive fungal infection. We have recently found that Candida albicans released a water-soluble polysaccharide fraction (CAWS) into synthetic medium (Uchiyama et al., FEMS Immunol. Med. Microbiol. 24 (1999) 411-420). CAWS was composed of a mannoprotein-beta-glucan complex and activated Limulus factor G, and thus would be similar to the Limulus active substance in patient's blood. In a preliminary investigation, we have found that CAWS is lethal when administered intravenously in a murine system. In this study, we examined the toxicity and then the fate of CAWS in mice. The lethal toxicity was strain-dependent and strain DBA/2 was the most resistant. The toxicity was, at least in part, reduced by salbutamol sulfate and prednisolone treatment in the sensitive strains. On intravenous administration, the half clearance time (t1/2) was approximately 40 min in mice (DBA/2). On intraperitoneal administration, CAWS appeared in the blood with a peak concentration at 1 h. In order to establish a treatment plan, it is important to demonstrate the onset and the termination of deep-seated mycosis. The Limulus G test is suitable for the above purpose; however, it is necessary to fully understand the fate of beta-1,3-D-glucan in patients' blood.

Animals↗

Failure in antitumor activity by overdose of an immunomodulating beta-glucan preparation, sonifilan.

Schizophyllan (SPG, Sonifilan) is a soluble (1-->3)-beta-D-glucan, used as a biological response modifier (BRM) with radiation therapy for cancer treatment in Japan. The mechanism of SPG mediated antitumor activity is thought to be via immune stimulation, which includes cytokine production, hematopoietic response, and so on. In this paper, we found that the activity of SPG was quite long-lived and an overdose significantly failed to display the antitumor activity. To demonstrate the mechanism several parameters were examined using a high dose of SPG administration as follows: i) the effect on vascular permeability in vivo, ii) the priming effect on tumor necrosis factor (TNF-alpha) production in vivo, iii) the effect on macrophage adherence to plastic plate in vitro, and iv) anti-Sarcoma 180 antibody production in vivo. It was evident that vascular permeability and anti-Sarcoma 180 antibody production remained unchanged, but TNF-alpha production and adherence to a plastic plate was significantly reduced by a high dose of SPG. These facts strongly suggested that modulation of the cytokine syntheses and the leukocyte traffic would be the causative mechanisms of the failure of antitumor activity by an overdose of SPG.

Adjuvants, Immunologic↗

Solubilized cell wall beta-glucan, CSBG, is an epitope of Candida immune mice.

Antibody to beta-glucan is generally difficult to produce in mice. We have recently developed a protocol to obtain a soluble Candida spp. beta-(1-->3)-D-glucan (CSBG) by sodium hypochlorite (NaClO) oxidation and subsequent dimethyl sulfoxide (Me2SO) extraction. CSBG is composed mainly of beta-(1-->3) and beta-(1-->6)-glucosidic linkages with a small amount of branch. In this paper, mice were immunized with Candida albicans and the specificity of the resulting sera to CSBG was examined by ELISA. Using CSBG coated plate, sera of the Candida immune mice showed higher reactivity than non-immune, normal mice and the reactivity was neutralized by adding soluble CSBG as a competitor. However, the reactivity could not be neutralized by a beta-(1-->6) branched beta-(1-->3)-glucan, grifolan. Similar specificity of the sera was obtained by commercially available beta-glucan particle, zymosan or zymocel, immune mice. These facts strongly suggested that CSBG included epitopes of the specific antibody in Candida immune mice.

Animals↗

Antitumor 1,3-beta-glucan from cultured fruit body of Sparassis crispa.

Sparassis crispa is an edible mushroom recently cultivable in Japan. Polysaccharide fractions were prepared from the cultured S. crispa by repeated extraction with hot water (SCHWE), cold NaOH (SCCA), and then hot NaOH (SCHA). HWE was further separated by 1 volume (SCHWE1v) or 4 volumes (SCHWE4v) of ethanol-precipitable fractions. By chemical, enzymic, and NMR analyses, the primary structures of SCHWE1v, SCCA, and SCHA were 6-branched 1,3-beta-glucan, having one branch in approximately every third mainchain unit. All of these fractions showed antitumor activity to the solid form of Sarcoma 180 in ICR mice with strong vascular dilation and hemorrhage reaction. These fractions also showed enhanced hematopoietic response to cyclophosphamide induced leukopenic mice following intraperitoneal or peroral administration.

Animals↗

Peroxidase activity in the submandibular gland of the house musk shrew, Suncus murinus (Soricidae, Insectivora).

Endogenous peroxidase activity in the submandibular gland of the house musk shrew, Suncus murinus was cytochemically investigated by light and electron microscopy using 3,3'-diaminobenzidine-tetrahydrochloride salt (DAB). The submandibular glands of male Suncus murinus at 8-month-olds were excised and diced into small pieces. In general, salivary glands are structurally divided into a terminal portion comprising a secretory portion and duct system. The submandibular gland of the Suncus murinus, the terminal portions consisted of proximal and distal acinar cells. On the other hand, a granular duct cell of the duct system contained a number of characteristic myelin-like bodies. In the present study, the peroxidase reaction products were localized in the secretory granules of the proximal acinar cells and in the endoplasmic reticulum, Golgi apparatus and myelin-like bodies of the granular duct cells. These reaction products were reduced when 5 mM 3-amino-1,2,4-triazole was added to the reaction medium. Additionally, release of peroxidase into the lumen was observed. In conclusion, the proximal acinar and granular duct cells formed peroxidase and may have performed excretory secretions. Moreover, the peroxidase positive myelin-like body consisted of lamellated membrane and its outer surface membrane continued to the endoplasmic reticulum.

Animals↗

Amplitude and frequency modulation of metabolic signals in leukocytes: synergistic role of IFN-gamma in IL-6- and IL-2-mediated cell activation.

Many stimuli cause intracellular concentration oscillations of second messengers or metabolites, which, in turn, may encode information in their amplitudes and frequencies. We now test the hypothesis that synergistic cellular responses to dual cytokine exposure correlate with cross-talk between metabolic signaling pathways of leukocytes. Polarized RAW264.7 macrophages and human neutrophils and monocytes exhibited NAD(P)H autofluorescence oscillation periods of congruent with20 s. IFN-gamma tripled the NAD(P)H oscillatory amplitude for these cells. Although IL-6 had no effect, incubation of cells with IFN-gamma and IL-6 increased both oscillatory amplitude and frequency. Parallel changes were noted after treatment with IFN-gamma and IL-2. However, IL-1beta and TNF-alpha did not display frequency doubling with or without IFN-gamma exposure. To determine whether frequency doubling required complete IFN-gamma signaling or simply metabolic amplitude modulation, an electric field was applied to cells at NAD(P)H troughs, which has been shown to enhance NAD(P)H amplitudes. Electric field application led to frequency doubling in the presence of IL-6 or IL-2 alone, suggesting that amplitude modulation is crucial to synergism. Because NADPH participates in electron trafficking to NO, we tested NO production during cytokine exposure. Although IL-6 and IL-2 alone had no effect, IFN-gamma plus IL-6 and IFN-gamma plus IL-2 enhanced NO release in comparison to IFN-gamma treatment alone. When NO production was examined for single cells, it incrementally increased with the same phase and period as NAD(P)H. We suggest that amplitude and frequency modulation of cellular metabolic oscillations contribute to intracellular signaling synergy and entrain NO production.

Adjuvants, Immunologic↗

Chemical and immunochemical characterization of limulus factor G-activating substance of Candida spp.

The limulus test is a well-established method for the diagnosis of both gram (-) sepsis and invasive fungal infection. To diagnose deep-seated fungal infections, a (1-->3)-beta-D-glucan-specific chromogenic kit (Fungitec G test MK) has been developed and applied clinically. It is suggested that the limulus reactive substance was released from the fungi to the blood, however, its chemical properties were not precisely examined in detail because of the limited quantity available. In this study, we used chemically defined liquid medium to culture Candida spp. and collected the water soluble fraction, CAWS. The yield of CAWS was circa 100 mg/l, independent of the strain of Candida. CAWS reacted with limulus factor G (Fungitec G test MK) at concentrations as low as 100 ng/ml. Limulus factor G reactivity of CAWS was sensitive to (1-->3)-beta-glucanase, zymolyase and was, at least in part, bound to ConA-agarose. The ConA-bound fraction also reacted with anti-beta-glucan antibody. CAWS is mainly composed of mannan and (1-->6)-beta-glucan, in addition to protein, assessed by 1H-NMR spectroscopy. CAWS also reacted with typing sera of Candida spp., specific for cell wall mannan. Chemical, immunochemical and biochemical analyses of CAWS strongly suggested that the limulus factor G-activating substance was a mannan-beta-glucan complex, present within the architecture of the yeast cell wall.

Candida↗

Solubilization of yeast cell-wall beta-(1-->3)-D-glucan by sodium hypochlorite oxidation and dimethyl sulfoxide extraction.

The limulus test is a well-established method for the diagnosis of both Gram-negative sepsis and invasive fungal infection. To diagnose fungal infections, a beta-(1-->3)-D-glucan-specific chromogenic kit (Fungitec G test MK) has been developed and applied clinically. We are concentrating our main efforts on developing a better standard to improve the precision of this method. To this end, we have successfully developed a protocol to obtain a soluble Candida spp. beta-(1-->3)-D-glucan (CSBG) by sodium hypochlorite (NaClO) oxidation and subsequent dimethyl sulfoxide (Me2SO) extraction (yield of 9.6 +/- 4.1%) of acetone-dried whole-cell preparations. The beta-glucan fraction is free from the cell-wall mannan, gives a symmetrical peak by gel filtration, and is soluble in dilute NaOH. The product is composed mainly of beta-(1-->3)- and beta-(1-->6)-D-glucosidic linkages. The specific activity of the beta-glucan is comparable with pachyman when combined with the Fungitec G test as the standard glucan and reacted as low as 10(-11) g/mL.

Candida↗

Clinical implications of mutations C-to-T1653 and T-to-C/A/G1753 of hepatitis B virus genotype C genome in chronic liver disease.

Among many mutational "hot spots" on hepatitis B virus (HBV) genome, A-to-T1762 and G-to-A1764 within the core promoter have been underscored in view of disease association as well as viral expression/replication. Although to a lesser extent, C-to-T1653 and T-to-V(C/A/G)1753 were also noteworthy in our previous study. To assess the clinical significance of these mutations, we determined the nucleotide sequence of an HBV DNA fragment covering these sites in HBsAg-positive blood donors (n = 160) and patients with chronic hepatitis (n = 66), liver cirrhosis (n = 45), and hepatocellular carcinoma (n = 58), most of whom were infected with genotype C HBV (subtype adr). In cases where HBe antigen was positive, the frequency of T1653 and/or V1753 showed a striking increment from chronic hepatitis patients (18%) to liver cirrhosis and/or hepatoma patients (82%), whereas that of T1762/A1764 was already high in chronic hepatitis patients (76%). In HBe antigen-negative cases, by contrast, significant difference in the frequency of T1653/V1753 mutants was found between blood donors (22%) and chronic hepatitis patients (67%). Our results suggest that T1653/V(particularly C)1753 mutants are more closely associated than T1762/A1764 with the progression of liver disease from chronic hepatitis to cirrhosis in HBe antigen-positive patients. A system of site-directed mutagenesis PCR RFLP was constructed to diagnose T1653 and C/A1753 more conveniently. Detecting T1653 and C/A1753 by this method would contribute to the differential diagnosis of HBV-associated liver disease.

Base Sequence↗

Inflammatory and immunopharmacological activities of meta-periodate oxidized zymosan.

Zymosan (ZYM), a strong complement-activating yeast cell preparation composed mainly of mannan and beta-glucan moieties, is a potent inflammatory substance with immunopharmacological activity. We previously analyzed the metabolism of ZYM in mice and found that it was deposited in liver and spleen for at least several months and then gradually oxidatively degraded. In this paper, we prepared oxidized ZYM by sodium metaperiodate oxidation (NaIO4) and borohydride reduction (I/B-ZYM) and/or limited hydrolysis of oxidized moieties (I/B/H-ZYM). Activities of the resulting products were assessed by (i) vascular permeability in mice, (ii) H2O2 synthesis by macrophages, (iii) TNF-alpha synthesis by macrophages, and (iv) reactivity to anti-ZYM sera. As a general trend, NaIO4, oxidation products exhibited reduced, but still significant, activity. Interestingly, the H2O2 production induced by I/B/H-ZYM was significantly reduced after extensive sonication. Antagonist(s) for H2O2 synthesis were concomitantly solubilized by sonication of I/B/H-ZYM. On the contrary, TNF-alpha production induced by I/B/H-ZYM was comparable with that of ZYM. These facts strongly suggest that highly branched 1,3-beta- and 1,6-beta-glucosidic linkages resistant to NaIO4 oxidation are important for biological activity of ZYM. Further, the minimal structure in ZYM necessary for biological activity may depend on the activity tested.

Animals↗